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Bronsted-Lewis dual acid sites in a chromium-based metal-organic framework for cooperative catalysis: Highly efficient synthesis of quinazolin-(4H)-1-one derivatives

机译:Bronsted-Lewis双酸部位在铬基金属 - 有机骨架中用于合作催化:高效合成喹唑啉 - (4H)-1-一种衍生物

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A novel MIL-101(Cr) (MIL, Material Institut Lavoisier) supported propyl carboxylic acid, denoted here as MIL-101(Cr)-NH-CO-Pr-COOH, has been fabricated by post-synthetic modifications of nitro-functionalized MIL-101(Cr), MIL-101(Cr)-NO2. The resulting MOF was successfully characterized by using FT-IR, XRD, N-2 adsorption-desorption, H-1 NMR, SEM, ICP-OES, elemental analysis and TGA. Then, the prepared solid was used as an extremely highly effective multifunctional catalyst for the one-pot three-component synthesis of quinazolin-4(1H)-one derivatives as biologically active nitrogen heterocyclic compounds under solvent-free conditions. The important features of this methodology are good to excellent yields of products, the use of very small amounts of catalyst, short reaction time, non-requirement of organic solvents, and environmental benign and mild reaction conditions. Furthermore, turnover frequency was found to be in the range 3.5-50 h(-1) under neat conditions, which is comparable to the reported previously for this reaction. Significantly, compared with the pristine MOF and the related homogenous catalysts, the MIL-10 1(Cr)-NHCO-Pr-COOH exhibited superior catalytic activity which can be attributed to the synergistic effect between isolated Lewis acidic Cr(III) nodes and Bronsted acidic free -COOH groups in addition to the cooperative interplay of the Bronsted acid and the amine sites within the framework. More remarkably, MOF was stable and reusable up to three times without any changes in its activity and structure. (C) 2019 Elsevier Inc. All rights reserved.
机译:一种新颖的MIL-101(Cr)为(MIL,材质研究所拉瓦泽)支持丙基羧酸,在此表示为MIL-101(Cr)为-NH-CO-PR-COOH,已经通过的硝基官能合成后修饰制造MIL-101(CR),MIL-101(Cr)为-NO 2。将所得的MOF成功特征在于,使用FT-IR,XRD,N-2吸附 - 解吸,H-1 NMR,SEM,ICP-OES,元素分析和热重分析。然后,使用制得的固体为喹唑啉-4(1H)的一锅三组分合成酮衍生物作为无溶剂的条件下,生物活性氮的杂环化合物极其高效多功能催化剂。这种方法的重要特征是好产品优异的产率,使用非常少量的催化剂,反应时间短,有机溶剂的非需求和环境良性和温和的反应条件。此外,转换频率被发现是整齐的条件下的范围3.5-50 H(-1),这是可比的用于该反应的报道。显著,与原始MOF和相关均相催化剂中,MIL-10 1(Cr)为-NHCO-PR-COOH其中表现出可以归因于分离路易斯酸性的Cr(III)的节点和布朗斯台德之间的协同效应优越的催化活性相比酸性游离的-COOH基团除了布朗斯台德酸的协同相互作用和框架内的胺位点。更值得注意的是,财政部是稳定和可重复使用最多三次没有在其活动和结构的任何变化。 (c)2019 Elsevier Inc.保留所有权利。

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