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Electronic transport properties of the azobenzene-based optical molecular switch with different substituents

机译:基于偶氮苯基光学分子开关的不同取代基的电子传输性能

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By applying nonequilibrium Green's function formalism combined first-principles density functional theory, we investigate the electronic transport properties of the azobenzene -based optical molecular switch with different substituents. Theoretical results show that the donor/acceptor substituent plays an important role in the electronic transport of molecular devices. The switching performance can be improved to some extent through suitable donor and acceptor substituents.
机译:通过施加非Quilibium的功能形式主义组合的第一原理密度功能理论,我们研究了与不同的取代基的偶氮苯基的光学分子开关的电子传输性能。理论结果表明,供体/受体取代基在分子装置的电子传输中起重要作用。通过合适的供体和受体取代基可以在一定程度上提高开关性能。

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