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Gating of a three-leg molecule

机译:三足分子的门控

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摘要

We study the use of a simple three-leg molecule, triphenylene, as a transistor. This configuration allows increased voltage gain to be achieved. We analyze control of the transport between electrodes attached to two of the legs by a gate closely coupled electrostatically to the third leg, using self-consistent density functional calculations. In spite of the close coupling, the maximum voltage gain was less than unity, and this was attributed to efficient screening of the internal potential due to polarization of the molecular states. The transistor current vs. voltage characteristics were able to be reproduced using a simple electrostatic model.
机译:我们研究了使用简单的三足分子三苯撑作为晶体管。这种配置允许实现增加的电压增益。我们使用自洽的密度泛函计算,分析了通过静电紧密耦合到第三条腿的闸门,连接到两条腿的电极之间的传输控制。尽管存在紧密耦合,但最大电压增益仍小于1,这归因于由于分子态极化而有效筛选内部电势。可以使用简单的静电模型来再现晶体管电流与电压的关系。

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