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Transport in nanoscale materials, including nanowires and nanotubes, is extremely sensitive to nanoscale structure, including defects, dopants, and impurities. While methods of resolving spatial structure, such as electron microscopy, are well developed, general methods of resolving nanoscale electronic structure are needed to understand the consequences of dimensionality for the properties of heterogeneous nanostructures. The Lauhon group combines scanning probes with electrical transport studies of nanowire and nanotube-based devices to correlate nanoscale structure with nanoscale properties, providing a fundamental foundation for the development of new materials technologies of relevance to electronics, photonics, and energy. We are currently investigating the effects of size, strain, and stoichiometry on the metal-insulator transition in vanadium oxide nanowires, and the influence of dopant inhomogeneities on the electronic properties of silicon and germanium nanowires.
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论文共 254 篇作者统计合作学者相似作者
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Huiming Guo, Christopher Mead, Marquez Balingit,Soham Shah,Xin Wang,Mingjie Xu,Ich Tran,Toshihiro Aoki, Jack D. Samaniego,Kandis Leslie Gilliard-AbdulAziz,Lincoln J. Lauhon,William J. Bowman
Matter (2024)
ADVANCED FUNCTIONAL MATERIALSno. 12 (2024)
crossref(2023)
Nano lettersno. 14 (2023): 6284-6291
Nanotechnologyno. 38 (2023): 385701-385701
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ACS APPLIED NANO MATERIALSno. 19 (2023): 17349-17356
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Michael J. Moody, Joshua T. Paul,Paul J. M. Smeets,Roberto dos Reis,Joon-Seok Kim, Christopher E. Mead,Jonathan Tyler Gish,Mark C. Hersam,Maria K. Y. Chan,Lincoln J. Lauhon
Huiming Guo, Christopher Mead, Marquez Balingit,Soham Shah,Xin Wang,Mingjie Xu,Ich Tran,Toshihiro Aoki, Jack D Samaniego, Kandis Leslie Abdul-Aziz,Lincoln J Lauhon,William J Bowman
Microscopy and microanalysis : the official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canadano. Supplement_1 (2023): 1833-1833
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