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Mesoporous Zr-Beta zeolites prepared by a post-synthetic strategy as a robust Lewis acid catalyst for the ring-opening aminolysis of epoxides

机译:通过合成后策略制备的中孔Zr-Beta沸石,作为鲁棒的路易斯酸催化剂,用于环氧化物的开环氨解

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Mesoporous zirconosilicate, stannosilicate, and titanosilicate with the BEA structure framework have been prepared from the commercially available Beta zeolite via acid-alkaline treatments and subsequent dry impregnation of appropriate organometallic precursors. N-2 adsorption-desorption isotherms and TEM observations confirm that alkaline treatment can induce desilication to create intra-crystalline mesopores from the partially dealuminated Beta sample. The incorporation of Zr species into the zeolite framework at formed silanol defect sites is monitored by infrared and H-1 MAS NMR spectroscopy. Characterization results from UV-vis and XPS reveal that the majority of the incorporated Zr species exist in the form of tetrahedral Zr(IV) in the zeolite framework. The creation of Lewis acid sites with moderate acid strength upon Zr incorporation is confirmed by FTIR spectroscopy with pyridine adsorption. The as-prepared mesoporous Zr-Beta exhibits a remarkable catalytic activity and regio-selectivity to beta-amino alcohols in the ring-opening aminolysis of epoxides, and the presence of mesopores can promote the reaction to a great extent through enhanced mass transfer. The impacts of the Lewis acidity of the catalysts, the basicity of amines and adsorption of reactants on the ring-opening aminolysis of epoxides are discussed in detail.
机译:具有BEA结构骨架的介孔锆硅酸盐,锡硅酸盐和钛硅酸盐已经通过酸碱处理并随后干法浸渍适当的有机金属前体,由市售的Beta沸石制备。 N-2吸附-解吸等温线和TEM观察证实,碱处理可引起脱硅,从而从部分脱铝的Beta样品中产生晶内中孔。通过红外和H-1 MAS NMR光谱监测Zr物种在形成的硅烷醇缺陷位点处进入沸石骨架的过程。 UV-vis和XPS的表征结果表明,大多数掺入的Zr物种以四面体Zr(IV)的形式存在于沸石骨架中。通过具有吡啶吸附的FTIR光谱证实了在Zr掺入时具有中等酸强度的路易斯酸位点的产生。制备的介孔Zr-Beta在环氧化物的开环氨解中显示出显着的催化活性和对β-氨基醇的区域选择性,并且介孔的存在可通过增强的传质在很大程度上促进反应。详细讨论了催化剂的路易斯酸度,胺的碱性和反应物的吸附对环氧化物开环氨解的影响。

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