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Air-thermal processing of hierarchically porous metal-organic frameworks

机译:Air-thermal层级结构多孔的处理有机框架

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摘要

Metal-organic frameworks (MOFs) show great potential for various applications. The functions of MOFs are closely related to their porous structures and lattice integrities. However, the generally existing guest solvent/linker molecules and crystalline defects will alter internal microstructures and microenvironments of MOFs. Meanwhile, although MOFs have tailorable pore structures within the range of microspores, the achievement of meso/macropores in MOFs is of scientific interest. Herein, a versatile air-thermal processing (ATP) strategy is reported to remove the residual molecules and incompletely coordinated linkers in MOFs. Through processing MOFs in confined space, the thermalized and pressurized air can assist the filling solvents and partially/totally uncoordinated linkers to overcome the energy barrier of escape, and then maximize MOF porosity. The obtained MOF materials with hierarchical micro/mesoporous structures display substantially improved adsorption capacities and selectivities. For example, CuBTC-A shows 36%, 72%, 22%, and 86% enhancements in surface area, pore volume, CO(2)uptake, and CO2/N(2)selectivity, respectively. Moreover, by adjusting processing temperature, the ATP strategy is available for fabricating MOF materials with hierarchically micro/meso/macroporous superstructures under modulator/template-free conditions.
机译:有机框架(mof)好了各种应用程序。财政部的多孔性是密切相关的结构和晶格完整性。一般现有的客人溶剂/链接器分子和晶体缺陷会改变内部微观结构和mof的微环境。与此同时,尽管财政部可裁制成衣的孔隙小孢子的结构范围内内消旋的成就/ mof的大孔隙科学的兴趣。air-thermal处理(ATP)策略报告去除残余分子和不完全的在财政部协调连接器。财政部在密闭空间,热化压缩空气可以帮助填补溶剂和部分/完全不协调的连接器克服逃跑的能量势垒,然后财政部孔隙度最大化。与分层微/介孔结构显示显著提高吸附能力和选择性。CuBTC-A显示,36%,72%,22%,86%的增强表面积、孔隙体积有限公司(2)吸收分别二氧化碳/ N(2)选择性。调整加工温度,ATP策略是用于制造MOF材料等级微/内消旋/大孔下的上层建筑摘要报道了调制器/条件。

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