Mark A. Reed Group
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PUBLICATIONS


||    Before 1990    ||   1990  ||  1991  ||   1992  ||   1993  ||    1994    ||   1995  ||

|| 1996  ||   1997  ||   1998  ||   1999  ||   2000  ||    2001   ||   2002   ||   2003  || 

|| 2004  ||   2005  ||   2006  ||   2007 || 2008   ||   2009  ||   2010    ||  2011 ||

|| 2012  || 2013  || 2014  || Books  || Book Chapters  ||


JOURNAL ARTICLES

2014

N. K. Rajan, K. Brower, X. Duan, and M. A. Reed, "Limit of detection of field effect transistor biosensors: Effects of surface modification and size dependence", Applied Physics Letters 104, 084106 (2014). [pdf]

W. Guan, S. X. Li, and M. A. Reed, "Voltage gated ion and molecule transport in engineered nanochannels: theory, fabrication and applications", Nanotechnology 25, 122001 (2014). [pdf]

W. Guan, X. Duan, M. A. Reed, "Highly specific and sensitive non-enzymatic determination of uric acid in serum and urine by extended gate field effect transistor sensors", Biosensors and Bioelectronics 51, 225-231 (2014). [pdf]

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2013

A. Vacic and M. A. Reed, "Quantitative nanoscale field effect sensors", Journal of Experimental Nanoscience 9 (1), 41-50 (2013). [pdf]

S. Baumgartner, C. Heitzinger, A. Vacic, and M. A. Reed, "Predictive simulations and optimization of nanowire field-effect PSA sensors including screening", Nanotechnology 24, 225503 (2013). [pdf]

X. Duan, N. K. Rajan, D. A. Routenberg, J. Huskens, and M. A. Reed, "Regenerative Electronic Biosensors Using Supramolecular Approaches", ACS Nano, Article ASAP. [pdf]

W. Guan, N. K. Rajan, X. Duan, and M. A. Reed, "Quantitative probing of surface charges at dielectric-electrolyte interfaces", Lab on a Chip 13, 1431 (2013). [pdf]

X. Li, Y. Jung, K. Sakimoto, T. H. Goh, M. A. Reed and A. D. Taylor, "Improved efficiency of smooth and aligned single walled carbon nanotube/silicon hybrid solar cells", Energy Environ. Sci. 6, 879-887 (2013). [pdf]

Y. Jung, X. Li, N. K. Rajan, A. D. Taylor, and M. A. Reed, "Record High Efficiency Single-Walled Carbon Nanotube/Silicon p-n Junction Solar Cells", Nano Letters 13, 95-99 (2013). [pdf]

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2012

W. Guan, and M.A. Reed, "Electric Field Modulation of the Membrane Potential in Solid-State Ion Channels", Nano Letters 12, 6441-6447 (2012). [pdf]

Y. Jung, A. Vacic, Y. Sun, E. Hadjimichael, and M. A. Reed, "Mapping of near field light and fabrication of complex nanopatterns by diffraction lithography", Nanotechnology 23, 045301 (2012). [pdf]

J.S. Park, W. Guan, M.A. Reed, P.S. Krsti , "Tunable Aqueous Virtual Micropore", Small 8, 907-912 (2012). [pdf]

X. Duan, Y. Li, N. K. Rajan, D.A. Routenberg, Y. Modis and M. A. Reed, "Quantifying the Affinities and Kinetics of Protein Interactions Using Silicon Nanowire Biosensors", Nature Nano. 7, 401 (2012). [pdf]

Y. Jung, X. Li, N. K. Rajan, A. D. Taylor, and M.A. Reed, "Record High Efficiency Single-Walled Carbon Nanotube/Silicon p-n Junction Solar Cells", Nano Lett. 13 (1), 95-99 (2012). [pdf]

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2011

W. Guan, R. Fan, and M.A. Reed, "Field-effect Reconfigurable Nanofluidic Ionic Diodes", Nature Comm., 2, 506 (2011). [pdf]

H. Chen, R. Chen, N. K. Rajan, F. Chang, L. Chen, K. Chen, Y. Yang, and M.A. Reed, "Size-dependent persistent photocurrent and surface band bending in m-axial GaN nanowires", Phys. Rev. B 84, 205443 (2011). [pdf]

A. Vacic, J.M. Criscione, N.K. Rajan,| E. Stern,T.M. Fahmy, and M.A. Reed, "Determination of Molecular Configuration by Debye Length Modulation", J. Am. Chem. Soc., 133, 13386 (2011). [pdf]

Y. Jung , A. Vacic , D.E. Perea , S.T. Picraux , and M. A. Reed, "Minority Carrier Lifetimes and Surface Effects in VLS-Grown Axial p–n Junction Silicon Nanowires", Adv. Mater., 37, 4306 (2011). [pdf]

A.Vacic, J.M. Criscione, E. Stern, N.K. Rajan, T. Fahmy, and M.A. Reed, "Multiplexed SOI BioFETs", Biosens. Bioelectron., 28, 239-242 (2011). [pdf]

N.K. Rajan, D.A. Routenberg, and M.A. Reed, "Optimal signal-to-noise ratio for silicon nanowire biochemical sensors", Appl. Phys. Lett. 98, 264107 (2011). [pdf]

W. Guan, S. Joseph, J. H. Park, P. S. Krsti?, and M. A. Reed, "Paul trapping of charged particles in aqueous solution", PNAS 108, 9326-9330 (2011). [pdf]

W. Guan, J. Park, P. Krsti?, and M.A. Reed, "Non-vanishing ponderomotive AC electrophoretic effect for particle trapping", Nanotechnology 22, 245103 (2011). [pdf]

H. Song, M. A. Reed, and T. Lee, "Single Molecule Electronic Devices", Adv. Mater. 14, 1583(2011) [pdf]

H. Song, Y. Kim, H. Jeong, M. A. Reed, and T. Lee, "Intrinsic charge transport of conjugated organic molecules in electromigrated nanogap junctions", J. Appl. Phys. 109, 102419 (2011). [pdf]

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2010

D.A. Routenberg and M.A. Reed, "Microfluidic probe: a new tool for integrating microfluidic environments and electronic wafer-probing", Lab Chip, 10, 123 (2010). [pdf]

E. Stern, A. Vacic, C. Li, F.N. Ishikawa, C. Zhou, M.A. Reed, and T.M. Fahmy, "A Nanoelectronic Enzyme-Linked Immunosorbent Assay for Detection of Proteins in Physiological Solutions", Small, 6, 232 – 238 (2010). [pdf]

S. Joseph,W. Guan, M.A. Reed, and P.S. Krstic, "A long DNA segment in a linear nanoscale Paul trap", Nanotechnology, 21, 015103 (2010). [pdf]

E. Stern, A. Vacic, N.K. Rajan, J.M. Criscione, J. Park, B.R. Ilic, D.J. Mooney, M.A. Reed, and T.M. Fahmy, "Label-free biomarker detection from whole blood", Nature Nanotech. 5, 138 - 142 (2010). [pdf]

N. K. Rajan, D. A. Routenberg, J. Chen, and M. A. Reed, "1/f Noise of Silicon Nanowire BioFETs", Elect. Dev. Lett. 31, 615 (2010). [pdf]

H. Song, Y. Kim, H. Jeong, M. A. Reed, and T. Lee, "Coherent Tunneling Transport in Molecular Junctions", J. Phys. Chem. C, 114, 20431 (2010). [pdf]

N.K. Rajan, D.A. Routenberg, J. Chen, and M.A. Reed, "Temperature dependence of 1/f noise mechanisms in silicon nanowire biochemical field effect transistors", Appl. Phys. Lett. 97, 243501 (2010). [pdf]

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2009

E. Stern, S.M. Jay, S.L. Demento, R.P. Murelli, M.A. Reed, T. Malinski, D.A. Spiegel, D.J. Mooney, and T.M. Fahmy, "Spatiotemporal Control over Molecular Delivery and Cellular Encapsulation from Electropolymerized Micro- and Nanopatterned Surfaces", Adv. Funct. Mater. 19, 2888 (2009). [pdf]

H. Song, Y. Kim, Y.H. Jang, H. Jeong, M.A. Reed, and T. Lee, "Observation of molecular orbital gating", Nature 462, 1039 (2009). [pdf]

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2008

L.E. Calvet, W. Wernsdorfer, J.P. Snyder, and M.A. Reed, "Transport spectroscopy of single Pt impurities in silicon using Schottky barrier MOSFETs", J. Phys.: Condens. Matter 20, 374125 (2008).

