硼硅酸盐玻璃
材料科学
玻璃化转变
硅酸盐玻璃
沸石咪唑盐骨架
硅酸钠
网络结构
化学工程
矿物学
玻璃生产
碱金属
萃取(化学)
石英玻璃
多孔玻璃
光学玻璃
苏打石灰玻璃
钠
作者
Pascal Kolodzeiski,Benjamin M. Gallant,Lennard Richter,Mario Antonio T. Ongkiko,Carlo Franke,Aleksander Kostka,Wen‐Long Xue,Chinmoy Das,Jan‐Benedikt Weiß,Elena Kolodzeiski,Thomas Kress,Gregor Kieslich,Tong Li,Andrew J. Morris,Dominik J. Kubicki,Sebastian Henke
标识
DOI:10.1038/s41557-026-02115-8
摘要
Abstract Modifying glass compositions is key to creating silicate-based glasses for technologies including optical fibres, catalytic supports, protective coatings and separation membranes. Here we extend this concept to metal–organic framework (MOF) glasses by modifying the MOF glass former ZIF-62 with Li(bim) and Na(bim) as compatible glass modifiers (benzimidazolate, bim − ). Melt-quenching of physical mixtures with increasing Na(bim) content yields modified MOF glasses that exhibit a systematic decrease in the glass transition temperature ( T g ), accompanied by increased liquid fragility, configurational heat capacity at T g and density: paralleling silicate glass chemistry through partial network depolymerization. Structural and spectroscopic analysis, coupled with density-functional theory calculations, confirm that Na(bim) is incorporated homogeneously into the MOF glass framework rather than the pores and reveal the presence of undercoordinated sodium ion environments. Finally, extraction of the modifier by water treatment increases glass porosity, akin to established borosilicate glass processes. This work introduces a transferable approach for tailoring the structure and properties of MOF glasses.
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