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First Principles Molecular Modeling of Sensing Material Selection for Hybrid Biomimetic Nano-Sensors.
M. Blanco, M. C. McAlpine, J. R. Heath, in Computational Methods for Sensor Material Selection. Eds: M. A. Ryan, A. V. Shevade, C. J. Taylor, M. L. Homer, M. Blanco. (Springer, 2009). Full Text: Link
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9 |
Development of Ultra-High Density Silicon Nanowire Arrays for Electronics Applications.
D. Wang, B. A. Sheriff, M. C. McAlpine, J. R. Heath, Nano Res. 2008, 1, 9-21. Full Text: Link
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8 |
Peptide-Nanowire Hybrid Materials for Selective Sensing of Small Molecules.
M. C. McAlpine, H. D. Agnew, R. D. Rohde, M. Blanco, H. Ahmad, A. D. Stuparu, W. A. Goddard III, J. R. Heath, J. Am. Chem. Soc. 2008, 130, 9583-9589.
Full Text: Link
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7 |
Si/a-Si Core/Shell Nanowires as Nonvolatile Crossbar Switches.
Y. Dong, G. Yu, M. C. McAlpine, W. Lu, C. M. Lieber, Nano Lett. 2008, 8, 386-391.
Full Text: Link
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6 |
Highly ordered nanowire arrays on plastic substrates for ultrasensitive flexible chemical sensors.
M. C. McAlpine, H. Ahmad, D. Wang, J. R. Heath, Nature Mater. 2007, 6, 379-384.
Full Text: Link
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High-Performance Nanowire Electronics and Photonics and Nanoscale Patterning on Flexible Plastic Substrates.
M. C. McAlpine, R. S. Friedman, C. M. Lieber, Proc. IEEE 2005, 7, 1357-1363.
Full Text: Link
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Nanotechnology: High-Speed Integrated Nanowire Circuits.
R. S. Friedman, M. C. McAlpine, D. S. Ricketts, D. Ham, C. M. Lieber, Nature 2005, 434, 1085.
Full Text: Link
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3 |
Scalable Interconnection and Integration of Nanowire Devices without Registration.
S. Jin, D. Whang, M. C. McAlpine, R. S. Friedman, Y. Wu, C. M. Lieber, Nano Lett. 2004, 4, 915-919.
Full Text: Link
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2 |
High-Performance Nanowire Electronics and Photonics on Glass and Plastic Substrates.
M. C. McAlpine, R. S. Friedman, S. Jin, K.-h. Lin, W. U. Wang, C. M. Lieber, Nano Lett. 2003, 3, 1531-1535.
Full Text: Link
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Nanoimprint Lithography for Hybrid Plastic Electronics.
M. C. McAlpine, R. S. Friedman, C. M. Lieber, Nano Lett. 2003, 3, 443-445.
Full Text: Link
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