吸热过程
解吸
分子
吸附
氢键
甲醇
化学
硼
水解
放热反应
氢
亚稳态
离子键合
化学工程
离子
材料科学
有机化学
工程类
作者
Yang Wang,Xudong Hou,Congyan Liu,Mohamed K. Albolkany,Yan Wang,Niannian Wu,C. Chen,Bo Liu
标识
DOI:10.1038/s41467-020-16976-1
摘要
Abstract Adsorption of guest molecules by porous materials proceeds in a spontaneous exothermic way, whereas desorption usually requires external energy input as an endothermic process. Reducing such energy consumption makes great sense in practice. Here we report the reversible and automatic methanol (MeOH) adsorption/release in an ionic hydrogen-bonded organic framework (iHOF) constructed from guanidinium cation and borate anion ([B(OCH 3 ) 4 ] 3 [C(NH 2 ) 3 ] 4 Cl•4CH 3 OH, termed Gd-B) at ambient condition. The metastable Gd-B automatically releases all sixteen MeOH molecules (63.4 wt%) via desorption and tetra-methyl borate hydrolysis at ambient atmosphere and the structure can be recovered when re-exposed to MeOH vapor or liquid, mimicking combustible ice behavior but at ambient condition. Reversible capture/release of four guest MeOH molecules is also realized without destroying its crystal structure. The combustible Gd-B paves a way for exploring metastable iHOF materials as carrier for alternative energy source and drug delivery etc.
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