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National Chung Hsing University Institutional Repository - NCHUIR > 工學院 > 化學工程學系所 > 依資料類型分類 > 期刊論文 >  Amination application over nano-Mg-Ni hydrogen storage alloy catalysts

Please use this identifier to cite or link to this item: http://nchuir.lib.nchu.edu.tw/handle/309270000/129374

標題: Amination application over nano-Mg-Ni hydrogen storage alloy catalysts
作者: Chen, C.M.;Jehng, J.M.
關鍵字: nano-intermetallic alloy;polyol process;PEG amination;XRD;TEM;colloidal silver dispersions;rare-earth intermetallics;polyol process;bimetallic clusters;metal-clusters;powders;reduction;nickel;absorption;particles
日期: 2004
Issue Date: 2012-12-07 15:27:11 (UTC+8)
關連: Applied Catalysis a-General, Volume 267, Issue 1-2, Page(s) 103-110.
摘要: Some nano-intermetallic alloys such as Mg-Ni were prepared by a chemical reduction method (named polyol process) using ethylene glycol, polyvinyl pyrroli done (PVP 10000) and PdCl2 as reduction reagent, protect reagent, and nuclear reagent, respectively, to reduce the metal salts. The particle size of the synthetic Mg-Ni alloy was affected by the amount of the protect agent and nuclear agent and by the reduction temperature. All synthetic Mg-Ni alloys possess higher surface area about 113-315 m(2)/g and four kinds of components: Mg2Ni, Ni, Mg and MgO. The contents of Mg2Ni, Ni, Mg and MgO are affected by the Mg/Ni molar ratio. High molar ratio of Ni makes the single phase of Ni easy to reduce and results in the increase of Ni crystalline degree. The results of XRD and TEM and electron diffraction pattern indicate that PVP concentration only changes the particle size, but not the structure and composition of synthetic Mg-Ni alloys. The catalytic studies of PEG amination show that the total amine yield reaches to 58.4% over 1 g of Mg-Ni alloy with Mg:Ni = 1:2 due to the formation of more single phase of Ni. The formation of Mg2Ni alloy and MgO prevent the aggregation of Ni, and possesses a higher amination activity. (C) 2004 Published by Elsevier B.V.
Relation: Applied Catalysis a-General
Appears in Collections:[依資料類型分類] 期刊論文
[依教師分類] 鄭紀民

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