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基于稠合茚并二噻吩的A-D-A共轭体系的有趣光伏行为探索:一项密度泛函理论模型研究。

Exploration of the Intriguing Photovoltaic Behavior for Fused Indacenodithiophene-Based A-D-A Conjugated Systems: A DFT Model Study.

作者信息

Arshad Muhammad Nadeem, Shafiq Iqra, Khalid Muhammad, Asiri Abdullah M

机构信息

Chemistry Department, Faculty of Science, King Abdulaziz University, Jeddah 21589, P.O. Box 80203, Saudi Arabia.

Center of Excellence for Advanced Material Research (CEAMR), King Abdulaziz University, Jeddah 21589, P.O. Box 80203, Saudi Arabia.

出版信息

ACS Omega. 2022 Mar 29;7(14):11606-11617. doi: 10.1021/acsomega.1c06219. eCollection 2022 Apr 12.

Abstract

Many researchers are engaged nowadays in developing efficient photovoltaic materials to accomplish the demand of modern technology. Nonfullerene small molecular acceptors (NF-SMAs) show potential photovoltaic performance, accelerating the development of organic solar cells (OSCs). Herein, the first theoretical designing of a series of indacenodithiophene-based (-) acceptor chromophores was done by structural tailoring with various well-known acceptors from the recently synthesized molecule. For the selection of the best level of density functional theory (DFT), various functionals such as B3LYP, M06-2X, CAM-B3LYP, and ωB97XD with the 6-311G(d,p) basis set were used for the UV-visible analysis of . Consequently, UV-visible results revealed that an interesting agreement was found between experimental and DFT-based values at the B3LYP level. Therefore, quantum chemical investigations were executed at the B3LYP/6-311G(d,p) level to evaluate the photovoltaic and optoelectronic properties. Structural tailoring with various acceptors resulted in a narrowing of the energy gap (2.245-2.070 eV) with broader absorption spectra (750.919-660.544 nm). An effective transfer of charge toward lowest unoccupied molecular orbitals (LUMOs) from highest occupied molecular orbitals (HOMOs) was studied, which played a crucial role in conducting materials. Further, open circuit voltage ( ) analysis was performed with respect to HOMO -LUMO, and all of the derivatives exhibited a comparable value of voltage with that of the parent chromophore. Lower reorganization energies in titled chromophores for holes and electrons were examined, which indicated the higher rate of mobility of charges. Interestingly, all of the designed chromophores exhibited a preferable optoelectronic response compared to the reference molecule. Therefore, this computed framework demonstrates that conceptualized chromophores are preferable and might be used to build high-performance organic solar cells in the future.

摘要

如今,许多研究人员致力于开发高效的光伏材料,以满足现代技术的需求。非富勒烯小分子受体(NF-SMAs)展现出潜在的光伏性能,推动了有机太阳能电池(OSCs)的发展。在此,通过对最近合成分子中各种知名受体进行结构剪裁,首次对一系列基于茚并二噻吩的(-)受体发色团进行了理论设计。为了选择最佳的密度泛函理论(DFT)水平,使用了各种泛函,如B3LYP、M06-2X、CAM-B3LYP和ωB97XD,并结合6-311G(d,p)基组对其进行紫外-可见分析。结果表明,紫外-可见光谱结果显示在B3LYP水平下,实验值与基于DFT的值之间存在有趣的一致性。因此,在B3LYP/6-311G(d,p)水平上进行了量子化学研究,以评估光伏和光电性能。用各种受体进行结构剪裁导致能隙变窄(2.245 - 2.070 eV),吸收光谱变宽(750.919 - 660.544 nm)。研究了电荷从最高占据分子轨道(HOMOs)向最低未占据分子轨道(LUMOs)的有效转移,这在导电材料中起着关键作用。此外,针对HOMO - LUMO进行了开路电压( )分析,所有衍生物的电压值与母体发色团相当。研究了标题发色团中较低的空穴和电子重组能,这表明电荷迁移率较高。有趣的是,与参考分子相比,所有设计的发色团都表现出较好的光电响应。因此,这个计算框架表明,概念化的发色团是优选的,未来可能用于构建高性能的有机太阳能电池。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2588/9017102/0ab0b2d767c5/ao1c06219_0002.jpg

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