Trapping lead in perovskite solar modules with abundant and low-cost cation-exchange resins
@article{Chen2020TrappingLI, title={Trapping lead in perovskite solar modules with abundant and low-cost cation-exchange resins}, author={Shangshang Chen and Yehao Deng and Hangyu Gu and Shuang Xu and Shen Wang and Zhenhua Yu and Volker Blum and Jinsong Huang}, journal={Nature Energy}, year={2020}, volume={5}, pages={1003-1011} }
48 Citations
Fabrication Strategy to Promote Performance of Perovskite Solar Cells
- Materials ScienceJournal of Physics: Conference Series
- 2021
Improvements in process of perovskites, materials of auxiliary layers and encapsulation have significantly enhanced the performance of perovskite solar cells (PSCs). However, unified fabrication of…
A holistic sunscreen interface strategy to effectively improve the performance of perovskite solar cells and prevent lead leakage
- Chemical Engineering Journal
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An effective and economical encapsulation method for trapping lead leakage in rigid and flexible perovskite photovoltaics
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Construction of metal-organic framework/polymer beads for efficient lead ions removal from water: Experiment studies and full-scale performance prediction
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Coupling effect of boundary tribofilm and hydrodynamic film
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Degradation and Self-Healing in Perovskite Solar Cells.
- Materials ScienceACS applied materials & interfaces
- 2022
Organic-inorganic halide perovskites are well-known for their unique self-healing ability. In the presence of strong external stimuli, such as light, temperature, and moisture, high-energy defects…
Dithiol surface treatment towards improved charge transfer dynamic and reduced lead leakage in lead halide perovskite solar cells
- EngineeringEcoMat
- 2022
Encapsulation of commercial and emerging solar cells with focus on perovskite solar cells
- ChemistrySolar Energy
- 2022
Environmental‐Friendly Polymer for Efficient and Stable Inverted Perovskite Solar Cells with Mitigating Lead Leakage
- Advanced Functional Materials
- 2022
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