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一种用于在水中有氧氧化合成苯并咪唑的双链基金属胶束催化剂。

A double-chain based metallomicellar catalyst for aerobic oxidative synthesis of benzimidazoles in water.

作者信息

Sunani Pragyansmruti, Thiruvengetam Prabaharan, Chand Dillip Kumar

机构信息

Department of Chemistry, Indian Institute of Technology Madras, Chennai 600036, India.

出版信息

Dalton Trans. 2025 Feb 25;54(9):3704-3713. doi: 10.1039/d4dt03406f.

Abstract

The oxomolybdenum complexes Mo1, Mo2 and Mo3, which share a common ONO donor ligand backbone but differ in their peripheral substituents, were explored to study their reactivity in organic transformations in water. The ligand backbones of Mo1 and Mo2 were covalently linked to a methyl group and a single hydrophobic -hexadecyl chain an ether linkage, respectively. The complex Mo3 was found to possess two -hexadecyl chains attached to the ligand backbone a common amine-N. Complexes Mo2 and Mo3 formed metallomicelle when dispersed in water due to the surfactant presence in their structures, enabling them to uptake organic substrates. The catalytic potential of the complexes was evaluated for the oxidative coupling of benzylamine with 1,2-diaminobenzene to synthesize benzimidazole in neat water using open air as the sole oxidant. The double-chain surfactant-type catalyst Mo3 displayed superior activity compared to the single-chain surfactant-type complex, Mo2. A wide variety of benzimidazoles were synthesized in good to excellent yields under environmentally benign conditions using Mo3 as the catalyst. The practical utility of the process was validated through multi-gram scale-up reactions and recyclability experiments. A plausible mechanism was proposed based on several controlled experiments and literature support.

摘要

研究了氧代钼配合物Mo1、Mo2和Mo3,它们具有共同的ONO供体配体骨架,但外围取代基不同,以研究它们在水中有机转化反应中的活性。Mo1和Mo2的配体骨架分别通过醚键与一个甲基和一条单一的疏水十六烷基链共价连接。发现配合物Mo3具有两条连接到配体骨架上的十六烷基链——通过一个常见的胺氮原子连接。由于结构中存在表面活性剂,配合物Mo2和Mo3分散在水中时形成金属胶束,使其能够摄取有机底物。评估了这些配合物在纯水中以空气作为唯一氧化剂将苄胺与1,2-二氨基苯氧化偶联合成苯并咪唑的催化潜力。双链表面活性剂型催化剂Mo3表现出比单链表面活性剂型配合物Mo2更高的活性。使用Mo3作为催化剂,在环境友好的条件下以良好至优异的产率合成了多种苯并咪唑。通过多克规模放大反应和可回收性实验验证了该方法的实际应用价值。基于若干对照实验和文献支持提出了一个合理的机理。

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