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Carbon nanotube shuttle memory device based on singlewall-to-doublewall carbon nanotube transition

机译:基于单壁至双壁碳纳米管过渡的碳纳米管穿梭存储器件

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This paper shows the schematics, the energetics, and the operations of nonvolatile-nanomemory-element based on carbon nanopeapods using classical molecular dynamics simulations. The system proposed was composed of one-side-capped (10, 10) and a (5, 5) carbon nanotubes. The open ends of two (10, 10) carbon nanotubes were face to face with the separation of 14 angstrom distance. The inner C-180 so carbon nanotube, which was formed by the coalescence of three C-60 molecules, shuttled between two (10, 10) carbon nanotubes under the alternatively applied force fields. Since the inner carbon nanotube can hardly escape from the outer carbon nanotubes without external force fields, the proposed system can operate a nonvolatile memory device. To switch the carbon nanotube shuttle system, the external electric fields to overcome the restoring force as well as the cap-capturing force should be applied. Classical molecular dynamics simulations showed that the carbon nanotube shuttle memory element could be operated by an adequate external force field. (c) 2004 Elsevier B.V. All rights reserved.
机译:本文使用经典的分子动力学模拟显示了基于碳纳米豆脚的非易失性纳米内存元素的示意图,能量学和操作。提出的系统由一侧封端的(10,10)和a(5,5)碳纳米管组成。两个(10,10)碳纳米管的开口端面对面,间距为14埃。通过三个C-60分子的聚结形成的内部C-180 so碳纳米管在交替施加的力场下穿梭在两个(10,10)碳纳米管之间。由于内部碳纳米管在没有外力场的情况下几乎不可能从外部碳纳米管逸出,因此所提出的系统可以操作非易失性存储器件。要切换碳纳米管穿梭系统,应施加克服恢复力以及盖帽捕获力的外部电场。经典的分子动力学模拟表明,碳纳米管穿梭记忆元件可以通过适当的外力场进行操作。 (c)2004 Elsevier B.V.保留所有权利。

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