E. Stern, E.R. Steenblock, M.A. Reed, and T.M. Fahmy, "Label-free Electronic Detection of the Antigen-Specific T-Cell Immune Response", Nano Lett. 8, 3310 (2008).

E. Stern, A. Vacic, and M.A. Reed, "Semiconducting Nanowire Field-Effect Transistor Biomolecular Sensors", IEEE Trans Elect. Dev. 55, 3119 (2008).

M.A. Reed, "Inelastic electron tunneling spectroscopy", Materials Today 11, 46 (2008).

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2007

W.W. Deng, J.F. Klemic, X.H. Li, M.A. Reed, and A. Gomez, "Liquid fuel microcombustor using microfabricated multiplexed electrospray sources", Proc. Combust.  Instit. 31, 2239 (2007).

E. Stern, J.F. Klemic, D.A. Routenberg, P.N. Wyrembak, D.B. Turner-Evans, A.D. Hamilton, D.A. LaVan, T.M. Fahmy, and M.A. Reed, "Label-free immunodetection with CMOS-compatible semiconducting nanowires", Nature, 445, 05498 (2007). [pdf]

L.E. Calvet, R.G. Wheeler, and M.A. Reed, "Observation of the Linear Stark Effect in a Single Acceptor in Si", Phys. Rev. Lett. 98, 096805 (2007). [pdf]

L.E. Calvet, R.G. Wheeler, and M.A. Reed, "Effect of local strain on single acceptors in SI", Physical Review B 76, 035319 (2007). [pdf]


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2006

E. Stern, G. Cheng, M. P. Young, and M. A. Reed "Specific Contact Resistivity of Nanowire Devices, Appl. Phys. Lett. 88, 053106 (2006). [pdf]

E. Stern, G. Cheng, C. Li, J. Klemic, E. Broomfield, D. Turner-Evans, C. Zhou, and M.A. Reed, “Methods for Fabricating Ohmic Contacts to Nanowires and Nanotubes”, Jour. Vac. Sci. Technol. B24, 231 (2006). [pdf]

 X.H. Li, K.G. Klemic, J.F. Klemic, M.A. Reed, and F.J.Sigworth, "Microfluidic System for Planar PDMS Patch Clamp Electrode Arrays", Biophys. J. 90, Part 2 Suppl. S, 1448-Pos (2006). [pdf]

X.H. Li, K.G. Klemic, M.A. Reed, and F.J. Sigworth, "Microfluidic System for Planar Patch Clamp Electrode Arrays", NanoLett.. 6, 815 (2006). [pdf]

W.W. Deng, J.F. Klemic, X.H. Li, M.A. Reed, and A. Gomez,"Increase of electrospray throughput using multiplexed microfabricated sources for the scalable generation of monodisperse droplets", J. Aerosol Sci., 37, 696 (2006). [pdf]

E. Stern, G. Cheng, S. Guthrie, D. Turner-Evans, E.Broomfield, B. Lei, C. Li, D. Zhang, C. Zhou, and M.A. Reed,"Comparison of laser-ablation and hot-wall chemical vapour deposition techniques for nanowire fabrication", Nanotechnology 17, S246 (2006). [pdf]

A.W. Sanders, D.A. Routenberg, B.J. Wiley, Y. Xia, E.R. Dufresne, and M.A. Reed, "Observation of Plasmon Propagation, Redirection, and Fan-out in Silver Nanowires", Nano Lett. 6, 1822 (2006). [pdf]

E. Stern, S. Jay, J. Bertram, B. Boese, I. Kretzschmar, D. Turner-Evans, C. Dietz, D.A. LaVan, T. Malinski, T. Fahmy, and M.A. Reed, "Electropolymerization on Microelectrodes:  A Novel Functionalization Technique for Selective Protein and DNA Conjugation", Anal. Chem. 78, 6340 (2006). [pdf]

G. Cheng, E. Stern, S. Guthrie, M.A. Reed, R. Klie, Y. Hao, G. Meng, and L. Zhang, "Indium Oxide Nanostructures", Appl. Phys. A 85, 233 (2006). [pdf]

E. Cimpoiasu, E. Stern, G. Cheng, R.A. Munden, A. Sanders, andM.A. Reed, "Electron mobility study of hot-wall CVD GaN and InN nanowires", Braz. Jour. Phys. 36, 824 (2006). [pdf]

E. Cimpoiasu, E. Stern, R. Klie, R.A. Munden, G. Cheng, and M.A. Reed, "The effect of Mg doping on GaN nanowires", Nanotech. 17, 5735 (2006). [pdf]

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2005

X.H. Li, K.G. Klemic, J.F. Klemic, M.A. Reed, and F.J. Sigworth, "Microfluidic system for planar patch electrodes" Biophys. J. 88, 172A, Part 2 Suppl. S (2005).

Takhee Lee, Wenyong Wang and Mark A. Reed, “Intrinsic Electronic Transport through Alkanedithiol Self-Assembled Monolayer”, J. Jour. Appl. Phys. 44, 523 (2005). [pdf]

W. Wang, T. Lee, and M.A. Reed, “Electron Tunneling in Alkane Self-Assembled Monolayers”, Rep. Prog. Phys. 68, 523 (2005). [pdf]

T. Lee, W. Wang, J. J. Zhang, J. Su, J. F. Klemic, and M. A. Reed, “Cross-platform characterization of electron tunneling in molecular self-assembled monolayers”, Curr. Appl. Phys. 5, 213 (2005). [pdf]

W. Wang, T. Lee, and M.A. Reed, “Electronic Transport in Molecular Self-Assembled Monolayer Devices; Proc. IEEE (2005).  [pdf]

E. Stern, G. Cheng, E. Cimpoiasu, R. Klie, S. Guthrie, J. Klemic, I. Kretzschmar, E. Steinlauf, D. Turner-Evans, E. Broomfield, J.. Hyland, R Koudelka, T. Boone, M. Young, A. Sanders, R. Munden, T. Lee, D. Routenberg and M. A. Reed, “Electricalcharacterization of single GaN nanowires”, Nanotechnology 16, 2941 (2005). [pdf]

G. Cheng, E. Stern, D. Turner-Evans, and M. A. Reed, “Electronic properties of InN nanowires", Appl. Phys. Lett. 87, 253103 (2005). [pdf]

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2004

Li XH, Klemic KG, Klemic JF, Reed MA, Sigworth FJ, “Microfluidic isolation valves for planar patch electrode array”, Biophys. Jour. 86, 483A (2004).

