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五种类似 PCBM 的 C60 衍生物的光物理和电子性质:光谱和量子化学观点。

Photophysical and electronic properties of five PCBM-like C60 derivatives: spectral and quantum chemical view.

机构信息

State Key Laboratory of Molecular Reaction Dynamics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.

出版信息

J Phys Chem A. 2012 Jan 12;116(1):255-62. doi: 10.1021/jp208520v. Epub 2011 Dec 14.

Abstract

By means of transient UV-visible absorption spectra/fluorescence spectra, combined with electronic structure calculations, the present work focuses on characterizing the photophysical and electronic properties of five PCBM-like C(60) derivatives (F1, F2, F3, F4, and F5) and understanding how these properties are expected to affect the photovoltaic performance of polymer solar cells (PSCs) with those molecules as acceptors. Spectral data reveal that the fluorescence quantum yields (Φ(F)) are enhanced and the triplet quantum yields (Φ(T)) are lowered for the five PCBM-like C(60) derivatives as compared to those of the pristine C(60), suggesting that functionalization of a C═C double bond perturbs the fullerene's π-system and breaks the I(h) symmetry of pristine C(60), which results in modifications of photophysical properties of the fullerene derivatives. PBEPBE/6-311G(d,p)//PBEPBE/6-31G(d) level of electronic structure calculations yields the HOMO-LUMO gaps and LUMO energies, showing that the electron-withdrawing effect induced by the side chain functional groups perturbs LUMO energies, from which different open circuit voltages V(oc) are resulted. The predicted V(oc) from our calculation agrees with previous experiment results. Basically, we found that functionalization of a C═C double bond sustains the fullerene structure and its electron affinitive properties. Adducted side chains contribute to adjust the HOMO-LUMO gap and LUMO levels of the acceptors to improve open circuit voltage. The results could provide fundamental insights for understanding how structural modifications influence the photovoltaic performance, which paves a way for guiding the synthesis of new fullerene derivatives with improved performance in polymer solar cells.

摘要

本工作通过瞬态紫外可见吸收光谱/荧光光谱,结合电子结构计算,重点研究了五种类似 PCBM 的 C(60)衍生物(F1、F2、F3、F4 和 F5)的光物理和电子性质,并理解这些性质如何影响以这些分子作为受体的聚合物太阳能电池(PSC)的光伏性能。光谱数据表明,与原始 C(60)相比,五种类似 PCBM 的 C(60)衍生物的荧光量子产率(Φ(F))增强,三重态量子产率(Φ(T))降低,表明 C═C 双键的官能化会干扰富勒烯的π体系并破坏原始 C(60)的 I(h)对称性,从而导致富勒烯衍生物的光物理性质发生变化。PBEPBE/6-311G(d,p)//PBEPBE/6-31G(d)水平的电子结构计算得到 HOMO-LUMO 能隙和 LUMO 能,表明侧链官能团的吸电子效应会干扰 LUMO 能,从而导致不同的开路电压 V(oc)。我们的计算预测的 V(oc)与之前的实验结果一致。基本上,我们发现 C═C 双键的官能化维持了富勒烯的结构及其电子亲和性质。附加的侧链有助于调节受体的 HOMO-LUMO 能隙和 LUMO 能级,以提高开路电压。结果可为理解结构修饰如何影响光伏性能提供基本的见解,为指导具有改善聚合物太阳能电池性能的新型富勒烯衍生物的合成铺平了道路。

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