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    题名 作者 年代 出处 被引量
1显示文摘Wu Mingzai Xiong Ying Jia Yaoshun 2005Chemical Physics Letters2005,401,:1
2Sonochemical preparation of bimetallic Co/Cu nano-particles in aqueous solu-tion显示文摘M D Butterworth Helin Niu Mingzai Wu 2005Materials Research Bulletin2005,40,:1
3Magnetic field-assisted hydro-thermal growth of chain-like nanostruc-ture of magnetite显示文摘WU Mingzai XIONG Ying JIA Yaoshun 2005Chemical Physics Letters2005,401,456:1
4Synthesis and luminescence properties of hand-like α-Bi 2 O 3 microcrystals显示文摘Ying Xiong Mingzai Wu Jing Ye Qianwang Chen 2007Materials Letters2007,,:1
5A facile hydrothermal preparation and photoluminescence study of ZnO micro/nanostructures on Zn foils显示文摘ZnO micro/nanostructures with various morphologies were grown via hydrothermal etching of Zn foil.Controlling the reaction temperature and time,rod-like,pencil-like,tube-like and flowerlike ZnO micro/nanostructures could be prepared directly on the Zn foil surface at temperatures 100-180℃ with excellent reproducibility.X-ray diffraction patterns indicated that these ZnO micro/nanostructures were hexagonal.Possible mechanisms for the variation of morphology are discussed.Moreover,photoluminescence spectra of the as-grown samples revealed that all of them consist of UV emission band at around 392 nm.WU MingZai LU XiangHua LIU YanMei MA YongQing SUN ZhaoQi LIU XianSong ZHANG LiDe 2011Science China Chemistry2011,54,10:1
6Experimental Study of the Influence of Hydrous Minerals on the Melting Behaviour of Rocks at High Temperatures and Pressures显示文摘The experimental study on the melting of potassic basalt and eclogite with about 2% waterat 800-1300℃ and 1.0-3.5 GPa shows that the solidi of both rocks are significantly lower thanthose obtained from the previous experiments of the same type of rocks under dry conditions,and the former which is enriched in potassium has a lower melting point than the latter. It is con-sistent with the previous study. The melting temperature of eclogite increases with pressure,whereas potassic basalt has similar properties only at 1.5—2.5 GPa and>3.0 GPa, and at 2.5—3.0 GPa the melting temperature decreases with pressure. This can be explained as follows: (1)eclogite only has one hydrous mineral amphibole and the dehydous temperature is lower than thewet solidus of the rock. (2) Amphibole exists in potassic basalt at the pressures lower than 2.5GPa and phlogopite exists at pressures higher than 2.5 GPa, and the special compositions of bothminerals determine that amphibole has a dehydration temperature higher than or close to that ofthe wet solidus of the rocks, while phlogopite has a dehydration temperature lower than that ofthe wet solidus. On the other hand the features of the continuous solidus in the experiment ofhydrous eclogite were produced by the fact that the dehydration temperature of its amphibolelower than or close to the melting temperature of the hydrous conditions. So the melting tempera-ture lowers at higher pressures. Therefore, the composition of the rocks in the lithosphere and thetypes of hydrous minerals and their stable P-T conditions are the important factors controllingthe solidi of rocks. It can quite well explain the partial melting of rocks and the origin of the lowvelocity zone in the deep lithosphere.Zheng Haifei Xie Hongsen Xu Yousheng Song Maoshuang Zhang Yueming Wang Mingzai and Xu Huigang Department of Geology, Peking University, Beijing Institute of Geochemistry, Chinese Academy of Sciences, Guiyang,Guizhou 1996Acta Geologica Sinica(English Edition)1996,70,2:1
7Solvothermal Synthesis and Electrochemical Properties of Octahedral Cobalt Oxide Decorated with Ag_2O显示文摘Octahedral CoO with nanostructures decorated with Ag nanoparticles was prepared via a facile solvothermal approach. After being annealed at 500 ℃ for 1 h, an electrochemical capacitor material of Co_3O_4 decorated with Ag_2O was obtained. The cyclic voltammetry and galvanostatic charge-discharge were used to evaluate the electrochemical properties of the as-prepared products. The results indicated that the as-prepared samples exhibited fine pseudo-capacitive performance, and the surface modifications of Ag_2O can significantly increase the capacitance of the Co_3O_4 material. The specific capacitance of Ag2O/Co_3O_4 composite electrode was up to 217.6 F·g^(-1), which was 3.35 times as high as that of pure Co_3O_4. Moreover, Ag2O/Co_3O_4 composite showed an excellent cycle performance, and 65.3% of specific capacitance was maintained after 200 cycles.李洋 REN Ping WU Wenjian CHEN Changzhao WU Mingzai 2017Journal of Wuhan University of Technology(Materials Science)2017,32,3:0
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