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Chiral-structured heterointerfaces enable durable perovskite solar cells
Tianwei Duan
, Shuai You
, Min Chen
, Wenjian Yu
, Yanyan Li
, Peijun Guo
, Joseph J. Berry
, Joseph M. Luther
, Kai Zhu
*
, Yuanyuan Zhou
*
*
Corresponding author for this work
Department of Physics
Research output
:
Contribution to journal
›
Journal article
›
peer-review
166
Citations (Scopus)
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Keyphrases
Perovskite Solar Cells (PeSCs)
100%
Heterointerface
100%
Power Conversion Efficiency
33%
Stability of Perovskite Solar Cells
33%
Humidity
33%
Ammonium
33%
Charge Transfer
33%
Chirality
33%
Long-term Stability
33%
Heterochiral
33%
Close Packing
33%
Electron Transport Layer
33%
Benzene Ring
33%
Organic Cation
33%
Chemical Stability
33%
Perovskite Absorbers
33%
Thermal Cycling
33%
Damp Heat
33%
Chemical Degradation
33%
Damp Heat Test
33%
Mechanical Reliability
33%
Fatigue Degradation
33%
Material Degradation
33%
Heat Conditions
33%
Mechanical Failure
33%
Failure Degradation
33%
Thermal Cycling Test
33%
Engineering
Perovskite Solar Cells
100%
Durables
100%
Damp Heat
66%
Power Conversion Efficiency
33%
Fits and Tolerances
33%
Relative Humidity
33%
Term Stability
33%
Benzene Ring
33%
Materials Degradation
33%
Chemical Degradation
33%
Mechanical Failure
33%
Structural Reliability
33%
Material Science
Perovskite Solar Cell
100%
Thermal Cycling
66%
Electron Transfer
33%
Chirality
33%
Enantiomer
33%
Mechanical Failure
33%
Chemical Degradation
33%
Materials Degradation
33%