Klemic KG, Klemic JF, Munden A, Reed MA, Sigworth FJ, “Single channel and whole-cell measurements using planar PDMS patch clamp electrodes”, Biophys. Jour. 86, 483A (2004).

W. Wang, T. Lee, and M.A. Reed, “Comment on “Fabrication of a Molecular Self-Assembled Monolayer Diode Using Nanoimprint Lithography””, Nano Lett. 4, 533 (2004). [pdf]

W. Wang, T. Lee, I. Kretzschmar, and M.A. Reed, “Inelastic Electron Tunneling Spectroscopy of Alkanedithiol Self-Assembled Monolayers”, Nano Lett. 4, 643 (2004). [pdf]

Reed, M.A., “Molecular Electronics – Back under control”, Nature Materials 3, 286 (2004). [pdf]

Lee, T.; Wang, W.; Klemic, J. F.; Zhang, J. J.; Su, J.; Reed, M. A., “Comparison of Electronic Transport Characterization Methods for Alkanethiol Self-Assembled Monolayers”, J. Phys. Chem. B. 108, 8742 (2004). [pdf]

W. Wang, T. Lee, and M.A. Reed, “Elastic and Inelastic Electron Tunneling in Alkane Self-Assembled Monolayers”, J. Phys. Chem. B. 108, 18398 (2004). (cover, feature article). [pdf]

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2003

J. Chen, J. Su, W. Wang, and M. A. Reed, “Electronic Memory Effects in Self-Assembled Monolayer Systems”, Physica E 16, 17 (2003). [pdf]

Wenyong Wang, Takhee Lee, and M. A. Reed, “Characterization of Electron Tunneling In Self-Assembled Alkanethiol Monolayer Devices”, Physica E 19, 117 (2003) [pdf]

W. Wang, T. Lee, M. Kamdar, M.A. Reed, M.P. Stewart, J.-J. Hwang, J.M. Tour, “Electrical characterization of metal-molecule-silicon junctions”, Superlattices and Microstructures 33, 217 (2003). [pdf]

Wenyong Wang, Takhee Lee, and M. A. Reed, “Characterization of Electron Tunneling In Self-Assembled Alkanethiol Monolayer Devices”, Phys. Rev. B 68, 035416 (2003)   [pdf]

Guosheng Cheng, Andrei Kolmakov, Youxiang Zhang, Martin Moskovits,
Ryan Munden, Mark A. Reed, Guangming Wang, Daniel Moses, and Jinping Zhang, "Current rectification in a single GaN nanowire with a well-defined p-n junction", Appl. Phys. Lett. 83, 1578 (2003). [pdf]

Flatt AK, Dirk SM, Henderson JC, Shen DE, Su J, Reed MA, Tour JM, “Synthesis and testing of new end-functionalized oligomers for molecular electronics”, Tetrahedron 59, 8555(2003). [pdf]

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2002

Klemic KG, Baker WT, Klemic JF, Reed MA, Sigworth FJ, “Patch clamping with a planar electrode array”, J. Biophysics 80, 1412 (2002). [pdf]

Klemic KG, Li XH, Klemic JF, Reed MA, and Sigworth FJ, “Improved planar PDMS patch electrode array”, J. Biophysics 82, 784 (2002). [pdf]

L.E. Calvet, H. Leubben, T.P. Ma, M.A. Reed, C. Wang, J.P. Snyder, J.R. Tucker, “Suppression of Leakage Current in Schottky Barrier Metal Oxide Semiconductor Field Effect Transistors”, J. Appl. Phys. 91, 757 (2002). [pdf]

L. E. Calvet, R.G. Wheeler, and M.A. Reed, “Electron Transport Measurements of Schottky Barrier Inhomogeneities”, Appl. Phys. Lett. 80, 1761 (2002). [pdf]

Kathryn G. Klemic, James F. Klemic, Mark A. Reed, Fred J. Sigworth, “Micromolded PDMS planar electrode allows patch clamp electrical recordings from cells”, Biosensors and Bioelectronics 17, 597 (2002). [pdf]

J. Chen and M. A. Reed, "Electronic Transport of Molecular Systems", Chem Phys. Vol. 281, 127 (2002). [pdf]

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2001

J. Chen, W. Wang, M. A. Reed, A. M. Rawlett, D. W. Price, and J. M. Tour, “Room Temperature Negative Differential Resistance in Nanoscale Molecular Junctions”, MRS Symposium Proceedings (MRS Fall 1999), Volume 582, H3.2, 2001.

A. M. Rawlett, E. T. Mickelson, W. A. Reinerth, L. Jones II, M. Kozaki, T. P. Burgin, J. M. Tour, J. Chen, C.-W. Zhou, C. J. Muller, M. R. Deshpande, M. A. Reed, L. A. Bumm, M. T. Cygan, T. D. Dunbar, P. S. Weiss, and D. L. Allara, “Molecular Scale Electronics”, MRS Symposium Proceedings (MRS Fall 1999), Volume 582, H9.2, 2001.

M. A. Reed, J. Chen, A. M. Rawlett, D. W. Price, and J. M. Tour, “Molecular Random Access Memory Cell”, Appl. Phys. Lett. 78, 3735 (2001). [pdf]

J. G. Wen, Z. P. Huang, D. Z. Wang, J. H. Chen, S. X. Yang, Z. F. Ren J. H. Wang, L. E. Calvet, J. Chen, J. F. Klemic, and M. A. Reed, “Growth and characterization of aligned carbon nanotubes from patterned nickel nanodots and uniform thin films”, Jour. Mat. Res. 16, 3246 (2001). [pdf]

Tour JM, Rawlett AM, Kozaki M, Yao YX, Jagessar RC, Dirk SM, Price DW, Reed MA, Zhou CW, Chen J, Wang WY, Campbell I, “Synthesis and Preliminary Testing of Molecular Wires and Devices,” Chem. Eur. J. 7, 5118 (2001). [pdf]

M.A. Reed, “Prospects for molecular-scale electronics”, MRS Bulletin 26, 113-120 (2001). [pdf]

Klemic JF, Stern E, Reed MA, “Hotwiring biosensors”, Nature Biotechnology 19, 924 (2001). [pdf]

 H. Zhu, J. Klemic, M. Bilgin, D. Hall, P. Bertone, M. Gerstein, M. Reed, and M. Snyder, "Analysis of yeast proteins using protein chips", Yeast 18, S108-S108 Suppl. 1 (2001).

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2000

M. A. Reed and J. M. Tour, “Computing with Molecules”, Scientific American 282, 86, 2000. [pdf]

M. A. Reed, “Molecular Electronics”, Yale Scientific 73, 17 (2000).

J. Chen, W. Wang, M. A. Reed, M. Rawlett, D. W. Price, and J. M. Tour, “Room-Temperature Negative Differential Resistance in Nanoscale Molecular Junctions”, Applied Physics Letters 77, 1224 (2000). [pdf]

M.R. Deshpande, J.W. Sleight, M.A. Reed, and R.G. Wheeler, “Sequential tunneling and spin degeneracy of 0-d states”, Phys. Rev. B62, 8240 (2000). [pdf]

L. E. Calvet, H. Luebben, M. A. Reed, C. Wang, J. P. Snyder, and J. R. Tucker, “Subthreshold and Scaling of PtSi Schottky Barrier MOSFETs”, Superlattices and Microstructures, 28, 501 (2000). [pdf]

H. Zhu, J. F. Klemic, S. Chang, P. Bertone, K. G. Klemic, D. Smith, M. Gerstein, M. A. Reed, and M. Snyder, “Analysis of Yeast Protein Kinases Using Silicone Elastomer Protein Chips”, Nature Genetics, 26, pp. 283 (2000). [pdf]

Huang, S.; Mickelson, E. T.; Rawlett, A. M.; Asplund, C. L.; Cassell, A. M.; Kozaki, M.; Burgin, T. P.; Jones, L. II; Tour, J. M.; Myrick, M. L.; Van Patten, P. G.; Chen, J.; Zhou, C.-W.; Muller, C. J.; Deshpande, M. R.; Reed, M. A.; Bumm, L. A.; Cygan, M. T.; Dunbar, T. D.; Weiss, P. S.; Allara, D. L. "Molecular Scale Electonics. Critical Nanolithography Issues of Synthesis and Addressing." Mater. Res. Soc. Proc., 2000, 584, 45-56.

