首页> 外文期刊>Journal of Catalysis >Aqueous phase homogeneous catalysis using core-shell nanoreactors: Application to rhodium-catalyzed hydroformylation of 1-octene
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Aqueous phase homogeneous catalysis using core-shell nanoreactors: Application to rhodium-catalyzed hydroformylation of 1-octene

机译:使用核-壳纳米反应器的水相均相催化:在铑催化的1-辛烯加氢甲酰化中的应用

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High catalytic activity (turnover frequencies up to 700 h(-1)) was achieved using new triphenylphosphine-functionalized core cross-linked micelles, TPP@CCM, as nanoreactors and [Rh(acac)(CO)(2)] as catalyst precursor for the aqueous biphasic hydroformylation of 1-octene. While the hydrophobic core of the polymer offers an adequate environment for the catalytic reaction, its hydrophilic shell confines the catalyst into the aqueous phase and prevents extensive leaching toward the substrate/product phase. Selectivity is better than that of the homogeneous reaction catalyzed by the Rh/PPh3 system, with minor isomerization and linear to branched aldehyde ratios (l/b) between 3 and 6. Various operating parameters, such as catalyst/ligand concentration, temperature, and P/Rh ratio, were varied and proved that these nanoreactors do not suffer from significant mass transfer limitations. The effect of the nanoreactor hydrophobic core size and degree of functionalization on activity and on l/b regioselectivity has also been investigated. The possible causes of catalyst leaching are discussed. (C) 2015 Elsevier Inc. All rights reserved.
机译:使用新的三苯基膦官能化的核心交联胶束TPP @ CCM作为纳米反应器和[Rh(acac)(CO)(2)]作为催化剂前体可实现高催化活性(周转频率高达700 h(-1))用于1-辛烯的水相双相加氢甲酰化。尽管聚合物的疏水核为催化反应提供了足够的环境,但其亲水壳将催化剂限制在水相中,并防止了向底物/产物相的大量浸出。选择性好于Rh / PPh3体系催化的均相反应,具有较小的异构化和线性与支链醛比率(l / b)在3至6之间。各种操作参数,例如催化剂/配体浓度,温度和P / Rh比是变化的,并证明这些纳米反应器没有明显的传质限制。还研究了纳米反应器疏水核尺寸和官能化程度对活性和1 / b区域选择性的影响。讨论了催化剂浸出的可能原因。 (C)2015 Elsevier Inc.保留所有权利。

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