Krishnan S, Senthilkumar K
Department of Physics, Bharathiar University, Coimbatore - 641 046, India.
Phys Chem Chem Phys. 2021 Dec 15;23(48):27468-27476. doi: 10.1039/d1cp04402h.
In the present study, electronic structure calculations were used to provide strategies for designing poly(3-hexylthiophene) (P3HT)-fullerene-derivative-based donor-acceptor materials for use in high-efficiency bulk heterojunction organic solar cells (BHJ OSCs). The work systematically analyses the impact of electron-donating and -withdrawing substituents on the opto-electronic properties of the fullerene structures. Parameters relating to the absorption spectra, orbital distributions, and energy ordering of the frontier molecular orbitals (FMO), the interactions between P3HT and the fullerene derivatives, and charge transfer across the interface were investigated. We found that substitution with the electron-withdrawing group NO enhances the electronic coupling between the fullerene and P3HT; however, it reduces the open-circuit voltage () of the OSC through lowering the LUMO energy level. Furthermore, the results show that substitution with an electron-withdrawing group (NO) and electron-donating group (OCH) can improve the power conversion efficiency (PCE) of the OSC, since this slightly improves the photon absorption abilities and charge transfer coupling at the interface without overly compromising relative to PCBM. Our study shows that alkyl chain modification in the PCBM acceptor is a promising strategy for improving the performances of OSCs.
在本研究中,利用电子结构计算为设计用于高效体异质结有机太阳能电池(BHJ OSCs)的基于聚(3 - 己基噻吩)(P3HT)-富勒烯衍生物的供体 - 受体材料提供策略。该工作系统地分析了供电子和吸电子取代基对富勒烯结构的光电性质的影响。研究了与吸收光谱、轨道分布、前沿分子轨道(FMO)的能量排序、P3HT与富勒烯衍生物之间的相互作用以及界面电荷转移相关的参数。我们发现,用吸电子基团NO取代可增强富勒烯与P3HT之间的电子耦合;然而,它通过降低最低未占分子轨道(LUMO)能级来降低OSC的开路电压()。此外,结果表明,用吸电子基团(NO)和供电子基团(OCH)取代可以提高OSC的功率转换效率(PCE),因为这在不过度影响相对于PCBM的情况下,略微提高了光子吸收能力和界面电荷转移耦合。我们的研究表明,在PCBM受体中进行烷基链修饰是提高OSCs性能的一种有前景的策略。