微型多孔材料
沸石
材料科学
硅酸盐
化学工程
硅酸铝
热稳定性
石英
热的
分子筛
矿物学
吸附
化学
物理化学
有机化学
复合材料
催化作用
热力学
工程类
物理
作者
Masakazu Koike,Isabel Grosskreuz,Yusuke Asakura,Ritsuro Miyawaki,Hermann Gies,Hiroaki Wada,Atsushi Shimojima,Bernd Marler,Kazuyuki Kuroda
标识
DOI:10.1002/chem.202301942
摘要
A silica zeolite (RWZ-1) with a very high framework density (FD) was synthesized from highly crystalline natural layered silicate magadiite, bridging the gap between the two research areas of zeolites and dense silica polymorphs. Magadiite was topotactically converted into a 3D framework through two-step heat treatment. The resulting structure had a 1D micropore system of channel-like cavities with an FD of 22.1 Si atoms/1000 Å3 . This value is higher than those of all other silica zeolites reported so far, approaching those of silica polymorphs (tridymite (22.6) and α-quartz (26.5)). RWZ-1 is a slight negative thermal expansion material with thermal properties approaching those of dense silica polymorphs. It contributes to the creation of a new field on microporous high-density silica/silicates. Synergistic interactions are expected between the micropores with molecular sieving properties and the dense layer-like building units with different topologies which provide thermal and mechanical stabilities.
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