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Dive into the research topics where Wang Jinshu is active.

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Featured researches published by Wang Jinshu.


Journal of Alloys and Compounds | 2000

A study of diffusion behavior of elements lanthanum and oxygen in Mo–La2O3 cathode

Wang Jinshu; Zhou Meiling; Nie Zuoren; Zhang Jiuxing; Zuo Tieyong; Wang Yiman

Abstract The diffusion behavior of elements lanthanum and oxygen in Mo–La2O3 cathode has been carried out by using Auger Electron Spectroscopy. Lanthanum and oxygen ions (La3+ and O2+) diffuse from the grain boundaries to the surface. The experimental results were analyzed by kinetics of grain boundary diffusion. In the temperature range 1123 K–1423 K, the diffusion coefficients of La3+ and O2+ ions were found to fit with the following expression: D La =3.6703×10 −16 exp (−1.01639×10 5 / RT ) m 2 s −1 D O =1.5122×10 −16 exp (−8.13066×10 4 / RT ) m 2 s −1


Journal of Alloys and Compounds | 2002

A study of chemical behavior of lanthanum in La2O3–Mo thermionic cathode materials

Wang Jinshu; Zhou Meiling; Zuo Tieyong; Zhang Jiuxing; Nie Zuoren

The chemical reaction of La2O3 and Mo2C in La2O3–Mo cathode materials has been studied by thermal analysis, X-ray diffraction, scanning electron microscopy and in-situ X-ray photoelectron spectroscopy (XPS). The thermal analysis and X-ray diffraction results show that molybdenum is one of the reaction products of lanthanum oxide and molybdenum carbide. In-situ XPS results show that chemical state of lanthanum changes during heating. We proved, for the first time, that reacted metallic lanthanum appears at the surface of this kind of cathode material at high temperature.


Journal of Alloys and Compounds | 2003

A study of the effect of chemical state of lanthanum on the emission properties of La2O3–Mo filament

Wang Jinshu; Zhou Meiling; Zuo Tieyong; Zhang Jiuxing; Nie Zuoren

Abstract The ion implanting method has been used for implanting metallic lanthanum into the surface of molybdenum wires to study the effect of chemical state of lanthanum on the emission properties of the filaments. The chemical reaction of La 2 O 3 and Mo 2 C can take place during the operating of the La 2 O 3 –Mo filament, and the metallic lanthanum layer improves emission capabilities of the La 2 O 3 –Mo filament. During filament carbonizing and operating, to control the evaporation rate of lanthanum from the filament surface is very important. On the basis of experimental results, the optimum carbonizing and operating temperatures have been presented. On application of the new technique, the life of this filament has exceeded the minimum life for practical uses.


Archive | 2014

Preparation method of TiO2 (titanium dioxide) mesoporous monocrystal microsphere and g-C3N4 heterojunction photocatalyst

Li Yongli; Wang Jinshu; Yang Yilong; Zhang Yan


Archive | 2014

Preparation method of TiO2(B)@g-C3N4 composite nano-sheet photocatalyst

Wang Jinshu; Li Yongli; Yang Yilong; Zhang Yan


Archive | 2014

Manufacturing method of flexible all-solid-state array type perovskite solar battery

Li Hongyi; Wang Jinshu; Su Penglei; Wang Fei; Wang Hong


Archive | 2002

Secondary-emission rare earth-molybdenum material and its preparing process

Wang Jinshu; Zhou Meiling; Zhang Jiuxing


Archive | 2013

Solvothermal preparation method of niobium pentoxide nanowire by use of acetic acid

Wang Jinshu; An Qier; Wu Junshu


Archive | 2015

Method for preparing porous magnesium hydroxide and magnesium oxide hexagonal plates

Wang Jinshu; Wang Linlin; Wu Junshu; Li Hongyi; Du Yucheng; Jia Xinjian


Archive | 2015

Method for driving microfluid on metal microfluidic chip

Chen Tao; Liu Ning; Wang Jinshu; Li Hongyi; Wu Jian; Liu Shibing

Collaboration


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Du Yucheng

Beijing University of Technology

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Zhou Meiling

Chinese Ministry of Education

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Zuo Tieyong

Chinese Ministry of Education

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Liu Wei

Beijing University of Technology

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Dong Liran

Beijing University of Technology

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Wang Yiman

Beijing University of Technology

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Zhang Jiuxing

Chinese Ministry of Education

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Liu Xiang

Beijing University of Technology

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Nie Zuoren

Chinese Ministry of Education

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Wang Qiang

Beijing University of Technology

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