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A Water Resistant Solid Superbase Derived from Calcium: Synthesis, Characterization and Catalytic Performance

机译:钙衍生的耐水固体超碱:合成,表征和催化性能。

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In comparison with the development of new materials with strong basicity, less attention is paid to the improvement of water resistance of solid bases. In the present study, Ca(NO_3)_2 and γ-Al_2O_3 was employed as base precursor and support, respectively, producing the materials denoted as CaNA. The results show that calcium ions can insert into the vacancies on the surface of γ-Al_2O_3, thus generating a strong guest-host interaction. The decomposition temperature of Ca(NO_3)_2 on γ-Al_2O_3 (e.g. 460 °C for 20CaNA) is therefore obviously lower than unsupported Ca(NO_3)_2 (600 °C). The materials after activation possess both superbasicity with high strength of 27.0 and excellent water resistance. This can be attributed to the strong guest-host interaction and low solubility of guest. Moreover, the CaNA materials are catalytically active in 2-propanol dehydrogenation as well as 1-hexene isomerization. On the basis of the present study, it is possible to fabricate a variety of water resistant functional materials by judicious choice of guest and host, which provides valuable candidates for catalysis and adsorption involving water.
机译:与开发具有强碱性的新材料相比,对固态碱的耐水性的提高关注较少。在本研究中,分别使用Ca(NO_3)_2和γ-Al_2O_3作为基础前体和载体,制备了以CaNA表示的材料。结果表明,钙离子可以插入到γ-Al_2O_3表面的空位中,从而产生强烈的客体-主体相互作用。因此,Ca(NO_3)_2在γ-Al_2O_3上的分解温度(例如20CaNA的460°C)明显低于未支撑的Ca(NO_3)_2(600°C)。活化后的材料既具有超碱性,具有27.0的高强度,又具有优异的耐水性。这可以归因于强的客-主相互作用和客的低溶解度。而且,CaNA材料在2-丙醇脱氢以及1-己烯异构化中具有催化活性。根据本研究,可以通过明智地选择客体和主体来制造各种耐水功能材料,这为涉及水的催化和吸附提供了有价值的候选物。

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