QuanXing Zha

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Name: 查全性; QuanXing Zha
Organization: Wuhan University , China
Department:
Title: Professor(PhD)
Co-reporter:Qiang Wang, Chuan-Sin Cha, Juntao Lu and Lin Zhuang  
Physical Chemistry Chemical Physics 2009 vol. 11(Issue 4) pp:679-687
Publication Date(Web):25 Nov 2008
DOI:10.1039/B810429H
The nature and properties of Pt surfaces in contact with pure water in PEM-H2O reactors were mimetically studied by employing CV measurements with microelectrode techniques. These “Pt/water” interfaces were found to be electrochemically polarizable, and the local interfacial potential relative to reversible hydrogen electrode (RHE) potential in pure water is numerically the same as the potential value measured against a RHE in contact with PEM as the reference electrode. However, the structural parameters of the electric double layer at the “Pt/water” interfaces can be quite different from those at the “Pt/PEM” interfaces, and the kinetics of electrode processes could be seriously affected by the structure of electric double layer in pure water media. Besides, there is active diffusional flow of intermediates of electrode reactions between the “Pt/water” and the “Pt/PEM” interfaces, thus facilitating the active involvement of the “Pt/water” interfaces in the current-generation mechanism of PEM fuel cells and other types of PEM-H2O reactors.
Co-reporter:Chuansin Cha, Jingxian Yu, Jixiao Zhang
Journal of Power Sources 2004 Volume 129(Issue 2) pp:347-357
Publication Date(Web):22 April 2004
DOI:10.1016/j.jpowsour.2003.11.043
The behavior of the sealed Ni–Cd and Ni–MH systems are compared experimentally with regard to their ability to consume gaseous products generated during the overcharge stage of these systems. It was found that the Ni–Cd system could only consume oxygen, while the Ni–MH system possesses the additional ability to adsorb hydrogen and to catalyze the recombination reaction of hydrogen and oxygen. The internal pressure within both sealed Ni–Cd cells and sealed Ni–MH cells can be kept well under control during the charge/overcharge processes if the rate of overcharge is not too high and if there is sufficient surplus of charging capacity at the negative electrodes. However, the internal pressure can rise to dangerously high levels if the rate of overcharge is too high or there is a deficiency of the charging capacity at the negative electrodes. The various factors that may affect the surplus of charging capacity of the negative electrodes are also discussed.
Co-reporter:Qiang Wang, Chuan-Sin Cha, Juntao Lu and Lin Zhuang
Physical Chemistry Chemical Physics 2009 - vol. 11(Issue 4) pp:NaN687-687
Publication Date(Web):2008/11/25
DOI:10.1039/B810429H
The nature and properties of Pt surfaces in contact with pure water in PEM-H2O reactors were mimetically studied by employing CV measurements with microelectrode techniques. These “Pt/water” interfaces were found to be electrochemically polarizable, and the local interfacial potential relative to reversible hydrogen electrode (RHE) potential in pure water is numerically the same as the potential value measured against a RHE in contact with PEM as the reference electrode. However, the structural parameters of the electric double layer at the “Pt/water” interfaces can be quite different from those at the “Pt/PEM” interfaces, and the kinetics of electrode processes could be seriously affected by the structure of electric double layer in pure water media. Besides, there is active diffusional flow of intermediates of electrode reactions between the “Pt/water” and the “Pt/PEM” interfaces, thus facilitating the active involvement of the “Pt/water” interfaces in the current-generation mechanism of PEM fuel cells and other types of PEM-H2O reactors.
EC 1.1.3.4
Sulfuric acid, leadsalt (1:?), basic
Ferrate(3-),hexakis(cyano-kC)-,(OC-6-11)- (9CI)
Iron, chloro[5,10,15,20-tetrakis(4-methoxyphenyl)-21H,23H-porphinato(2-)-κN21,κN22,κN23,κN24]-, (SP-5-12)-