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- W3086500861 endingPage "138350" @default.
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- W3086500861 abstract "Abstract High visible light transparency and conductivity of ZnO enable the use of its material as transparent conducting films, in which point defects are vitally important for determining its optoelectronic properties. Herein, Indium doped ZnO thin films (ZnO:In) were prepared by radio-frequency magnetron sputtering technique. Thermal evolution of point defects and their effects on the microstructure and photoelectric properties of ZnO:In transparent conducting films were systematically investigated. The results show that thermal annealing induces the dissociation of extensive zinc interstitial clusters, causing their concentration gradually decreasing with increasing annealing temperature. Furthermore, when annealing at low temperature (≤ 500°C), the concentration of oxygen vacancy and zinc vacancy defects also decreases with increasing temperature. However, after annealing at higher temperature (600 and 700°C), additional vacancy defects are generated due to the evaporation of zinc and oxygen atoms from the film surface. It is demonstrated that the evolution of point defects caused by thermal annealing directly affects the microstructure and photoelectric properties of ZnO:In transparent conducting films." @default.
- W3086500861 created "2020-09-21" @default.
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- W3086500861 date "2020-11-01" @default.
- W3086500861 modified "2023-10-15" @default.
- W3086500861 title "Thermal evolution of point defects in indium doped ZnO transparent conducting films" @default.
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- W3086500861 doi "https://doi.org/10.1016/j.tsf.2020.138350" @default.
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