Zhao Caibin, Zhang Zhenjia, Ran Xuzhou, Zhang Tianlei, Yu Xiaohu, Jin Lingxia
Shaanxi Key Laboratory of Catalysis, School of Chemical and Environmental Science, Shaanxi University of Technology, Hanzhong, Shaanxi 723001, PR China.
Shaanxi Key Laboratory of Catalysis, School of Chemical and Environmental Science, Shaanxi University of Technology, Hanzhong, Shaanxi 723001, PR China.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 Apr 5;310:123880. doi: 10.1016/j.saa.2024.123880. Epub 2024 Jan 18.
In this work, a series of ZL003-based free-metal sensitizers with the donor-acceptor-π- conjugated spacer-acceptor (D-A-π-A) structure were designed by modifying auxiliary electron acceptors for the potential application in dye-sensitized solar cells. The energy levels of frontier molecular orbitals, absorption spectra, electronic transition, and photovoltaic parameters for all studied dyes were systematically evaluated using density functional theory (DFT)/time-dependent DFT calculations. Results illustrated that thienopyrazine (TPZ), selenadiazolopyridine (SDP), and thiadiazolopyridine (TDP) are excellent electron acceptors, and dye sensitizers functionalized by these acceptors have smaller HOMO-LUMO gaps, obviously red-shifted absorption bands and stronger light harvesting. The present study revealed that the photoelectric conversion efficiency (PCE) of ZL003 is around 13.42 % with a J of 20.21 mA·cm, V of 966 mV and FF of 0.688 under the AM 1.5G sun exposure, in good agreement with its experimental value (PCE = 13.6 ± 0.2 %, J = 20.73 ± 0.20 mA·cm, V = 956 ± 5 mV, and FF = 0.685 ± 0.005.). With the same procedure, the PCE values for M4, M6, and M7 were estimated to be as high as 19.93 %, 15.38 %, and 15.80 % respectively. Hence, these three dyes are expected to be highly efficient organic sensitizers applied in practical DSSCs.
在本工作中,通过修饰辅助电子受体设计了一系列具有给体-受体-π-共轭间隔基-受体(D-A-π-A)结构的基于ZL003的游离金属敏化剂,用于染料敏化太阳能电池的潜在应用。使用密度泛函理论(DFT)/含时DFT计算系统地评估了所有研究染料的前沿分子轨道能级、吸收光谱、电子跃迁和光伏参数。结果表明,噻吩并吡嗪(TPZ)、硒二唑并吡啶(SDP)和噻二唑并吡啶(TDP)是优异的电子受体,由这些受体功能化的染料敏化剂具有较小的HOMO-LUMO能隙、明显红移的吸收带和更强的光捕获能力。本研究表明,在AM 1.5G太阳光照下,ZL003的光电转换效率(PCE)约为13.42%,J为20.21 mA·cm,V为966 mV,填充因子(FF)为0.688,与其实验值(PCE = 13.6 ± 0.2%,J = 20.73 ± 0.20 mA·cm,V = 956 ± 5 mV,FF = 0.685 ± 0.005)良好吻合。按照相同程序,M4、M6和M7的PCE值估计分别高达19.93%、15.38%和15.80%。因此,这三种染料有望成为应用于实际染料敏化太阳能电池的高效有机敏化剂。