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Synthesis, characterization and catalytic performances of ruthenium-based catalysts for the acceptorless dehydrogenative coupling of butanol

机译:丁醇无受体脱氢偶联的钌基催化剂的合成,表征和催化性能

摘要

A growing interest towards new sources of energy has led in recent years to the development of a new generation of catalysts for alcohol dehydrogenative coupling (ADC). This green, atom-efficient reaction is capable of turning alcohol derivatives into higher value and chemically more attractive ester molecules, and it finds interesting applications in the transformation of the large variety of products deriving from biomass. udIn the present work, a new series of ruthenium-PNP pincer complexes are investigated for the transformation of 1-butanol, one of the most challenging substrates for this type of reactions, into butyl butyrate, a short-chain symmetrical ester widely used in flavor industries.udSince the reaction kinetics depends on hydrogen diffusion, the study aimed at identifying proper reactor type and right catalyst concentration to avoid mass transfer interferences and to get dependable data.udA comparison between catalytic activities and productivities has been made to establish the role of the different ligands bonded both to the PNP binder and to the ruthenium metal center, and hence to find the best catalyst for this type of reaction.
机译:近年来,对新能源的兴趣日益增长,导致开发了用于醇脱氢偶联(ADC)的新一代催化剂。这种绿色的,原子效率高的反应能够将醇衍生物转化为更高价值和化学上更具吸引力的酯分子,并且在转化源自生物质的多种产品中发现了有趣的应用。 ud在本研究中,研究了一系列新的钌-PNP钳形配合物,用于将1-丁醇(一种对这类反应最具挑战性的底物)转化为丁酸丁酯(一种广泛用于短链对称酯)。 ud由于反应动力学取决于氢的扩散,因此该研究旨在确定合适的反应器类型和合适的催化剂浓度,以避免传质干扰并获得可靠的数据。 ud比较了催化活性和生产率PNP粘合剂和钌金属中心均键合了不同的配体,因此找到了用于此类反应的最佳催化剂。

著录项

  • 作者

    Bernardi Andrea;

  • 作者单位
  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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