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首页> 外文期刊>Journal of Computational Electronics >In silico design of organic p-n junction diodes using quantum chemical calculations
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In silico design of organic p-n junction diodes using quantum chemical calculations

机译:使用量子化学计算进行有机p-n结二极管的计算机设计

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摘要

To design suitable organic p-n junction diodes, modeling and simulation were performed for three donor-bridge-acceptor moieties using density functional theory. Three electron donor species namely TTF, DPh-BTBT and BEDT-TTF were connected to the electron acceptor TCNQ moiety through an insulating sigma bridge. The low HOMO-LUMO energy gap for these modeled species indicates that there is a good semiconducting route for electron transport between donor and acceptor moieties via an insulating bridge. The electric field was applied from donor to acceptor and from acceptor to donor moieties to further investigate the possible direction of charge transport. It has been observed that the HOMO-LUMO gap shrinks when the electric field direction is from donor to acceptor species and increases when the electric field direction is from acceptor to donor moieties.
机译:为了设计合适的有机p-n结二极管,使用密度泛函理论对三个施主-桥-受体部分进行了建模和仿真。三种电子供体物质,即TTF,DPh-BTBT和BEDT-TTF通过绝缘的sigma桥连接到电子受体TCNQ部分。这些建模物种的HOMO-LUMO能隙低,表明在电子和电子之间通过绝缘桥在电子传输方面存在良好的半导体路径。从施主到受主以及从受主到施主部分施加了电场,以进一步研究电荷传输的可能方向。已经观察到,当电场方向是从供体到受主物种时,HOMO-LUMO间隙减小,而当电场方向是从受主到供体部分时,HOMO-LUMO间隙增大。

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