Rawlett, A. M.; Huang, S.; Mickelson, E. T.; Reinerth, W. A.; Jones, L. II; Burgin, T. P.; Tour, J. M.; Chen, J.; Zhou, C.-W.; Muller, C. J.; Deshpande, M. R.; Reed, M. A. "Molecular Assembly of Nanostructures: Towards Nano-Computers," In Clusters and Nanostructure Interfaces, Jena, P.; Khanna, S. N.; Rao, B. K. Eds., World Scientific: London, 2000, p 693-700.

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1999

M. A. Reed, “Molecular Scale Electronics”, Proceedings of the IEEE: Special Issue on Nanoelectronics 87, 652 (1999). [pdf]

M. A. Reed and F. J. Sigworth. 1999. “Design of a microfabricated quartz electrode for ultra-low noise patch clamp recordings”, Biophys J. 76:A399.

F. Ren, Z. P. Huang, J. W. Xu, D. Z. Wang, J. H. Wang, L. E. Calvet, J. Chen, J. F. Klemic, M. A. Reed, “The growth of large arrays of well-aligned carbon nanotubes on silicon”, Proceedings of 13th International Winter School on Electronic Properties of Novel Materials, Feb. 27 – Mar. 6, 1999, Kirchberg / Tirol, Austria.

J. Chen, M. A. Reed, C. L. Asplund, A. M. Cassell, A. M. Rawlett, J. M. Tour, and P. G. Van Patten, “Placement of Conjugated Oligomers in an Alkanethiol Matrix by Scanned Probe Microscope Lithography”, Appl. Phys. Lett. 75, 624 (1999). [pdf]

Z. F. Ren, Z. P. Huang, D. Z. Wang, J. G. Wen, J. W. Xu, J. H. Wang, L. E. Calvet, J. Chen, J. F. Klemic, M. A. Reed, “Growth of a Single Free-Standing Multiwall Carbon Nanotube on Each Nano-Nickel Dot”, Appl. Phys. Lett. 75, 1086 (1999). [pdf]

J. Chen, L.C. Calvet, and M. A. Reed, D. W. Carr, D.S. Grubisha and D. W. Bennett, “Electronic transport through metal-1,4-phenylene diisocyanide-metal junctions”, Chem. Phys. Lett., 313, 741 (1999). [pdf]

J. Chen, M. A. Reed, A. M. Rawlett, and J. M. Tour, “Observation of a Large On-Off Ratio and Negative Differential Resistance in an Electronic Molecular Switch”, Science, 286, 1550 (1999). [pdf]

M. A. Reed, D.W. Bennett, J. Chen, D.S. Grubisha, L. Jones II, A.M. Rawlett, J.M. Tour, and C. Zhou, “Prospects for Molecular-Scale Devices”, IEDM Tech. Digest p. 227, 1999.

Klemic, K. G., J. F. Klemic, M. A. Reed and F. J. Sigworth. 1999. “Quartz "microchips" partitions for improved planar lipid bilayer recording of single channel currents”, Biophys J. 78:266A (1999). [pdf]

Rawlett, A.; Chen, J.; Reed, M. A.; Tour, J. M. "Advances in Molecular Scale Electronics: Synthesis and Testing of Molecular Scale Resonant Tunneling Diodes and Molecular Scale Controllers," Polym. Mater., Sci. Engin. (Am. Chem. Soc., Div. Polym. Mater.) 1999, 81, 140-141

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1998

Reinerth, W. A.; Burgin, T. P.; Dunbar, T. D.; Bumm, L. A.; Arnold, J. J.; Jackiw, J. J.; Zhou, C.-w.; Deshpande, M. R.; Allara, D. L.; Weiss, P. S.; Reed, M. A.; Tour, J. M. "Self-Assembled Monolayer Formation of Organoselenium Compounds on Gold and its Significance for Molecular Scale Electronics," Polym. Mater., Sci. Engin. (Am. Chem. Soc., Div. Polym. Mater.), 1998, 78, 178-179.

M. A. Reed, “Molecular Scale Electronics”, proceedings of the NATO ARW on Future Trends in Microelectronics, Isle de Embiez, Fannce, 1998.

Reinerth WA, Jones L, Burgin TP, Zhou CW, Muller CJ, Deshpande MR, Reed MA, Tour JM, “Molecular scale electronics: syntheses and testing”, Nanotechnology 9, (1998). [pdf]

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1997

M.A. Reed, C. Zhou, C.J. Muller, T.P. Burgin, and J.M. Tour, “Conductance of a molecular junction”, Science 278, 252 (1997). [pdf]

C. Zhou, M.R. Deshpande, M.A. Reed, and J.M. Tour, “Fabrication of nanoscale metal/self-assembled monolayer/metal heterostructures”, Appl. Phys. Lett. 71, 611 (1997). [pdf]

Errata 71, 2857 (1997). [pdf]

J. Huber, J. Chen, J. A. McCormack, C. W. Zhou, and M. A. Reed, “An RTD/Transistor Switching Block and Its Possible Application in Binary and Ternary Adders”, IEEE Trans. Elect. Dev. 44, 2149 (1997). [pdf]

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1996

M. Amman, J. W. Sleight, D. R. Lombardi, R. E. Welser, M. R. Deshpande, M. A. Reed, and L. J. Guido, “Atomic force microscopy study of electron beam written contamination structures”, J. Vac. Sci. Technol. B14, 54 (1996). [pdf]

C. J. Muller, J. M. Krans, T. N. Todorov, and M. A. Reed, “Quantization effects in the conductance of metallic contacts at room temperature”, Phys. Rev. B53, 1022 (1996). [pdf]

Jones, L., II; Pearson, D. L.; Lamba, J. J. S.; Tour, J. M.; Whitesides, G. M.; Muller C. J.; Reed, M. A. “Conjugated Oligomers, Their Assembly on Gold, and Their Uses in Molecular Electronics Studies”, Polym. Prepr. (Am. Chem. Soc., Div. Polym. Chem.) 1995, 36(1), 564-565.

