Zehan Wu

Hong Kong Polytechnic University - Department of Applied Physics

SCHOLARLY PAPERS

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Scholarly Papers (1)

1.

Supramolecular Complex Engineering Enables Stable and High Performance α-FAPbI 3 Based Perovskite Solar Cells

Number of pages: 45 Posted: 05 Nov 2021
Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE), Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE), Hong Kong Polytechnic University - Department of Applied Physics, Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE), Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE), University of North Carolina (UNC) at Chapel Hill - Department of Applied Physical Science, The Chinese University of Hong Kong - Department of Physics, Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE), Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE), Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE), City University of Hong Kong - Center of Super-Diamond and Advanced Films (COSDAF), Hong Kong Polytechnic University - Department of Applied Physics, Hong Kong Polytechnic University - Laboratory for Advanced Interfacial Materials and Devices, Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE), Hong Kong Polytechnic University - Department of Applied Physics, Hong Kong Polytechnic University - Department of Applied Physics, City University of Hong Kong - Center of Super-Diamond and Advanced Films (COSDAF), Chinese University of Hong Kong - Department of Physics, Hong Kong Polytechnic University - Institute of Textiles and Clothing, University of North Carolina (UNC) at Chapel Hill - Department of Applied Physical Science and Hong Kong Polytechnic University - Research Institute for Smart Energy (RISE)
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Abstract:

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Excess PbI2 management, ionic liquid, supramolecule, strain engineering