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首页> 外文期刊>ACS catalysis >Robust Iridium Coordination Polymers: Highly Selective, Efficient, and Recyclable Catalysts for Oxidative Conversion of Glycerol to Potassium Lactate with Dihydrogen Liberation
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Robust Iridium Coordination Polymers: Highly Selective, Efficient, and Recyclable Catalysts for Oxidative Conversion of Glycerol to Potassium Lactate with Dihydrogen Liberation

机译:鲁棒铱配位聚合物:具有用二氢释放的甘油氧化转化为甘油转化为乳酸钾的高选择性,有效和可回收催化剂

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摘要

Along with the rapid expansion of the biodiesel industry to deal with the world energy crisis, inexpensive glycerol is also produced in large scale as the main byproduct in biodiesel production via transesterification. Much attention has been paid to the development of environmentally benign technologies for the transformation of glycerol to valuable DL-lactic acid and its derivatives. Herein, a series of NHC-Ir coordination polymers were readily synthesized via reaction of some structurally rigid bisbenzimidazolium salts with iridium precursors under alkaline conditions and were successfully applied as robust self-supported catalysts in the oxidative dehydrogenation of glycerol to potassium lactate with dihydrogen liberation. Extremely high activity and selectivity were attained in open air under the mild reaction conditions even with ppm-level loadings of the catalysts, which were readily recovered after reaction by simple filtration and reused for up to 31 runs without obvious loss of activity or selectivity. Probably owing to the effective suppression of inactive binuclear iridium species in a homogeneously catalyzed reaction, the catalysts assembled via self-supported strategy exhibited high selectivity and productivity for potassium lactate, with up to 1.24 × 10~5 turnover numbers (TON) being attained even in large-scale reactions of neat glycerol at an elevated temperature. The high catalytic activity, recyclability, and scalability of the robust self-supported catalysts highlight their potential toward the development of practical technologies for transformation of glycerol to value-added chemicals.
机译:随着生物柴油行业的快速扩张,应对世界能源危机,廉价的甘油也是大规模生产的,作为生物柴油生产中的主要副产物通过酯交换。为甘油转化为有价值的DL-乳酸及其衍生物,已经向环境良性技术进行了很多关注。在此,通过在碱性条件下的一些结构刚性双链咪唑鎓盐与铱前体的反应,在碱性条件下的反应中容易地合成一系列NHC-IR配位聚合物,并在甘油氧化脱氢中成功施加为甘油的氧化脱氢至乳酸氢羟氢化钾。在温和的反应条件下,在温和的反应条件下,在催化剂的PPM水平载量下,在温和的反应条件下,在催化剂的PPM水平载体下易于过滤后,在反应后易于回收,并且在没有明显的活性损失或选择性的情况下重复恢复,易于回收。可能由于在均匀催化的反应中有效抑制无活性的双核铱物质,通过自负支持的策略组装的催化剂表现出乳酸钾的高选择性和生产率,甚至达到了高达1.24×10〜5周转数(吨)在升高的温度下纯甘油的大规模反应。稳健的自支撑催化剂的高催化活性,可再循环性和可扩展性强调了它们对甘油转化为增值化学品的实用技术的潜力。

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