“There is plenty of room between two atom contacts”, C.J. Muller and M.A. Reed, Science. 272, 1901 (1996). [pdf]

J.W. Sleight, E.S. Hornbeck, M.R. Deshpande, R.G. Wheeler, M.A. Reed, R.C. Bowen, W.R. Frensley, J.N. Randall, and R.J. Matyi, “Electron-spectroscopic study of vertical In1-xGaxAs quantum dots”, Phys. Rev. B53, 15727 (1996). [pdf]

L.D. Macks, S.A. Brown, R.G. Clark, R.P. Starrett, M.A. Reed, M.R. Deshpande, C.J.L. Fernando, and W.R. Frensley,”Resonant tunneling in double quantum well - triple barrier heterostructures”, Phys. Rev. B54, 4857 (1996). [pdf]

C. J. Muller, B. J. Vleeming, and M. A. Reed, J. J. S. Lamba, R. Hara, L. Jones II, and J. M. Tour, “Atomic probes: A search for conduction through a single molecule”, Nanotechnology, 7, 409 (1996). [pdf]

M.R. Deshpande, J.W. Sleight, M.A. Reed, and R.G. Wheeler, “Zeeman splitting of single semiconductor impurities in resonant tunneling heterostructures”, Superlattices and Microstructures 20, 513 (1996). [pdf]

M.R. Deshpande, J.W. Sleight, M.A. Reed, R.G. Wheeler, and R.J. Matyi,“Spin splitting of single 0D impurity states in semiconductor heterostructure quantum wells”, Phys. Rev. Lett. 76, 1328 (1996). [pdf]

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1995


J.W. Sleight, R.J. Agarwal, W. Duncan, Y.-C. Kao, H.L. Tsai, W.R. Frensley, C.L. Fernando, and M. A. Reed, “Spectroscopic Study of Intraminiband and Interminiband Tunneling in Finite Superlattices”, Phys. Rev. B 51, 10701 (1995). [pdf]

C. Zhou, C.J. Muller, M.R. Deshpande, J. W. Sleight, and M.A. Reed, “Microfabrication of a mechanically controllable break junction in silicon”, Applied Physics Letters 67, 1160 (1995). [pdf]

1994

J. L. Huber, M. A. Reed, G. Kramer, M. Adams, W. R. Frensley, and C. L. Fernando, “Resonant interband and intraband tunneling in InAs/AlSb/GaSb double barrier diodes”, Proceedings of the 20th International Symposium on Gallium Arsenide and Related Compounds, Freiburg 1993, Institute of Physics Conference Series 136, pp. 203-208 (1994).

L. D. Macks, S. A. Brown, R. P. Starrett, R. G. Clark, M. R. Deshpande, M. A. Reed, C. L. Fernando, W. R. Frensley, and R. J. Matyi, “High magnetic field tunneling transport in a double quantum well - triple barrier resonant tunneling diode”, Physica B201, 374 (1994). [pdf]

J.W. Sleight, R.E. Welser, L.J. Guido, M. Amman, and M.A. Reed, “Controlled Nucleation of InAs Clusters on (100) GaAs Substrates by Electron Beam Lithography”, Proc. 21st Symposium on Compound Semiconductors, San Diego, CA (1994).

M. R. Deshpande, E. S. Hornbeck, P. Kozodoy, N. H. Dekker, J. W. Sleight, M. A. Reed, C. L. Fernando, and W. R. Frensley, “Low dimensional resonant tunneling and Coulomb blockade: a comparison of fabricated versus impurity confinement”, Semicond. Sci. Technol. 9 , 1919 (1994). [pdf]

M. R. Deshpande, J. L. Huber, N. H. Dekker, P. Kozodoy, J. W. Sleight, M. A. Reed, C. L. Fernando, W. R. Frensley, R. J. Matyi, and Y. C. Kao, “3-D to 0-D single electron tunneling through bound states of donor impurities in resonant tunneling heterostructures”, Proceedings of the 22nd International Conference on the Physics of Semiconductors, Vancouver, BC, Canada, August 1994 (ed. D. J. Lockwood, World Scientific, Singapore, 1994), pg. 1899.

M. R. Deshpande, M. A. Reed, L. D. Macks, S. A. Brown, R. P. Starrett, R. G. Clark, C. J. L. Fernando, and W. R. Frensley, “Magneto-transport in triple barrier resonant tunneling diodes”, Proceedings of the 11th international conference on high magnetic fields in semiconductor Physics, MIT, Boston, USA, August 1994.  

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1993

M. A. Reed, “Quantum Dots”, Scientific American 268, Number 1, 118, 1993.
[pdf]

J. W. Sleight, M. A. Reed, C.-C. Cho, and B. Gnade, “Vertical conduction in thin Si/CaF2/Si structures”, Superlattices and Microstructures 13, 365 (1993). [pdf]

D. R. Lombardi, J. D. McCambridge, M. A. Reed, J. J. S. Lamba, J. S. Schumm, L. Jones, and J. M. Tour, “Ambient STM of Thiophene and Phenylene Oligomers on an Au surface”, 1st U. S. Army Natick Research and Engineering Center Symposium on Atomic Force and Scanning Tunneling Microscopy, 8-10 June 1993 (Plenum 1994).

J. L. Huber, M. A. Reed, G. Kramer, M. Adams, W. R. Frensley , and C. L. Fernando, “Resonant interband and intraband tunneling in InAs/AlSb/GaSb double barrier diodes”, 1993 Proceedings of the Cornell Conference on High Speed Devices.

M. R. Deshpande, N. H. Dekker, J. W. Sleight, E. S. Hornbeck, M. A. Reed, R. J. Matyi, Y. C. Kao, C. L. Fernando, and W. R. Frensley, “Observation of novel conductance structure in GaAs/AlGaAs resonant tunneling heterostructures”, 1993 Proceedings of the Cornell Conference on High Speed Devices.

M. A. Reed, “Quantum Constructions”, Science 262, 195 (1993). 

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1992

M. A. Reed, J. N. Randall, and J. H. Luscombe, “Semiconductor Quantum Dot Resonant Tunneling Spectroscopy”, Proceedings of the 7th International Conference on Hot Carriers in Semiconductors (HCIS-7), Nara, Japan, 1-5 July 1991), Semicond. Sci. Technol. 7, B12 (1992). [pdf]

A. C. Seabaugh, Y.-C. Kao, W. R. Frensley, J. N. Randall, and M. A. Reed, “Resonant-Transmission in the Base/Collector Junction of a Bipolar Quantum-Well Resonant-Tunneling Transistor”, Appl. Phys. Lett. 59, 3413 (1992). [pdf]

H. M. Marchman, G. C. Wetsel, Jr., M. A. Reed, J. N. Randall, and Y.-C. Kao, “Scanning Tunneling Microscope Images of Identifiable Quantum Dot Diodes”, Superlattices and Microstructures 11, 333 (1992). [pdf]

M. A. Reed, R. J. Aggarwal, and Y.-C. Kao, “Tunneling spectroscopic study of miniband break-up and coherence in finite superlattice”, Proceedings of the 18th International Symposium on Gallium Arsenide and Related Compounds, Seattle, 1991, Institute of Physics Conference Series Number 120 pg. 607 (1992).  

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1991

A. C. Seabaugh, Y-C. Kao, W. R. Frensley, J. N. Randall, and M. A. Reed, “Formation of Rotation-Induced Superlattices and Their Observation by Tunneling Spectroscopy”, Appl. Phys. Lett. 59, 570 (1991). [pdf]

A. C. Seabaugh, Y-C. Kao, H.-Y. Liu, J. H. Luscombe, H.-L. Tsai, M. A. Reed, B. E. Gnade, and W. R. Frensley, “Characterization of Unintentionally-Ordered Superlattice Resonant Tunneling Diodes”, Proceedings of the Second International Conference on Indium Phosphide and Related Materials, Denver, 1990.

M. A. Reed, J. N. Randall, and J. H. Luscombe, “Non-Equilibrium Quantum Dot Transport”, Proceedings of the NATO ASI on Granular Nanoelectronics, NATO ASI Series B : Physics Vol. 251 (Plenum, New York, 1991), pp.79-83. 

