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首页> 外文期刊>Journal of Electronic Materials >Orientation-Dependent Performance Analysis of Benzene/Graphene-Based Single-Electron Transistors
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Orientation-Dependent Performance Analysis of Benzene/Graphene-Based Single-Electron Transistors

机译:苯/石墨烯单电子晶体管的取向相关性能分析

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摘要

The present paper discusses charge stability and conductance analyses of benzene- and zigzag graphene fragment-based single-electron transistors (SETs) operating in the Coulomb blockade regime. Graphene and benzene are modeled using density functional theory-based ab initio analyses, treating the interaction between graphene/benzene and the SET environment self-consistently. The devices consist of an oriented graphene/benzene island coupled with source and drain electrodes. The charging energy as a function of the external gate potential has been analyzed to verify the dependence of the charge stability and conductance of the oriented SETs on the source/drain bias and gate potential. Comparative analysis of these models shows that the SET with vertically oriented graphene is more stable and has better conductance in comparison with the benzene-based SET.
机译:本文讨论了在库仑封锁机制下运行的苯和Z字形石墨烯片段基单电子晶体管(SET)的电荷稳定性和电导分析。石墨烯和苯使用基于密度泛函理论的从头计算进行建模,可自洽地处理石墨烯/苯与SET环境之间的相互作用。该设备由定向石墨烯/苯岛与源极和漏极耦合而成。已经分析了作为外部栅极电势的函数的充电能量,以验证电荷稳定性和定向SET的电导率对源极/漏极偏置和栅极电势的依赖性。对这些模型的比较分析表明,与苯基SET相比,垂直取向石墨烯的SET更稳定且电导率更高。

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