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首页> 外文期刊>ChemSusChem >The Role of Water Revisited and Enhanced: A Sustainable Catalytic System for the Conversion of CO2 into Cyclic Carbonates under Mild Conditions
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The Role of Water Revisited and Enhanced: A Sustainable Catalytic System for the Conversion of CO2 into Cyclic Carbonates under Mild Conditions

机译:水重新审视和增强的作用:可持续催化系统,用于在温和条件下将CO2转化为环状碳酸盐

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The role of water as highly effective hydrogen-bond donor (HBD) for promoting the coupling reaction of CO2 with a variety of epoxides was demonstrated under very mild conditions (25-60 degrees C, 2-10 bar CO2). Water led to a dramatic increase in the cyclic carbonate yield when employed in combination with tetrabutylammonium iodide (Bu4NI) whereas it had a detrimental effect with the corresponding bromide and chloride salts. The efficiency of water in promoting the activity of the organic halide was compared with three state-of-the-art hydrogen bond donors, that is, phenol, gallic acid and ascorbic acid. Although water required higher molar loadings compared to these organic hydrogen-bond donors to achieve a similar degree of conversion of CO2 and styrene oxide into the corresponding cyclic carbonate under the same, mild reaction conditions, its environmental friendliness and much lower cost make it a very attractive alternative as hydrogen-bond donor. The effect of different parameters such as the amount of water, CO2 pressure, reaction temperature, and nature of the organic halide used as catalyst was investigated by using a high-throughput reactor unit. The highest catalytic activity was achieved with either Bu4NI or bis(triphenylphosphine)iminium iodide (PPNI): with both systems, the cyclic carbonate yield at 45 degrees C with different epoxide substrates could be increased by a factor of two or more by adding water as a promoter, retaining high selectivity. Water was an effective hydrogen-bond donor even at room temperature, allowing to reach 85 % conversion of propylene oxide with full selectivity towards propylene carbonate in combination with Bu4NI (3 mol %). For the conversion of epoxides in which PPNI is poorly soluble, the addition of a cyclic carbonate as solvent allowed the formation of a homogeneous solution, leading to enhanced product yield.
机译:在非常温和的条件下,在非常温和的条件下对水作为高效氢键供体(HBD)用于促进CO 2的偶联反应的高效氢键供体(HBD)(25-60℃,2-10巴CO 2)。当与四丁基碘化铵(Bu4Ni)组合使用时,水导致环碳酸盐产量的显着增加,而它与相应的溴化物和氯化物盐的有害作用。将促进有机卤化物活性的水的效率与三种最新的氢键供体进行比较,即苯酚,无碱酸和抗坏血酸。尽管与这些有机氢键供体相比,水需要更高的摩尔载体,但是在相同的,温和的反应条件下,其环境友好和更低的成本使其环境友好和更低的成本使其具有相应的循环碳酸酯,尽管将相似程度的CO 2和苯乙烯转化物相似。有吸引力的替代品作为氢键供体。通过使用高通量反应器单元研究了不同参数如水,二氧化碳压力,反应温度和用作催化剂的有机卤化物的性质的影响。用Bu4Ni或双(三苯基膦)氨基碘化物(PPNI)实现最高的催化活性:通过两个系统,通过加入水,可以增加45℃的环状碳酸盐产率,其不同的环氧化物基材增加了两倍以上的因子启动子,保持高选择性。即使在室温下,水也是有效的氢键供体,允许与Bu4Ni(3mol%)组合的丙烯碳酸亚丙酯完全选择性加环氧丙烷转化为85%。为了转化其中PPNI可溶于不良的环氧化物,加入环状碳酸酯作为溶剂,使得形成均匀的溶液,导致产品产率提高。

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