Perovskite-based transparent pn junction in CuI/SrTiO3 toward enhanced photoelectric response <i>via</i> interfacial homogeneous perovskite LaCoO3 transition layer
Abstract
A transparent pn junction comprising CuI/LaCoO3 QDs/SrTiO3 was synthesized using the solgel-hydrothermal-freeze drying-sputtering in situ iodization method. The CuI/LaCoO3 QDs/SrTiO3 pn junction achieves transmittance of ∼85%, photoelectric enhancement of ∼2.2 × 103-fold to the intrinsic CuI/SrTiO3, and good stability in 5 months. It can be primarily attributed to the LaCoO3 QDs. In addition to appropriate Fermi level and high QY, the LaCoO3 QDs with carrier inducing–injecting–driving can ameliorate the carrier dynamics for PCE-transparency balance, meanwhile increasing the hole by Cu vacancy. Furthermore, the CuI, LaCoO3, and SrTiO3 can maintain good structural stability for potential photoelectric devices.
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (8)
Xinyan Lv
Zhejiang Key Laboratory of Quantum State Control and Optical Field Manipulation, Department of Physics, Zhejiang Sci-Tech University 1 , Hangzhou 310018,
Wei Yang
Zefeng Cai
Jun Cao
Lei Shi
School of Health Management Guangzhou Medical University Guangzhou China
Jiaqi Pan
Zhiguo Zhao
Chaorong Li
Zhejiang Key Laboratory of Quantum State Control and Optical Field Manipulation, Department of Physics, Zhejiang Sci-Tech University 1 , 310018 Hangzhou,