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Unexpected dehydrogenation behavior of LiBH(4)/Mg(BH(4))(2) mixture associated with the in situ formation of dual-cation borohydride
Z. Z. Fang ; X. D. Kang ; P. Wang ; H. W. Li ; S. I. Orimo
刊名Journal of Alloys and Compounds
2010
卷号491期号:1-2页码:L1-L4
关键词Hydrogen storage Lithium borohydride Magnesium borohydride Dual-cation Dehydrogenation hydrogen storage properties well-crystallized mg(bh4)(2) lithium borohydride complex hydrides libh4 systems 1st-principles kinetics carbon
ISSN号0925-8388
中文摘要In this paper, we report an experimental study of the mixed alkali metal and alkaline-earth metal borohydrides. It was found that dual-cation (Li, Mg) borohydride was in situ formed during the mechanical milling and subsequent heating process of 1:1 LiBH(4)/Mg(BH(4))(2) mixture. Compared with the constituent phases, the dual-cation borohydride exhibits lower onset dehydrogenation temperature. Furthermore, property examination results showed that the dehydrogenation reaction of the dual-cation borohydride may involve different mechanistic pathway from that of the constituent borohydrides. These findings suggest a viable approach for tailoring the dehydrogenation property of borohydrides, and should be of significance for better understanding the structure and property of ionic borohydrides. (C) 2009 Elsevier B.V. All rights reserved.
原文出处://WOS:000274926300001
公开日期2012-04-13
内容类型期刊论文
源URL[http://210.72.142.130/handle/321006/31093]  
专题金属研究所_中国科学院金属研究所
推荐引用方式
GB/T 7714
Z. Z. Fang,X. D. Kang,P. Wang,et al. Unexpected dehydrogenation behavior of LiBH(4)/Mg(BH(4))(2) mixture associated with the in situ formation of dual-cation borohydride[J]. Journal of Alloys and Compounds,2010,491(1-2):L1-L4.
APA Z. Z. Fang,X. D. Kang,P. Wang,H. W. Li,&S. I. Orimo.(2010).Unexpected dehydrogenation behavior of LiBH(4)/Mg(BH(4))(2) mixture associated with the in situ formation of dual-cation borohydride.Journal of Alloys and Compounds,491(1-2),L1-L4.
MLA Z. Z. Fang,et al."Unexpected dehydrogenation behavior of LiBH(4)/Mg(BH(4))(2) mixture associated with the in situ formation of dual-cation borohydride".Journal of Alloys and Compounds 491.1-2(2010):L1-L4.
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