Improving efficiency and water–oxygen barrier of perovskite solar cells through phenylalanine additives
Abstract
Perovskite solar cells (PSCs) show strong potential in the photovoltaic field, but their limited material stability hinders industrial-scale application. Major challenges include degradation of the perovskite structure caused by water and oxygen, as well as uncontrolled crystallization that leads to defects and non-radiative recombination, reducing the device's power conversion efficiency (PCE). This work introduces phenylalanine (PHE) into the precursor solution. The large-sized benzene ring of PHE enhances the film's resistance to water and oxygen. In addition, the water–oxygen adsorption energy of perovskite materials is calculated based on density functional theory simulation, and the steric effects of PHE is quantified. Meanwhile, the Lewis basicity of PHE promotes directional crystallization and defect passivation of the perovskite layer. The optimized PSCs achieve a PCE of 21.49%. The T90 lifetime reaches 1008 h at room temperature and humidity (25 °C, 40% RH), and exceeds 1150 h in a desiccator (25 °C, 10% RH).
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (6)
Ning Jiang
Sorbonne Université, CNRS , , ,
Hao Liu
Ce Dong
College of Physics, Changchun University of Science and Technology 2 , Changchun, Jilin Province 130013,
Jian Zhang
Chuannan Li
State Key Laboratory of Integrated Optoelectronics, JLU Region, College of Electronic Science and Engineering, Jilin University 1 , Changchun 130012,
Yu Duan