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[21]LX,Artemisinin-passivated mixed-cation perovskite films for durable flexible perovskite solar cells with over 21% efficiency.JOURNAL OF MATERIALS CHEMISTRY A,2021,9(3):1574-1582.
[22]LX,NdCl3 Dose as a Universal Approach for High-Efficiency Perovskite Solar Cells Based on Low-Temperature-Processed SnOx.ACS APPLIED MATERIALS & INTERFACES,2020,12(41):46306-46316.
[23]LX,Quantifying Hole-Edge Crack of Bolt Joints by Using an Embedding Triangle Eddy Current Sensing Film.Sensors,2021,21(7):
[24]LX,Recent progress in meniscus coating for large-area perovskite solar cells and solar modules.Sustainable Energy and Fuels,2021,5(7):1926-1951.
[25]LX,Exfoliated Fluorographene Quantum Dots as Outstanding Passivants for Improved Flexible Perovskite Solar Cells.ACS Applied Materials and Interfaces,2020,12(20):22992-23001.
[26]LX,A novel 2D perovskite as surface "patches" for efficient flexible perovskite solar cells.Journal of Materials Chemistry A,2020,8(16):7808-7818.
[27]LX,Dual Role of Amino-Functionalized Graphene Quantum Dots in NiOx Films for Efficient Inverted Flexible Perovskite Solar Cells.ACS APPLIED MATERIALS & INTERFACES,2020,12(7):8342-8350.
[28]LX,Bending Durable and Recyclable Mesostructured Perovskite Solar Cells Based on Superaligned ZnO Nanorod Electrode.Solar RRL,2018,2(5):
[29]WMS,LX.Shaping and Edge Engineering of Few-Layered Freestanding Graphene Sheets in a Transmission Electron Microscope.Nano Letters,20(4):2279-2287.
[30]LX,Interfacial Engineering for High-Efficiency Nanorod Array-Structured Perovskite Solar Cells.ACS Applied Materials and Interfaces,11(37):33770-33780.
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