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Modulating the Electronic, Optical, and Transport Properties of CdTe and ZnTe Nanostructures with Organic Molecules: A Theoretical Investigation

机译:用有机分子调节CDTE和ZnTe纳米结构的电子,光学和传输性能:理论研究

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In this paper, we systematically investigated the electronic, optical, and transport properties of CdTe and ZnTe nanostructures before and after adsorption with benzyl viologen (BV) and tetrafluoro-tetracyanoquinodimethane (F4-TCNQ) organic molecules based on the first principles calculation. First, the band gaps of CdTe and ZnTe nanostructures obviously decrease after BV and F4-TCNQ adsorptions. Interestingly, the electronic property calculation shows that BV and F4-TCNQ can donate/accept electrons to/from the surface of CdTe and ZnTe nanostructures, leading to an effective n-/p-type doping, respectively. Second, the optical absorption in a broad spectral range (from visible to near-infrared) of CdTe and ZnTe is significantly improved by adsorption of BV and F4-TCNQ molecules, offering great opportunities for the use of CdTe and ZnTe nanostructures in renewable energy fields. Lastly, the electrical transfer characteristics on CdTe and ZnTe nanostructure-based field-effect transistors clearly showed that the conduction of the nanostructures can be rationally tuned into n- and p-type conductivity with BV and F4-TCNQ adsorptions, respectively. Our work clearly demonstrates that the electronic, optical, and transport properties of CdTe and ZnTe nanostructures are effectively modulated by adsorption of BV and F4-TCNQ, which can be used to construct high-performance electronic and optoelectronic devices.
机译:在本文中,我们在用苄基Violologen(BV)和四氟 - 四环喹啉二甲烷(F4-TCNQ)有机分子的吸附前后,系统地研究了CDTE和Znte纳米结构的电子,光学和传输性能,并基于第一个原理计算。首先,在BV和F4-TCNQ吸附后,CdTe和ZnTe纳米结构的带间隙明显降低。有趣的是,电子性质计算表明,BV和F4-TCNQ可以分别捐赠/接受CDTE和ZnTe纳米结构的表面,导致有效的N- / p型掺杂。其次,通过吸附BV和F4-TCNQ分子,显着提高了CDTE和ZnTe的宽光谱范围(来自近红外线)的光学吸收,为可再生能源领域中使用CDTE和ZnTe纳米结构提供了很大的机会。最后,CdTe和ZnTe纳米结构的场效应晶体管上的电传递特性清楚地表明,纳米结构的导通可以分别具有与BV和F4-TCNQ吸附的N-和p型导电性。我们的工作清楚地表明CDTE和ZnTe纳米结构的电子,光学和传输性能通过BV和F4-TCNQ吸附而有效地调节,可用于构造高性能电子和光电器件。

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