Li Zhen, Yu Libo, Wang Hao, Yang Huiwen, Ma Huan
College of Chemistry and Chemical Engineering, Hexi University, Zhangye City 734000, China.
Key Laboratory of Hexi Corridor Resources Utilization of Gansu, Hexi University, Zhangye City 734000, China.
Nanomaterials (Basel). 2020 Mar 28;10(4):631. doi: 10.3390/nano10040631.
Light harvesting and electron recombination are essential factors that influence photovoltaic performance of quantum dots sensitized solar cells (QDSSCs). ZnO hollow microspheres (HMS) as architectures in QDSSCs are beneficial in improving light scattering, facilitating the enhancement of light harvesting efficiency. However, this advantage is greatly weakened by defects located at the surface of ZnO HMS. Therefore, we prepared a composite hollow microsphere structure consisting of ZnO HMS coated by TiO layer that is obtained by immersing ZnO HMS architectures in TiCl aqueous solution. This TiO-passivated ZnO HMS architecture is designed to yield good light harvesting, reduced charge recombination, and longer electron lifetime. As a result, the power conversion efficiency (PCE) of QDSSC reaches to 3.16% with an optimal thickness of TiO passivation layer, which is much higher when compared to 1.54% for QDSSC based on bare ZnO HMS.
光捕获和电子复合是影响量子点敏化太阳能电池(QDSSCs)光伏性能的重要因素。ZnO空心微球(HMS)作为QDSSCs中的结构,有利于改善光散射,促进光捕获效率的提高。然而,位于ZnO HMS表面的缺陷极大地削弱了这一优势。因此,我们制备了一种复合空心微球结构,该结构由TiO层包覆的ZnO HMS组成,TiO层是通过将ZnO HMS结构浸入TiCl水溶液中获得的。这种TiO钝化的ZnO HMS结构旨在实现良好的光捕获、减少电荷复合以及延长电子寿命。结果,QDSSC的功率转换效率(PCE)在TiO钝化层的最佳厚度下达到3.16%,与基于裸ZnO HMS的QDSSC的1.54%相比要高得多。