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[41]LX,Improved efficient perovskite solar cells based on Ta-doped TiO2 nanorod arrays.NANOSCALE,2017,9(47):18897-18907.
[42]LX,CSY,Effect of chromatic aberration on performance of concentrated multi-junction solar cells and their optimization.ACTA PHYSICA SINICA,2017,66(14):
[43]LX.Microfluidic Chips for Effective Desalination of Seawater Based on Ionic Concentration Polarization.CHINESE JOURNAL OF ANALYTICAL CHEMISTRY,2015,44(12):1808-1813.
[44]LX,Efficient Perovskite Solar Cells Depending on TiO2Nanorod Arrays.ACS Applied Materials and Interfaces,2016,8(33):21358-21365.
[45]LX,CSY,Optimization of the current matching the concentrated multi-junction solar cells under the outdoor spectrum.Taiyangneng Xuebao/Acta Energiae Solaris Sinica,2016,37(7):1737-1743.
[46]LX,Aluminum-Doped Zinc Oxide as Highly Stable Electron Collection Layer for Perovskite Solar Cells.ACS APPLIED MATERIALS & INTERFACES,2016,8(12):7826-7833.
[47]CSY,LX.Voltage sharing effect and interface state calculation of a wafer-bonding Ge/Si avalanche photodiode with an interfacial GeO2 insulator layer.OPTICS EXPRESS,2016,24(3):1943-1952.
[48]LX,A Novel TiO2 Nanostructured Film Based on One-dimensional/Two dimensional Nanoparticles for Flexible Dye-sensitized Solar Cells.RARE METAL MATERIALS AND ENGINEERING,2014,44353-357.
[49]CSY,LX.Interfacial nitrogen stabilizes carbon-coated mesoporous silicon particle anodes.Journal of Materials Chemistry A,4(2):434-442.
[50]CSY,LX.Ohmic contact formation of metal/amorphous-Ge/n-Ge junctions with an anomalous modulation of Schottky barrier height.Applied Physics Letters,2014,105(19):
total73 5/8
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