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Green Synthesis of Oxide-Supported Pd Nanocatalysts by Laser Methods for Room-Temperature Carbon-Carbon Cross-Coupling Reactions

机译:用激光方法进行氧化物支持的PD纳米催化剂的绿色合成室温碳 - 碳交联反应

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This work reports the design and development of a new class of highly active Pd nanocatalysts supported on substoichiometric oxides. These novel catalysts are generated by green laser synthesis methods to generate high-surface-area substoichiometric oxide nanoparticles followed by photoreduction in aqueous solutions to deposit highly active Pd nanocatalysts within the surface defects of the oxides. The laser methods eliminate the use of toxic chemicals, including hazardous solvents and chemical reducing agents, and allow efficient reduction of the Pd ions in aqueous solutions aided by the photogenerated electrons from the semiconductor support. The Pd catalysts incorporated within these oxides exhibit high activity for carbon-carbon bond-forming reactions. The Pd/TiO2 catalyst with 0.3 mol % Pd achieves 100% conversion in the reaction between bromobenzene and benzeneboronic acid to the biphenyl product within 240 minutes at room temperature without any external heating. With a catalyst loading of 0.3 mol % Pd in the microwave-assisted reaction between bromobenzene and benzeneboronic acid at 60 degrees C, 92 and 83% conversions to the biphenyl product are achieved within 5 min of reaction time using the Pd/TiO2 and Pd/ZnO catalysts, respectively. The results demonstrate a remarkable catalytic activity of the substoichiometric oxide-supported Pd catalysts with turnover frequencies (TOF, h(-1)) of 24 000, 10 000, and 3200 achieved under mirowave-assisted reactions at 60 degrees C for the 0.03 mol% Pd of the Pd/TiO2, Pd/ZnO, and Pd/ZrO2 catalysts, respectively. The high activity and good reusability of these nanocatalysts are attributed to the optimum catalyst-support interaction between the small Pd nanoparticles and the surface defects of the substoichiometric oxide support prepared by the laser vaporization-controlled condensation method.
机译:这项工作报告了一类新的高活性PD纳米催化剂的设计和开发支持的含蓄氧化物。这些新型催化剂由绿色激光合成方法产生,以产生高表面积的倒档氧化物纳米颗粒,然后在水溶液中进行光电,以在氧化物的表面缺陷内沉积高活性的PD纳米催化剂。激光方法消除了有毒化学物质的使用,包括有害溶剂和化学还原剂,并允许从半导体支撑件上的光生电子辅助的水溶液中的PD离子的高效减少。在这些氧化物内掺入的Pd催化剂表现出高活性的碳 - 碳键形成反应。具有0.3摩尔%PD的Pd / TiO 2催化剂在室温下在240分钟内达到溴苯和苯硼酸之间的反应100%转化率,在室温下没有任何外部加热。在溴苯和苯硼酸之间的微波辅助反应中,在60℃,92和83%的反应时间内使用PD / TiO 2和Pd / Pd /分别ZnO催化剂。结果表明,在60℃下在Mirowave辅助反应下实现了24 000,10 000和3200的额外氧化物负载的Pd催化剂的显着催化活性,在60℃下为0.03摩尔PD / TiO2,Pd / ZnO和Pd / ZrO2催化剂的%Pd。这些纳米催化剂的高活性和良好的可重用性归因于通过激光汽化控制的冷凝方法制备的小Pd纳米颗粒与灰化氧化物载体的表面缺陷之间的最佳催化剂 - 载体相互作用。

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