Krishnan S, Senthilkumar K
Department of Physics, Bharathiar University Coimbatore 641046 India +91-422-2422387
RSC Adv. 2021 Jan 29;11(10):5556-5567. doi: 10.1039/d0ra10613e. eCollection 2021 Jan 28.
The sensitizer is an active component of dye sensitized solar cell (DSSC) technology, which is highly influential for the performance of DSSCs. The present study attempts to investigate the relationship between the shape of the sensitizer molecule and efficiency of DSSCs. Specifically, 17 different structures were investigated, and classified into four categories based on the shape of the dye molecule, namely L-shaped (linear), V-shaped, X-shaped and Y-shaped, and into two different categories based on the donor moiety. The five of studied structures contained a triphenylamine (TPA) donor moiety, and twelve structures contained carbazole (CAR) donor moiety. Parameters related to the performance of DSSCs such as absorption spectra, intramolecular charge transfer indices, frontier molecular orbitals, light harvesting efficiency, excited-state lifetime, exciton binding energy, electrostatic potential, charge transfer and electron injection ability were studied using results obtained from electronic structure calculations. The analysis of these various parameters showed that the linear-shaped and V-shaped sensitizers possess better photon absorption ability, and the V-shaped structure is best suited shape for applications in high performance DSSCs.
敏化剂是染料敏化太阳能电池(DSSC)技术的活性成分,对DSSC的性能有很大影响。本研究旨在探讨敏化剂分子形状与DSSC效率之间的关系。具体而言,研究了17种不同结构,并根据染料分子的形状分为四类,即L形(线性)、V形、X形和Y形,同时根据供体部分分为两类。所研究的结构中有五种含有三苯胺(TPA)供体部分,十二种结构含有咔唑(CAR)供体部分。利用电子结构计算结果研究了与DSSC性能相关的参数,如吸收光谱、分子内电荷转移指数、前沿分子轨道、光捕获效率、激发态寿命、激子结合能、静电势、电荷转移和电子注入能力。对这些各种参数的分析表明,线性和V形敏化剂具有更好的光子吸收能力,V形结构是应用于高性能DSSC的最佳形状。