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通过定制具有扩展共轭的π-连接体对SJ-IC分子的影响,以实现高且改善的电荷迁移率,从而增强光伏应用。

Effect of tailoring π-linkers with extended conjugation on the SJ-IC molecule for achieving high and improved charge mobility towards enhanced photovoltaic applications.

作者信息

Zubair Hira, Mahmood Rana Farhat, Waqas Muhammad, Ishtiaq Mariam, Iqbal Javed, Ibrahim Mahmoud A A, Sayed Shaban R M, Noor Sadia, Khera Rasheed Ahmad

机构信息

Department of Chemistry, University of Agriculture Faisalabad 38000 Pakistan

Department of Chemistry, Division of Science and Technology, University of Education Township Lahore 54770 Pakistan.

出版信息

RSC Adv. 2023 Sep 1;13(37):26050-26068. doi: 10.1039/d3ra03317a. eCollection 2023 Aug 29.

Abstract

The problem of low efficiency of organic solar cells can be solved by improving the charge mobility and open circuit voltage of these cells. The current research aims to present the role of π-linkers, having extended conjugation, between the donor and acceptor moieties of indacenodithiophene core-based A-π-D-π-A type SJ-IC molecule to improve the photovoltaic performance of pre-existing SJ-IC. Several crucial photovoltaic parameters of SJ-IC and seven newly proposed molecules were studied using density functional theory. Surprisingly, this theoretical framework manifested that the tailoring of SJ-IC by replacing its π-linker with linkers having extended π-conjugation gives a redshift in maximum absorption coefficient in the range of 731.69-1112.86 nm in a solvent. In addition, newly designed molecules exhibited significantly narrower bandgaps (ranging from 1.33 eV to 1.93 eV) than SJ-IC having a bandgap of 2.01 eV. Similarly, newly designed molecules show significantly less excitation energy in gaseous and solvent phases than SJ-IC. Furthermore, the reorganization energies of DL1-DL7 are much lower than that of SJ-IC, indicating high charge mobility in these molecules. DL6 and DL7 have shown considerably improved open circuit voltage (), reaching 1.49 eV and 1.48 eV, respectively. Thus, the modification strategy employed herein has been fruitful with productive effects, including better tuning of the energy levels, lower bandgaps, broader absorption, improved charge mobility, and increased . Based on these results, it can be suggested that these newly presented molecules can be considered for practical applications in the future.

摘要

有机太阳能电池效率低下的问题可以通过提高这些电池的电荷迁移率和开路电压来解决。当前的研究旨在展示具有扩展共轭的π-连接体在基于茚并二噻吩核心的A-π-D-π-A型SJ-IC分子的供体和受体部分之间的作用,以改善现有SJ-IC的光伏性能。使用密度泛函理论研究了SJ-IC和七个新提出的分子的几个关键光伏参数。令人惊讶的是,该理论框架表明,通过用具有扩展π共轭的连接体取代SJ-IC的π-连接体来对其进行剪裁,在溶剂中最大吸收系数会出现红移,范围为731.69-1112.86 nm。此外,新设计的分子表现出比带隙为2.01 eV的SJ-IC明显更窄的带隙(范围为1.33 eV至1.93 eV)。同样,新设计的分子在气态和溶剂相中显示出比SJ-IC明显更低的激发能。此外,DL1-DL7的重组能远低于SJ-IC,表明这些分子中电荷迁移率高。DL6和DL7分别显示出显著提高的开路电压,达到1.49 eV和1.48 eV。因此,本文采用的修饰策略取得了丰硕成果,产生了包括更好地调节能级、更低的带隙、更宽的吸收、改善的电荷迁移率以及增加的[此处原文似乎缺失相关内容]等有益效果。基于这些结果,可以建议这些新提出的分子在未来可考虑用于实际应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35b7/10472344/59414aa4e881/d3ra03317a-f1.jpg

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