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Tuning the conductance of carbon nanotubes with encapsulated molecules

机译:用包封的分子调节碳纳米管的电导

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摘要

It was recently shown that a molecule encapsulated inside a carbon nanotube can be used to devise a novel type of non-volatile memory element. At the heart of the mechanism for storing and reading information is the new concept of a molecular gate where the molecule acts as a passive gate that hinders the flow of electrons for a given position relative to the nanotube host. By systematically exploring the effects of encapsulation of an acceptor molecule in a series of carbon nanotubes, we show that the reliability of the memory mechanism is very sensitive to the interaction between the nanotube host and the molecule guest.
机译:最近显示,封装在碳纳米管内部的分子可用于设计新型的非易失性存储元件。存储和读取信息的机制的核心是分子门的新概念,其中分子充当被动门,该门相对于纳米管主体的给定位置阻碍了电子的流动。通过系统地探索一系列碳纳米管中受体分子的封装效应,我们表明记忆机制的可靠性对纳米管主体与分子客体之间的相互作用非常敏感。

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