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Double-Supported Silica-Metal-Organic Framework Palladium Nanocatalyst for the Aerobic Oxidation of Alcohols under Batch and Continuous Flow Regimes

机译:间歇和连续流动条件下用于酒精好氧氧化的双支撑硅金属有机骨架钯纳米催化剂

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摘要

Stable and easily synthesized metal-organic framework MIL-88B-NH2 represents an attractive support for catalysts employed in oxidation reactions, which are typically performed under relatively harsh conditions. However, MIL-88B-NH2, the thermodynamic polymorph of the more popular MIL-101-NH2, has been rarely employed in catalytic applications because of a difficult impregnation process caused by the flexible nature of the framework. We report herein a new catalyst denoted Pd@MIL-88B-NH2 (8 wt % Pd), the first example of metallic nanoparticles successfully impregnated in the pores of MIL-88B-NH2. Furthermore, by enclosing the MOF crystals in a tailored protective coating of SiO2 nanoparticles, an even more enduring material was developed and applied to the aerobic oxidation of benzylic alcohols. This doubly supported catalyst Pd@MIL-88B-NH2@nano-SiO2 displayed high activity and excellent performance in terms of endurance and leaching control. Under batch conditions, a very convenient and efficient recycling protocol is illustrated, using a teabag approach. Under continuous flow, the catalyst was capable of withstanding 7 days of continuous operation at 110 degrees C without deactivation. During this time, no leaching of metallic species was observed, and the material maintained its structural integrity.
机译:稳定且易于合成的金属有机骨架MIL-88B-NH2为氧化反应中使用的催化剂提供了诱人的载体,该催化剂通常在相对苛刻的条件下进行。然而,MIL-88B-NH2是较流行的MIL-101-NH2的热力学多晶型物,由于骨架的柔性性质导致浸渍过程困难,因此很少用于催化应用。我们在此报告了一种新的催化剂,称为Pd @ MIL-88B-NH2(8 wt%Pd),这是金属纳米颗粒成功浸渍在MIL-88B-NH2孔中的第一个实例。此外,通过将MOF晶体封装在特制的SiO2纳米粒子保护涂层中,开发了一种更加持久的材料并将其用于苯甲醇的好氧氧化。这种双载体催化剂Pd @ MIL-88B-NH2 @ nano-SiO2在耐久性和浸出控制方面表现出高活性和优异的性能。在分批条件下,使用茶袋方法说明了一种非常方便且有效的回收方案。在连续流动下,该催化剂能够在110℃下承受7天的连续操作而不会失活。在这段时间内,没有观察到金属物质的浸出,并且材料保持了其结构完整性。

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