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1990

H. Yoo, S. M. Goodnick, J. R. Arthur, and M. A. Reed, “Phonon Assisted Tunneling in Lattice-matched and Pseudomorphic Resonant Tunneling Diodes”, J. Vac. Sci. Technol. B 8, 370 (1990). [pdf]

M. A. Reed, J. N. Randall, and J. H. Luscombe, “Non-equilibrium Quantum Dots: Transport”, Nanotechnology 1, 63 (1990). [pdf]

M. A. Reed, J. N. Randall, and J. H. Luscombe, “Quantum Dot Resonant Tunneling Spectroscopy”, in Localization and Confinement of Electrons in Semiconductors, Springer Series in Solid-State Sciences 97, (Springer-Verlag, 1990, H. Heinrich, G. Bauer, and F. Kuchar, eds., 1990), pg. 20.

R. J. Aggarwal, M. A. Reed, W. R. Frensley, Y.-C. Kao, and J. H. Luscombe, “Tunneling spectroscopic study of finite superlattices”, Appl. Phys. Lett. 57, 707 (1990). [pdf]

J. N. Randall, Y-C. Kao, and M. A. Reed, “Fabrication of closely spaced quantum dot diodes”, J. Vac. Sci. Technol. B8, 1348 (1990). [pdf]

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Before 1990

M. A. Reed and A. Honig, “Luminescence Excitation Mechanisms in CdS from Dependence of Photoluminescence and Thermoluminescence on Persistent Conductivity Stored Charge State”, Jour. Lum. 31-32, 415 (1984). [pdf]

M. A. Reed, R. T. Bate, W. M. Duncan, W. R. Frensley, and H. D. Shih, “Reduction of Electron-Phonon Scattering Rates by Total Spatial Quantization”, Picosecond Electronics and Optoelectronics, Springer Series in Electrophysics 21, (Springer-Verlag, Heidelberg, 1985) G. A. Mourou, D. M. Bloom, and C. H. Lee, eds., pg 135.

M. A. Reed, R. T. Bate, K. Bradshaw, W. M. Duncan, W. R. Frensley, J. W. Lee, and H. D. Shih, “Evidence for Spatial Quantization in GaAs-AlGaAs Multiple Quantum Dots”, J. Vac. Sci. Technol. 4B, 358 (1986). [pdf]

M. A. Reed, “Excited State Resonant Tunneling in GaAs-AlGaAs Double Barrier Heterostructure”, Superlattices and Microstructures 2, 65 (1986). [pdf]

W. P. Kirk, P. S. Kobiela, R. A. Schiebel, and M. A. Reed, “Investigation of the 2-Dimensional Electron Gas in HgCdTe by Quantum Hall Effect Measurement”, J. Vac. Sci. Technol. 4A, 2132 (1986). [pdf]

M. A. Reed, J. W. Lee, R. K. Aldert, and A. E. Wetsel, “Investigation of Quantum Well and Tunnel Barrier Growth by Resonant Tunneling”, Jour. Mat. Res. 1, 337 (1986).

M. A. Reed, J. W. Lee, and H-L. Tsai, “Resonant Tunneling Through a Double GaAs/AlAs Superlattice Barrier, Single Quantum Well Heterostructure”, Appl. Phys. Lett. 49 , 158 (1986). [pdf]

M. A. Reed, “Quantum Semiconductor Devices”, 1986 Symposium on VLSI Technology Technical Digest (IEEE Cat. No. 86 CH 2318-4), pg. 1.

M. A. Reed, W. P. Kirk, and P. S. Kobiela, “Investigation of Parallel Conduction in GaAs/AlxGa1-xAs Modulation Doped Structures in the Quantum Limit”, IEEE Jour. Quant. Elect. (Special Issue on Quantum Well Structures : Physics and Applications) QE22, 1753 (1986). [pdf]

M. A. Reed and J. W. Lee, “Resonant Tunneling In Double Barrier Heterostructures”, Proceedings of the 18th International Conference on the Physics of Semiconductors, 11-15 August 1986, Stockholm (World Scientific Publishing Co. Pte. Ltd., O. Engström, ed.), p. 231 (1987).

W. P. Kirk, P. S. Kobiela, R. A. Schiebel, and M. A. Reed, “Investigation of the 2-DEG in a HgCdTe Inversion Layer in the Quantum Limit”, Proceedings of the 18th International Conference on the Physics of Semiconductors, 11-15 August 1986, Stockholm (World Scientific Publishing Co. Pte. Ltd., O. Engström, ed.), p.497 (1987).

M. A. Reed and J. W. Lee, “Resonant Tunneling In Double Superlattice Barrier Heterostructures", Superlattices and Microstructures 3, 111 (1987). (Proceedings of the 2nd International Conference on Superlattices, Microstructures, and Microdevices, 17-20 August 1986, Göteborg). [pdf]

W. P. Kirk, P. S. Kobiela, H. D. Shih, and M. A. Reed, “Photoexcited Quantum Hall Behavior in Modulation Doped GaAs/AlGaAs Heterostructures : Parallel Conduction and Subthreshold Photoeffects”, High Magnetic Fields in Semiconductor Physics (Springer Series in Solid-State Sciences 71, 1987), pg. 122.

M. A. Reed, R. J. Koestner, and M. W. Goodwin, “Resonant Tunneling Through a HgTe/Hg1-xCdxTe Double Barrier, Single Quantum Well Heterostructure”, Appl. Phys. Lett. 49, 1293 (1986). [pdf]

M. A. Reed, J. W. Lee, and H-L. Tsai, “Resonant Tunneling in a Double GaAs/AlAs Superlattice Barrier Heterostructure”, Proceedings of the 13th International Symposium on Gallium Arsenide and Related Compounds, Las Vegas 1986, Institute of Physics Conference Series Number 83 (Institute of Physics, IOP Publishing Ltd., W. T. Lindley, ed., 1987), pg. 545.

M. A. Reed, “Quantum Semiconductor Devices”, Molecular Electronic Devices, Proceedings of the 3rd International Symposium on Molecular Electronic Devices, 6-8 October 1986, Washington, D. C. (Elsevier, F. L. Carter, R. E. Siatkowski, and H. Wohltjen, eds., 1988), pg. 3.

M. A. Reed, R. J. Koestner, M. W. Goodwin, and H. F. Schaake, “Resonant Tunneling Through a HgTe/Hg1-xCdxTe Double Barrier, Single Quantum Well Heterostructure”, J. Vac. Sci. Technol. 5A, 3147 (1987). [pdf]

J. W. Lee and M. A. Reed, “MBE Growth of AlGaAs/(In,Ga)As Resonant Tunneling Structures”, J. Vac. Sci. Technol. B5, 771 (1987). [pdf]

M. A. Reed and J. W. Lee, “Resonant Tunneling in a GaAs/AlGaAs Barrier/InGaAs Quantum Well Heterostructure”, Appl. Phys. Lett. 50, 845 (1987). [pdf]

M. A. Reed, R. T. Bate, and J. W. Lee, “Resonant Tunneling in Double Barrier Heterostructures”, SPIE Proceedings Vol. 792 : Quantum Well and Superlattice Physics, pg. 18 (1987).

R. T. Bate, G. A. Frazier, W. R. Frensley, J. W. Lee, and M. A. Reed, “Prospects for Quantum Integrated Circuits”, SPIE Proceedings Vol. 792 : Quantum Well and Superlattice Physics, pg. 26 (1987).

