Passivation of Sodium Benzenesulfonate at the Buried Interface of a High-Performance Wide-Bandgap Perovskite Solar Cell
Sijia La(North China Electric Power University), Molang Cai(North China Electric Power University), Yaqi Mo(North China Electric Power University), Shuyi Liu(North China Electric Power University), Xiaoxia Cui(Chinese Academy of Sciences), Zhuoxin Li(North China Electric Power University), Dongxu Ren(North China Electric Power University), Xing Li(Shaanxi Normal University), Miao Yang(North China Electric Power University), Zhao Zhang(North China Electric Power University), Xuzheng Feng(North China Electric Power University), Xianggang Chen(North China Electric Power University), Zhengbo Yuan(North China Electric Power University), Jieqiong Chen(North China Electric Power University)
Cited by 2
Related Papers
Multihydroxylated [Gd@C<sub>82</sub>(OH)<sub>22</sub>]<i><sub>n</sub></i> Nanoparticles: Antineoplastic Activity of High Efficiency and Low Toxicity
|Nano Letters|2005|299
Efficient Passivation of Hybrid Perovskite Solar Cells Using Organic Dyes with COOH Functional Group
|Advanced Energy Materials|2018|245
A natural in situ fabrication method of functional bacterial cellulose using a microorganism
|Nature Communications|2019|232
Particulate matter exposure induces persistent lung inflammation and endothelial dysfunction
|American Journal of Physiology-Lung Cellular and Molecular Physiology|2008|219
One-pot, water-phase approach to high-quality graphene/TiO2 composite nanosheets
|Chemical Communications|2010|193