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Highly Active and Selective Catalysis of Bimetallic Rh3Ni1 Nanoparticles in the Hydrogenation of Nitroarenes

机译:硝基芳烃加氢中双金属Rh3Ni1纳米粒子的高活性和选择性催化。

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Because of the requirements of sustainable development as well as the desirability of using molecular hydrogen as a chemical reagent, it is of paramount importance and great challenge to develop highly active and selective catalysts for the hydrogenation of organic molecules, including substituted nitroarenes. We approach this question by probing unsupported bimetallic nanoparticles. A series of novel bimetallic RhxNiy (x, y = 1, 2, 3) nanoparticles were successfully prepared using our “noble metalinduced reduction” strategy. Unsupported Rh3Ni1 nanoparticles were subsequently identified to be a highly active and exceedingly selective catalyst for the hydrogenation of nitroarenes under ambient conditions, underscoring a remarkable synergistic effect of the two metals. Further experiments showed that the Rh3Ni1 catalyst could be a highly efficient, selective, and recyclable catalyst for a range of nitroarene substrates. This work showcased the value of bimetallic nanoparticles in catalysts development for sustainable chemistry.
机译:由于可持续发展的要求以及使用分子氢作为化学试剂的必要性,开发用于氢化包括取代的硝基芳烃的有机分子的高活性和选择性催化剂是至关重要和巨大的挑战。我们通过探测不支持的双金属纳米颗粒来解决这个问题。使用我们的“贵金属诱导还原”策略成功制备了一系列新颖的双金属RhxNiy(x,y = 1,2,3)纳米粒子。随后鉴定出无载体的Rh3Ni1纳米颗粒是在环境条件下氢化硝基芳烃的高活性和极高选择性的催化剂,强调了两种金属的显着协同作用。进一步的实验表明,Rh3Ni1催化剂对于一系列硝基芳烃底物而言可能是高效,选择性和可回收的催化剂。这项工作展示了双金属纳米颗粒在催化剂开发中对可持续化学的价值。

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