E. C. Palm, P. S. Kobiela, W. P. Kirk, R. A. Scheibel, and M. A. Reed, “Magnetotransport Studies of Weak Localization and Spin-Orbit Scattering in a HgCdTe Two-Dimensional Electron Gas”, J. Jour. Appl. Phys. 26, 701 (1987).

M. A. Reed, “Vertical Electronic Transport in Novel Semiconductor Heterojunction Structures”, Superlattices and Microstructures 4, 741 (1988). [pdf]

R. J. Matyi and M. A. Reed, “Quantization of the Hall Effect in a 3-Dimensional Quasiperiodic System”, Superlattices and Microstructures 3, 535 (1987). [pdf]

J. N. Randall, M. A. Reed, T. M. Moore, R. J. Matyi, and J. W. Lee, “Microstructure Fabrication and Transport Through Quantum Dots”, J.Vac. Sci. Technol. B6, 302, 1988. [pdf]

M. A. Reed, J. N. Randall, R. J. Aggarwal, R. J. Matyi, T. M. Moore, and A. E. Wetsel, “Observation of discrete electronic states in a zero-dimensional semiconductor nanostructure”, Phys. Rev. Lett. 60, 535 (1988). [pdf]

M. A. Reed, R. J. Koestner, M. W. Goodwin, and H. F. Schaake, “Resonant Tunneling Through HgCdTe Heterostructures”, J. Vac. Sci. Technol. A6, 2619 (1988). [pdf]

M. A. Reed, “Vertical Electronic Transport in Semiconductore Nanostructures”, Physics and Technology of Submicron Structures, (Springer-Verlag, H. Heinrich, G. Bauer, and F. Kuchar, eds., 1988), pg. 64.

E. C. Palm, P. S. Kobiela, W. P. Kirk, R. A. Schiebel, and M. A. Reed, “Electron Transport and Localization in HgCdTe MISFETs”, J. Vac. Sci. Technol. A6 , 2716 (1988). [pdf]

J. N. Randall, M. A. Reed, R. J. Matyi, and T. M. Moore, “Nanostructure Fabrication of Zero-Dimensional Quantum Dot Diodes”, J. Vac. Sci. Technol. B6, 1861 (1988). [pdf]

J. N. Randall, M. A. Reed, R. J. Matyi, T. M. Moore, R. J. Aggarwal, and A. E. Wetsel, “Nanofabrication of Quantum Coupled Devices,” SPIE vol. 945, 137 (1988).

A. C. Seabaugh, M. A. Reed, W. R. Frensley, J. N. Randall and R. J. Matyi, “Realization of Pseudomorphic and Superlattice Bipolar Resonant Tunneling Transistors,” 1988 IEEE International Electron Devices Meeting, Tech. Digest pg. 900.

W. R. Frensley, M. A. Reed, and J. H. Luscombe, “Photoluminescent Determination of Charge Accumulation in Resonant Tunneling Structures,” (Comment), Phys. Rev. Lett. 62, 1208 (1989). [pdf]

M. A. Reed, W. R. Frensley, R. J. Matyi, J. N. Randall, and A. C. Seabaugh, “Realization of a Three-Terminal Resonant Tunneling Device : The Bipolar Quantum Resonant Tunneling Transistor,” Appl. Phys. Lett. 54, 1034 (1989). [pdf]

M. A. Reed, W. R. Frensley, W. M. Duncan, R. J. Matyi, A. C. Seabaugh, and H-L. Tsai, “Quantitative Resonant Tunneling Spectroscopy : Current-Voltage Characteristics of Precisely Characterized RTDs,” Appl. Phys. Lett. 54, 1256 (1989). [pdf]

M. Luban, J. H. Luscombe, M. A. Reed, and D. L. Pursey, “Anharmonic Oscillator Model of a Quantum Dot Nanostructure”, Appl. Phys. Lett. 54, 1997 (1989). [pdf]

M. A. Reed, W. R. Frensley, W. M. Duncan, R. J. Matyi, A. C. Seabaugh, and H-L. Tsai, “Quantitative Resonant Tunneling Spectroscopy : Current-Voltage Characteristics of Precisely Characterized RTDs”, Proceedings of the 15th International Symposium on Gallium Arsenide and Related Compounds, Atlanta, 1988, Institute of Physics Conference Series Number 96 (Institute of Physics, IOP Publishing Ltd., J. S. Harris, ed., 1989), pg. 587.

A. C. Seabaugh, W. R. Frensley, J. N. Randall, M. A. Reed, D. L. Farrington, and R. J. Matyi, “Pseudorporphic Biploar Resonant Tunneling Transistor”, IEEE Trans. Electron Devices 36, 2328 (1989). [pdf]

R. T. Bate, G. A. Frazier, W. R. Frensley, and M. A. Reed, “An Overview of Nanoelectronics”, Texas Instruments Technical Journal : Special Issue on Nanoelectronics, 6, Number 4, pg. 13.

M. A. Reed, A. C. Seabaugh, W. R. Frensley, R. J. Matyi, J. N. Randall, Y-C. Kao, C-H. Yang, H-L. Tsai, and D. L. Farrington, “Resonant Tunneling Transistors”, Texas Instruments Technical Journal : Special Issue on Nanoelectronics, 6, Number 4, pg. 29.

J. N. Randall, J. H. Luscombe, M. A. Reed, and A. C. Seabaugh, “Laterally Quantized Electron Devices: Particle-in-a-Box Technology”, Texas Instruments Technical Journal : Special Issue on Nanoelectronics, 6, Number 4, pg. 49.

J. N. Randall, M. A. Reed, and G. A. Frazier, “Nanoelectronics : Fanciful Physics or Real Devices?”, J. Vac. Sci. Technol. B7, 1398 (1989). [pdf]

A. C. Seabaugh, W. R. Frensley, Y-C. Kao, R. J. Matyi, J. N. Randall, and M. A. Reed, “Quantum-Well Resonant-Tunneling Transistors”, Proceedings of the Twelfth Biennial Conference on Advanced Concepts in High Speed Semiconductor Devices and Circuits, August 7-9, 1989, Cornell University.

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BOOKS

G. Wang, T-W. Kim, T. Lee, W. Wang, and M. A. Reed, " Electronic Properties of Alkanethiol Molecular Junctions: Conduction Mechanisms, Metal–Molecule Contacts, and Inelastic Transport", Andrews DL, Scholes, GD and Wiederrecht GP (eds.), Comprehensive Nanoscience and Technology, volume 4, pp. 463–487 Oxford: Academic Press (2011).

W. Wang, T. Lee, and M.A. Reed, “Electronic Transport Through Self-Assembled Monolayers”, Nanoscale Assembly, edited by Wilhelm Huck, (Kluwer Academic/Plenum Publishers, to be published 2005).

W. Wang, T. Lee, and M.A. Reed, “Intrinsic Electronic Conduction Mechanisms in Self-Assembled Monolayers”, Introducing Molecular Electronics, Proceedings of the Dresden ADMOL Conference, to be published 2005.  [pdf]  

J. Chen, T. Lee, J. Su, W. Wang, M.A. Reed, “Molecular Electronic Devices”, Encyclopedia of Nanoscience and Nanotechnology, edited by H.S. Nalwa, 5, 633 (American Scientific, 2004)

I. Kretzschmar and M.A. Reed, “Self-Assembly of Two- and Three-Dimensional Nanostructures for Electronic Applications”, Encyclopedia of Nanoscience and Nanotechnology, edited by J. A. Schwarz, C. Contescu, and K. Putyera (Marcel Dekker, 2004).

