Robust metal-organic framework enforced by triple-framework interpenetration exhibiting high H2 storage density.
Robust metal-organic framework enforced by triple-framework interpenetration exhibiting high H2 storage density.
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DOI:
10.1021/ic800854y
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发表时间:
2008-06
影响因子:
4.6
通讯作者:
Ming Xue;Shengqian Ma;Zhao Jin;Roxanna M. Schaffino;G. Zhu;E. Lobkovsky;S. Qiu;Banglin Chen
中科院分区:
文献类型:
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作者:
Ming Xue;Shengqian Ma;Zhao Jin;Roxanna M. Schaffino;G. Zhu;E. Lobkovsky;S. Qiu;Banglin Chen
A microporous metal-organic framework 1 Zn 2(CNC) 2(DPT).G [CNC = 4-Carboxycinnamic; DPT = 3,6-Di-4-pyridyl-1,2,4,5-tetrazine; G = guest molecules] was synthesized and structurally characterized by a triply interpenetrated primitive cubic net with 1D pores of about 3.7 A. 1 is highly robust enforced by triple framework interpenetration through weak van der Waals interactions, thus the activated 1b takes up 1.28 wt % hydrogen gas and exhibits high hydrogen storage density of 95.2% at 1 atm and 77 K.