Direct Synthesis of Multiplexed Metal-Nanowire-Based Devices by Using Carbon Nanotubes as Vector Templates.

Direct Synthesis of Multiplexed Metal-Nanowire-Based Devices by Using Carbon Nanotubes as Vector Templates.
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DOI:
10.1002/anie.201902857
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发表时间:
2019-06
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通讯作者:
P. Clément;Xinzhao Xu;C. Stoppiello;G. Rance;Antonio Attanzio;J. O'Shea;Robert H. Temperton;A. Khlobystov;K. Lovelock;Jake M Seymour;R. Fogarty;A. Baker;R. Bourne;Brendan L Hall;T. Chamberlain;M. Palma
P. Clément;Xinzhao Xu;C. Stoppiello;G. Rance;Antonio Attanzio;J. O'Shea;Robert H. Temperton;A. Khlobystov;K. Lovelock;Jake M Seymour;R. Fogarty;A. Baker;R. Bourne;Brendan L Hall;T. Chamberlain;M. Palma
中科院分区:
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文献类型:
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作者:
P. Clément;Xinzhao Xu;C. Stoppiello;G. Rance;Antonio Attanzio;J. O'Shea;Robert H. Temperton;A. Khlobystov;K. Lovelock;Jake M Seymour;R. Fogarty;A. Baker;R. Bourne;Brendan L Hall;T. Chamberlain;M. Palma

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We present the synthesis of metal nanowires in a multiplexed device configuration using single-walled carbon nanotubes (SWNTs) as nanoscale vector templates. The SWNT templates control the dimensionality of the wires, allowing precise control of their size, shape, and orientation; moreover, a solution-processable approach enables their linear deposition between specific electrode pairs in electronic devices. Electrical characterization demonstrated the successful fabrication of metal nanowire electronic devices, while multiscale characterization of the different fabrication steps revealed details of the structure and charge transfer between the material encapsulated and the carbon nanotube. Overall the strategy presented allows facile, low-cost, and direct synthesis of multiplexed metal nanowire devices for nanoelectronic applications.