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用于近环境储能的三维金属插层共价有机框架

Three-dimensional metal-intercalated covalent organic frameworks for near-ambient energy storage.

作者信息

Gao Fei, Ding Zijing, Meng Sheng

机构信息

Beijing National Laboratory for Condensed Matter Physics, and Institute of Physics, Chinese Academy of Sciences, 100190 Beijing, China.

出版信息

Sci Rep. 2013;3:1882. doi: 10.1038/srep01882.

Abstract

A new form of nanoporous material, metal intercalated covalent organic framework (MCOF) is proposed and its energy storage property revealed. Employing density functional and thermodynamical analysis, we find that stable, chemically active, porous materials could form by stacking covalent organic framework (COF) layers with metals as a gluing agent. Metal acts as active sites, while its aggregation is suppressed by a binding energy significantly larger than the corresponding cohesive energy of bulk metals. Two important parameters, metal binding and metal-metal separation, are tuned by selecting suitable building blocks and linkers when constructing COF layers. Systematic searches among a variety of elements and organic molecules identify Ca-intercalated COF with diphenylethyne units as optimal material for H2 storage, reaching a striking gravimetric density ~ 5 wt% at near-ambient conditions (300 K, 20 bar), in comparison to < 0.1 wt% for bare COF-1 under the same condition.

摘要

一种新型的纳米多孔材料——金属插层共价有机框架(MCOF)被提出,并揭示了其储能特性。通过密度泛函和热力学分析,我们发现,以金属作为黏合剂堆叠共价有机框架(COF)层可以形成稳定、具有化学活性的多孔材料。金属作为活性位点,而其聚集受到比块状金属相应内聚能大得多的结合能的抑制。在构建COF层时,通过选择合适的结构单元和连接体来调节两个重要参数——金属键合和金属-金属间距。在各种元素和有机分子中进行系统搜索,确定了具有二苯乙炔单元的钙插层COF是储氢的最佳材料,在近环境条件(300K,20巴)下,其重量密度达到惊人的~5 wt%,而在相同条件下,裸COF-1的重量密度<0.1 wt%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2518/3662009/e064db2ddd94/srep01882-f1.jpg

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