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以三苯胺为核心的星形分子作为敏化剂在染料敏化太阳能电池中的潜在应用的理论方法。

A theoretical approach of star-shaped molecules with triphenylamine core as sensitizer for their potential application in dye sensitized solar cells.

作者信息

Lv Xiaoli, Liang Dadong, Tang Shanshan, Jin Ruifa

机构信息

College of Resource and Environmental Science, Jilin Agricultural University, Changchun, 130118, China.

College of Resource and Environmental Science, Jilin Agricultural University, Changchun, 130118, China.

出版信息

J Mol Graph Model. 2020 Dec;101:107704. doi: 10.1016/j.jmgm.2020.107704. Epub 2020 Aug 16.

Abstract

This work is supplying an in-depth investigation of the optical, electronic, and charge transfer properties for heteroatom effects on the starburst triphenylamine derivative, molecule WD8-c-1, which has been studied in our previous work. The geometry and relevant electronic properties of WD8-c-1 and its derivatives in ground state for photovoltaic applications were simulated by the B3LYP/6-31G (d,p) method. Their absorption spectra have been calculated at the TD-PBE0/6-31 + G (d,p) level. The results indicate that the oxygen and sulfur atom substituents affect the distributions of frontier molecular orbitals and energy gap of WD8-c-1 significantly. Moreover, the electron could transfer from excited sensitizer into the conduction band (CB) of TiO. The heteroatom substituent affect the absorption spectra of WD8-c-1 significantly. The hole transfer rates of WD8-c-1 and its derivatives are higher than that of N,N'-diphenyl-N,N'-bis(3-methlphenyl)-(1,1'-biphenyl)-4,4'-diamine (TPD) and WD8-c-1-S owns the smallest hole reorganization energy (λ) value among the investigated molecules. The introducing of heteroatom affect the short-circuit current density and open-circuit photovoltage properties of WD8-c-1 and its derivatives significantly.

摘要

本工作对杂原子对星型三联苯衍生物WD8-c-1的光学、电子和电荷转移性质进行了深入研究,该分子已在我们之前的工作中有所研究。采用B3LYP/6-31G(d,p)方法模拟了WD8-c-1及其衍生物在基态下用于光伏应用的几何结构和相关电子性质。在TD-PBE0/6-31+G(d,p)水平上计算了它们的吸收光谱。结果表明,氧原子和硫原子取代基显著影响WD8-c-1的前线分子轨道分布和能隙。此外,电子可从激发敏化剂转移到TiO的导带(CB)中。杂原子取代基对WD8-c-1的吸收光谱有显著影响。WD8-c-1及其衍生物的空穴转移速率高于N,N'-二苯基-N,N'-双(3-甲基苯基)-(1,1'-联苯)-4,4'-二胺(TPD),且在研究的分子中WD8-c-1-S的空穴重组能(λ)值最小。杂原子的引入显著影响WD8-c-1及其衍生物的短路电流密度和开路光电压性质。

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