Molecular Nanolectronics, edited by M. A. Reed and T. Lee, (American Scientific Publishers, 2003).

Molecular Electronics (MRS Symposium Proceedings, Volume 582), edited by S. T. Pantelides, M. A. Reed, J. S. Murday, and A, Aviram (MRS, Warrendale, PA 2001).

Compound Semiconductors 1997 (Proceedings of the 24th International Symposium on Compound Semiconductors, San Diego, 8-11 September 1997), edited by M. Melloch and M. A. Reed.( Institute of Physics., 1998).

Nanostructures and Mesoscopic Systems (Proceedings of the International Conference on Nanostructures and Mesoscopic Systems, Santa Fe, New Mexico, 20-24 May 1991), edited by W. P. Kirk and M. A. Reed (Academic Press, San Diego, 1992).

Nanostructured Systems, Volume 35 of the series Semiconductors and Semimetals, R. K. Willardson, A. C. Beer, and E. R. Weber series editors, M. A. Reed volume editor (Academic Press, San Diego, 1992).

Nanostructure Physics and Fabrication (Proceedings of the International Conference on Nanostructure Physics and Fabrication, College Station, Texas, 13-15 March 1989), edited by M. A. Reed and W. P. Kirk (Academic Press, San Diego, 1989).

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BOOK CHAPTERS

W. Wang, T. Lee, M. Kamdar, M.A. Reed, M. P. Steward, J. J. Huang, and J. M. Tour, “Electrical Characterization of Metal-Molecule-Silicon Junctions”, Molecular Electronics III, Ann. N.Y. Acad. Sci. 1006, pp. 36-47 (2003). [pdf]

T. Lee, W. Wang, M.A. Reed, “Mechanism of Electron Conduction In Self-Assembled Alkanethiol Monolayer Devices”, Molecular Electronics III, Ann. N.Y. Acad. Sci. 1006, pp. 21–35 (2003). [pdf]

J. Chen, T. Lee, J. Su, W. Wang, M.A. Reed, A.M. Rawlett, M. Kozaki, Y. Yao, R. C. Jagessar, S. M. Dirk, D. W. Price, J. M. Tour, D.S. Grubisha, and D. W. Bennett, “Molecular Electronic Devices”, Molecular Nanolectronics, edited by M. A. Reed and T. Lee, (American Scientific Publishers, 2003).  [pdf]

J. Chen, W. Wang, J. Klemic, M. A. Reed, B. W. Axelrod, D. M. Kaschak, A. M. Rawlett, D. W. Price, S. M. Dirk, J. M. Tour, D. S. Grubisha, D. W. Bennett, “Molecular wires, switches, and memories”, Molecular Electronics II, Ann. N.Y. Acad. Sci. 960, pp. 69-99 (2002). [pdf]

M. A. Reed, J. W. Sleight,and M. R. Deshpande, “Electronic Transport Properties of Quantum Dots”, Handbook of Nanostructured Materials and Nanotechnology, ed. H. S. Nalwa (Academic Press 1999).

M.A. Reed, C. Zhou, M.R. Deshpande, and C.J. Muller, T. P. Burgin, L. Jones II, and J. M. Tour, “The Electrical Measurement of Molecular Junctions”, Molecular Electronics: Science and Technology, Molecular Electronics: Science and Technology, Ann. N.Y. Acad. Sci. 852, pp. 133-144 (1998). [pdf]

Tour, J. M.; Reinerth, W. A.; Jones, L., II, Burgin, T. P., Zhou, C.-w.; Muller, C. J.; Deshpande, M. R.; Reed, M. A., “Recent Advances in Molecular Scale Electronics”, Molecular Electronics: Science and Technology, Ann. N.Y. Acad. Sci. 852, pp. 197-204 (1998). [pdf]

C. Zhou, C.J. Muller, M.R. Deshpande, J. McCormack, and M.A. Reed, “Conductance Quantization in Fully Integrated Break Junctions at Room Temperature”, in Nanowires, eds. P.A. Serena and N. Garcia, Kluwer, Netherlands, 1997.

C.Zhou, C.J. Muller, M.A. Reed, T.P. Burgin, and J.M. Tour, “Mesoscopic Phenomena Studied with Mechanically Controllable Break Junctions at Room Temperature”,in Molecular Electronics (eds. J. Jortner and M. Ratner, Blackwell Science, Oxford, United Kingdom, 1997).

A. C. Seabaugh and M. A. Reed, “Resonant Tunneling Transistors”, Heterostructure and Quantum Devices, volume editors N. G. Einspruch and W. R. Frensley, in the series VLSI Electronics: Microstructure Science, series editor N. G. Einspruch (Academic Press, 1994), pg. 351.

M. A. Reed and A. C. Seabaugh, “Prospects for Semiconductor Quantum Devices”, in Biomolecular Electronics, editor R. R. Birge, in the series American Chemical Society Advances in Chemistry (American Chemical Society, 1994).

M.A. Reed and J.W. Sleight, “Fabrication of Nanoscale Devices”, in Quantum Transport in Ultrasmall Devices, ed. D. K. Ferry et al., (Proceedings of the NATO ASI, Il Ciocco, Italy, July, 1994, Plenum Press.), p. 111.

M. A. Reed, J. H. Luscombe, J. N. Randall, W. R. Frensley, R. J. Aggarwal, R. J. Matyi, T. M. Moore, and A. E. Wetsel, “Quantum Dot Resonant Tunneling Spectroscopy”, Proceedings of NATO Advanced Research Workshop on the Science and Engineering of 1- and 0- Dimensional Semiconductors, Cadiz, Spain, 29 March - 1 April 1989, pg. 139.

M. A. Reed, J.N. Randall, J. H. Luscombe, W. R. Frensley, R. J. Aggarwal, R. J. Matyi, T. M. Moore, and A. E. Wetsel, “Quantum Dot Resonant Tunneling Spectroscopy”, Proceedings of “Arbeitskreis Festkörperphysik bei der Deutschen Physikalischen Gesellschaft” (German Physical Society, Solid State), Münster, Germany, 3-7 April 1989, published in Festkörperprobleme / Advances in Solid State Physics Vol 29, ed. U. Rößler (Vieweg, Braunschweig/Wiesbaden 1989), pg. 267.     

M. A. Reed, “Resonant Tunneling in Double Barrier Heterostructures”, Properties of Impurity States in Semiconductor Superlattices, NATO ASI Series B : Physics Vol. 183 (Plenum, New York, 1988), pp. 255-269.

M. A. Reed, J. H. Luscombe, J. N. Randall, W. R. Frensley, R. J. Aggarwal, R. J. Matyi, T. M. Moore, and A. E. Wetsel, “Quantum Dot Resonant Tunneling Spectroscopy”, Proceedings of NATO Advanced Research Workshop on the Science and Engineering of 1- and 0- Dimensional Semiconductors, Cadiz, Spain, 29 March - 1 April 1989, pg. 139.

M. A. Reed, J.N. Randall, J. H. Luscombe, W. R. Frensley, R. J. Aggarwal, R. J. Matyi, T. M. Moore, and A. E. Wetsel, “Quantum Dot Resonant Tunneling Spectroscopy”, Proceedings of “Arbeitskreis Festkörperphysik bei der Deutschen Physikalischen Gesellschaft” (German Physical Society, Solid State), Münster, Germany, 3-7 April 1989, published in Festkörperprobleme / Advances in Solid State Physics Vol 29, ed. U. Rößler (Vieweg, Braunschweig/Wiesbaden 1989), pg. 267.     

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Mark A. Reed Group