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金属有机框架中碱式碳酸盐的蒸汽辅助自转化

Vapor-assisted self-conversion of basic carbonates in metal-organic frameworks.

作者信息

Jia Miaomiao, Su Jingyi, Su Pengcheng, Li Wanbin

机构信息

Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment, Jinan University, Guangzhou 511443, P.R. China.

出版信息

Nanoscale. 2021 Mar 12;13(9):5069-5076. doi: 10.1039/d0nr07700c.

Abstract

Incorporation of nanoparticles has been considered as an efficient method for enhancing the adsorption performance of metal-organic frameworks (MOFs). Alkali metal compounds possess outstanding affinity to acidic CO2. In this study, a robust self-conversion strategy is reported for improving the carbon capture performance of MOFs, through directly transforming partial metal centers to basic carbonate (BC) nanoparticles. Based on the hydrolysis of coordination bonds induced by water impurity in solvents and the decarboxylation of linkers under thermal and alkaline conditions, the self-loading of BC in MOFs can be realized by solvent vapor-assisted thermal treatment. Since water impurity causes limited self-conversion and excess organic solvent can purify MOFs, the BC-MOF materials maintain good crystallinity and even show superior porosity. Owing to the increased specific surface areas, open metal sites, and alkalinity of BC, the prepared MOF composites exhibit substantially improved CO2 capture performance with good balance between capacity and selectivity. For example, after self-conversion with ethanol solvent, the CO2 adsorption capacity and CO2/N2 (15 : 85) selectivity at 298 K and 100 kPa increase from 3.7 mmol g-1 and 11.4 to 5.8 mmol g-1 and 29.2, respectively.

摘要

将纳米颗粒掺入已被视为提高金属有机框架(MOF)吸附性能的有效方法。碱金属化合物对酸性CO2具有出色的亲和力。在本研究中,报道了一种通过直接将部分金属中心转化为碱性碳酸盐(BC)纳米颗粒来提高MOF碳捕获性能的稳健自转化策略。基于溶剂中水分杂质引起的配位键水解以及热和碱性条件下连接体的脱羧反应,通过溶剂蒸汽辅助热处理可实现BC在MOF中的自负载。由于水分杂质导致的自转化有限,且过量有机溶剂可纯化MOF,BC-MOF材料保持良好的结晶度,甚至显示出优异的孔隙率。由于BC的比表面积、开放金属位点和碱度增加,制备的MOF复合材料表现出显著提高的CO2捕获性能,在容量和选择性之间具有良好的平衡。例如,用乙醇溶剂进行自转化后,在298 K和100 kPa下的CO2吸附容量以及CO2/N2(15 : 85)选择性分别从3.7 mmol g-1和11.4提高到5.8 mmol g-1和29.2。

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