H
Huanping Zhou
Researcher at Peking University
Publications - 182
Citations - 29209
Huanping Zhou is an academic researcher from Peking University. The author has contributed to research in topics: Perovskite (structure) & Energy conversion efficiency. The author has an hindex of 58, co-authored 153 publications receiving 23350 citations. Previous affiliations of Huanping Zhou include Beijing Institute of Technology & University of California, Los Angeles.
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Defect suppression and passivation for perovskite solar cells: from the birth to the lifetime operation
TL;DR: In this paper, the authors analyzed the origins of defects in perovskite materials and systematically discussed the effective strategies to eliminate or suppress the various intrinsic defects at three pivotal stages, namely, precursors, film fabrication and device operation.
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Photon management for efficient hybrid perovskite solar cells via synergetic localized grating and enhanced fluorescence effect
TL;DR: In this article, the authors demonstrate the implementation of perovskite nanostructure assembly by simple solution process to interfere the propagation of light inside the adjacent absorber, achieving a decent power conversion efficiency (PCE) over 19%.
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Cation Diffusion Guides Hybrid Halide Perovskite Crystallization during the Gel Stage
Lang Liu,Yang Bai,Xiao Zhang,Yuequn Shang,Chenyue Wang,Hao Wang,Cheng Zhu,Chen Hu,Jiafeng Wu,Huanping Zhou,Yujing Li,Shihe Yang,Shihe Yang,Zhijun Ning,Qi Chen +14 more
TL;DR: This work systematically investigates the cation diffusion kinetics at the gel stage to develop a diffusion model obeying Fick's Second Law, and successfully fabricates a homogenous 2D perovskite thin film without significant phase segregation.
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Ultrasonic study on charge ordering, magnetic, and structural changes in La0.25Ca0.75Mn0.93Cr0.07O3
TL;DR: In this article, the longitudinal and transverse ultrasonic velocities and attenuations, the transport and magnetic properties, as well as the structural changes of polycrystalline La025Ca075Mn093Cr007O3 have been studied systematically.