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利用双配体 Zn/Cd 金属-有机骨架实现 CO 利用的可持续多相催化剂。

Sustainable Heterogeneous Catalysts for CO Utilization by Using Dual Ligand Zn /Cd Metal-Organic Frameworks.

机构信息

Academy of Scientific and Innovative Research (AcSIR), CSIR-Central Salt and Marine Chemicals Research Institute, G. B. Marg, Bhavnagar-, 364 002, Gujarat, India.

Analytical and Environmental Science Division and Centralized Instrument Facility, CSIR-Central Salt and Marine Chemicals Research Institute, G. B. Marg, Bhavnagar-, 364 002, India.

出版信息

Chemistry. 2018 Oct 22;24(59):15831-15839. doi: 10.1002/chem.201802387. Epub 2018 Sep 25.

Abstract

Two-dimensional Zn /Cd -based dual ligand metal-organic frameworks (MOFs) {[M(CHDC)(L)]⋅H O} involving 4-pyridyl carboxaldehyde isonicotinoylhydrazone (L) in combination with flexible 1,4-cyclohexanedicarboxylic acid (H CHDC) as linkers have been synthesized by adaptable synthetic protocols including a green mechanochemical (grinding) method. Characterization, chemical/thermal stability, phase purity, and solid-state luminescent properties of both MOFs have been established by various analytical methods. Structural analysis revealed dimeric metal clusters composed of [M (CHDC) ] loops doubly pillared with L, generating a 2D framework. Both MOFs can be used as highly active solvent-free binary catalysts for CO cycloaddition with epoxides in the presence of the co-catalyst tetrabutylammonium bromide (TBAB) with good catalytic conversion in up to six catalytic cycles without significant loss of activity. The present investigation demonstrates the application of MOFs as efficient heterogeneous catalysts for CO utilization under moderate reaction conditions. Based on the single-crystal X-ray data, a probable mechanism for the cycloaddition reaction has also been proposed.

摘要

包含 4-吡啶甲酰基异烟酰腙 (L) 的二维 Zn/Cd 双配体金属-有机骨架 (MOF) {[M(CHDC)(L)]·H2O} 与柔性 1,4-环己烷二羧酸 (H2CHDC) 作为连接物,通过适应性合成方案合成,包括绿色机械化学(研磨)方法。通过各种分析方法确定了两种 MOF 的特性、化学/热稳定性、相纯度和固态发光性能。结构分析表明,由 [M(CHDC)] 环双重支撑的 L 组成的二聚金属簇,生成二维框架。两种 MOF 均可在助催化剂四丁基溴化铵 (TBAB) 的存在下作为 CO 与环氧化物加成的高效无溶剂二元催化剂使用,在多达六个催化循环中具有良好的催化转化率,而活性没有明显损失。本研究证明了 MOF 在温和反应条件下作为 CO 利用的有效多相催化剂的应用。基于单晶 X 射线数据,还提出了环加成反应的可能机理。

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