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首页> 外文期刊>RSC Advances >Natural amino acids/H2O as a metal- and halide-free catalyst system for the synthesis of propylene carbonate from propylene oxide and CO2 under moderate conditions
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Natural amino acids/H2O as a metal- and halide-free catalyst system for the synthesis of propylene carbonate from propylene oxide and CO2 under moderate conditions

机译:天然氨基酸/ H2O作为无金属和卤化物的催化剂体系,可在中等条件下由环氧丙烷和CO2合成碳酸丙烯酯

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摘要

An environmentally clean, binary catalytic system of naturally occurring alpha-amino acids (AAs)/H2O has been found to deliver promising yields of propylene carbonate (PC) from propylene oxide (PO) and CO2 under moderate reaction conditions. Among the various AA systems tested, the highest yield of PC from PO-CO2 coupling was achieved with the L-His/H2O system, associated with the basic nature of L-histidine. The effect of various reaction parameters such as the catalyst loading, temperature, CO2 pressure, and time were evaluated. A plausible reaction mechanism involving synergistic interplay between the -OH groups of H2O and the COO- end of the zwitterionic L-His and the amine moiety of the imidazole ring of L-His was proposed. The process presented herein represents a low cost, ecologically safe, and efficient route with simple work-up employing readily available materials for chemical fixation of CO2 into high-value chemicals.
机译:已经发现,在自然的反应条件下,天然存在的α-氨基酸(AAs)/ H2O的环境清洁的二元催化系统可以从环氧丙烷(PO)和CO2产生有希望的碳酸亚丙酯(PC)收率。在各种测试的AA系统中,使用L-His / H2O系统从PO-CO2偶联中获得的PC产量最高,这与L-组氨酸的基本性质有关。评估了各种反应参数(例如催化剂的加入量,温度,CO2压力和时间)的影响。提出了一个合理的反应机理,该机理涉及H2O的-OH基团与两性离子L-His的COO-端与L-His的咪唑环的胺部分之间的协同相互作用。本文介绍的方法代表了一种低成本,生态安全且高效的途径,其工艺简单,采用易于获得的材料将CO2化学固定为高价值化学品。

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