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Design, Electron Transfer Process, and Opto-Electronic Property of Solar Cell Using Triphenylamine-Based D-π-A Architectures

机译:基于三苯胺的D-π-A架构的太阳能电池的设计,电子转移过程和光电性能

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摘要

A series of D-π-A type dyes were designed based on the experimentally synthesized A1 by introducing different functional groups on the donor and π-spacer, and the optical and electrical properties were calculated by using density functional theory (DFT) and time-dependent DFT (TD-DFT). P1–P6 present highest light harvesting efficiency (LHE), driving force of electron injection ( Δ G i n j e c t ), reorganization energy ( Δ G r e g ) and e V O C . These critical parameters have a close relationship with the short-circuit current density ( J S C ) and open-circuit photovoltage ( V O C ), and lead to P1–P6 will exhibit higher efficiency. D4 also exhibit superior properties in the driving force of electron injection ( Δ G i n j e c t ), reorganization energy ( Δ G r e g ), which will lead to a higher short-circuit current density ( J S C ). We hope that these results will be helpful for experiments to synthesize new and highly efficient dyes.
机译:通过在供体和π-间隔物上引入不同的官能团,通过使用密度泛函理论(DFT)和时间来基于实验合成的A1设计一系列D-π-A型染料。通过使用密度函数理论(DFT)和时间来计算光学和电性能 - 依赖DFT(TD-DFT)。 P1-P6目前最高的光收集效率(LHE),电子注射的驱动力(δgi n j e c t),重组能量(δgr e g)和ev o c。这些关键参数与短路电流密度(J S C)和开路光伏(V O C)具有紧密关系,并导致P1-P6将表现出更高的效率。 D4还在电子注入的驱动力(ΔGi n j e c t)中表现出优异的性能,重组能量(Δgr e g),这将导致更高的短路电流密度(J S C)。我们希望这些结果对实验有所帮助,以综合新的和高效染料。

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