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Featured researches published by Xu Xuebo.


international conference on thermoelectrics | 2001

Preparation and interface analyses of a P-type segmented FeSi/sub 2//Bi/sub 2/Te/sub 3/ material

Cui Jiaolin; Zhao Xinbing; Zhou Bangchang; Xu Xuebo; Bao Mingdong

P-type segmented FeSi/sub 2//Bi/sub 2/Te/sub 3/ thermoelectric material has been prepared by the dip coating procedure using Sn/sub 95/Ag/sub 5/ as the bridge material. An apparent Seebeck coefficient of about 225 /spl mu/V/K is obtained, which is significantly higher than those of both homogeneous materials /spl beta/-FeSi/sub 2/ and Bi/sub 2/Te/sub 3/ in the same temperature range. The maximum power output of the segmented FeSi/sub 2//Bi/sub 2/Te/sub 3/ is approximately 2.5 times that of the monolithic material /spl beta/-FeSi/sub 2/ in the same temperature range. This implies that not only does the segmented material benefit from Bi/sub 2/Te/sub 3/ at the low temperature side, but it also makes fully use of the characteristics of /spl beta/-FeSi/sub 2/ at high temperature. SEM and EDAX analyses revealed that interdiffusions do to some extent exist in all interfaces. A eutectic mixture could easily be formed since its melting point is lower than the annealing temperature, which trigger the exfoliation in the interface between Sn/sub 95/Ag/sub 5/ and Bi/sub 2/Te/sub 3/ under the stress due to the thermal expansion coefficient mismatch of both materials. Although the maximum power output of the material with a Ni layer sandwiched between Sn/sub 95/Ag/sub 5/ and Bi/sub 2/Te/sub 3/ is a little lower than those of the materials without Ni layer, the thermal stability can be significantly improved.


Plasma Processes and Polymers | 2007

Microabrasive Wear Resistance of CrN and CrSiN Coatings

Bao Mingdong; Xu Xuebo; Sébastien Wery; Sun Hailin; Dennis Teer; He Jiawen


Archive | 2017

Method for coating diamond film by chemical vapor deposition

Bao Mingdong; Xu Xuebo; Lyu Zhijia; Yang Mengmeng; Feng Chao; Ding Lan; He Huabo


Archive | 2017

Chemical vapor deposition plates gas blowing device of equipment of system diamond film

Wang Ruilai; Bao Mingdong; Xu Xuebo; Lyu Zhijia; Yang Mengmeng; Feng Chao


Archive | 2017

Blowing device of equipment for plating diamond film through chemical vapor deposition

Bao Mingdong; Xu Xuebo; Lyu Zhijia; Yang Mengmeng; Feng Chao; He Huabo; Ding Lan


Archive | 2017

Equipment for plating diamond film through chemical vapor deposition

Bao Mingdong; Xu Xuebo; Feng Chao; Lyu Zhijia; Yang Mengmeng; Ding Lan; He Huabo


Archive | 2017

Sample platform of apparatus for coating diamond film with chemical vapor deposition

Bao Mingdong; Xu Xuebo; Yang Mengmeng; Feng Chao; Lyu Zhijia; He Huabo; Ding Lan


Archive | 2017

Chemical vapor deposition plates equipment of system diamond film

Wang Ruilai; Bao Mingdong; Xu Xuebo; Du Yi; Feng Chao; Lyu Zhijia; Yang Mengmeng


Archive | 2017

Chemical vapor deposition plates test sample table of equipment of system diamond film

Wang Chendong; Bao Mingdong; Xu Xuebo; Yang Mengmeng; Feng Chao; Lyu Zhijia


Archive | 2014

Method for manufacturing size-controllable two-dimensional nanostructure of CrN nanopore array

Wu Hongjun; Bao Mingdong; Xu Xuebo

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Bao Mingdong

Ningbo University of Technology

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He Jiawen

Xi'an Jiaotong University

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