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首页> 外文期刊>ChemistryOpen >CO 2 Cycloaddition to Epoxides by using M-DABCO Metal?¢????Organic Frameworks and the Influence of the Synthetic Method on Catalytic Reactivity
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CO 2 Cycloaddition to Epoxides by using M-DABCO Metal?¢????Organic Frameworks and the Influence of the Synthetic Method on Catalytic Reactivity

机译:M-DABCO金属构架对环氧化合物的CO 2环加成反应及其合成方法对催化活性的影响

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Abstract A series of high-quality M 2 (BDC) 2 (DABCO) metal?¢????organic frameworks (abbreviated as M-DABCO; M=Zn, Co, Ni, Cu; BDC=1,4-benzene dicarboxylate; DABCO=1,4-diazabicyclo[2.2.2]octane), were synthesized by using a solvothermal (SV) method, and their catalytic activity for the cycloaddition of CO 2 to epoxides in the absence of a co-catalyst or solvent was demonstrated. Of these metal?¢????organic frameworks (MOFs), Zn-DABCO exhibited very high activity and nearly complete selectivity under moderate reaction conditions. The other members of this MOF series (Co-DABCO, Ni-DABCO, and Cu-DABCO) displayed lower activity in the given sequence. Samples of Zn-DABCO, Co-DABCO, and Ni-DABCO were recycled at least three times without a noticeable loss in catalytic activity. The reaction mechanism can be attributed to structural defects along with the acid?¢????base bifunctional characteristics of these MOFs. Moreover, we illustrate that the synthetic method of M-DABCO influences the yield of the reaction. In addition to the SV method, Zn-DABCO was synthesized by using spray drying due to its industrial attractiveness. It was found that the synthesis procedure clearly influenced the crystal growth and thus the physicochemical properties, such as surface area, pore volume, and gas adsorption, which in turn affected the catalytic performance. The results clarified that although different synthetic methods can produce isostructural MOFs, the application of MOFs, especially as catalysts, strongly depends on the crystal morphology and textural properties and, therefore, on the synthesis method.
机译:摘要一系列高质量的M 2(BDC)2(DABCO)金属有机骨架(缩写为M-DABCO; M = Zn,Co,Ni,Cu; BDC = 1,4-苯二甲酸) ; DABCO = 1,4-二氮杂双环[2.2.2]辛烷),是通过溶剂热(SV)方法合成的,在没有助催化剂或溶剂的情况下,它们对CO 2环化成环氧化物的催化活性为演示。在这些金属的有机骨架(MOF)中,Zn-DABCO在中等反应条件下表现出很高的活性和几乎完全的选择性。此MOF系列的其他成员(Co-DABCO,Ni-DABCO和Cu-DABCO)在给定序列中显示出较低的活性。 Zn-DABCO,Co-DABCO和Ni-DABCO的样品至少循环了三次,而催化活性没有明显下降。反应机理可归因于这些MOF的结构缺陷以及酸,碱,双功能特征。此外,我们证明了M-DABCO的合成方法影响反应的产率。除SV方法外,由于其工业吸引力,还通过喷雾干燥法合成了Zn-DABCO。发现合成过程明显影响晶体的生长,因此影响其理化性质,例如表面积,孔体积和气体吸附,进而影响催化性能。结果表明,尽管不同的合成方法可以产生同构的MOF,但是MOF的应用,尤其是作为催化剂,在很大程度上取决于晶体的形态和质构性质,因此也取决于合成方法。

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