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External Electric Field Dependence of Optical Absorbance in SnO_2 Nanoclusters
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作者 WANG Dehuang (Dept. of Physics, Peking University, National Laboratory for Superlattice and Microstructures, Beijing 100871, CHN) CHENG Humin, MA Jiming (Dept. of Chemistry, Peking University, Beijing 100871, CHN) 《Semiconductor Photonics and Technology》 CAS 1998年第4期256-258,共3页
The optical absorbance in near UV wavelength region in SnO 2 nanoclusters in an external electric field is determined at room temperature. The absorbance spectra as applied field and the absorbance variations with th... The optical absorbance in near UV wavelength region in SnO 2 nanoclusters in an external electric field is determined at room temperature. The absorbance spectra as applied field and the absorbance variations with the applied field are obtained.The relation between absorbance change and applied field is non-linear, and is saturated at high field region. 展开更多
关键词 ABSORBANCE External Electric Field sno 2 nanoclusters
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Well Dispersed SnO2 Nanoclusters Preparation and Modulation of Metal-Insulator Transition Induced by Ionic Liquid
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作者 Zhong-hu Liu Xing Chen +8 位作者 Yi-yu Zhu Si-han Zhao Zhi-qiang Wang Feng Wang Qiang-qiang Meng Lei Zhu Qin-fang Zhang Bao-lin Wang Le-le Fan 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2019年第2期248-252,I0003,共6页
Tin dioxide (SnO2) has attracted broad interest due to its particular gas-sensor property. Nano- or atom-scale SnO2 material has always been the aim in order to ultimately improve the sensitivity. However, until now, ... Tin dioxide (SnO2) has attracted broad interest due to its particular gas-sensor property. Nano- or atom-scale SnO2 material has always been the aim in order to ultimately improve the sensitivity. However, until now, it remains difficult to synthesize SnO2 nanoclusters by using traditional methods. In the present work, we have achieved the preparation of SnO2 nanoclusters by using the cluster beam deposition technique. The obtained nanoclusters were well characterized by high resolution transmission electron microscope HR-TEM. Results indicated the formation of the well-dispersed SnO2 nanoclusters with uniform size distribution (5-7 nm). Furthermore, an obvious metal insulator transition was observed by gating with ionic liquid. Combined with theory calculation, the corresponding mechanism was systematically analyzed from oxygen vacancy induced electron doping. 展开更多
关键词 sno2 nanoclusters Ionic liquid Oxygen vacancy Metal-insulator transition
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