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首页> 外文期刊>Journal of Catalysis >Core phosphine-functionalized amphiphilic nanogels as catalytic nanoreactors for aqueous biphasic hydroformylation
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Core phosphine-functionalized amphiphilic nanogels as catalytic nanoreactors for aqueous biphasic hydroformylation

机译:核心膦官能化的两亲纳米凝胶作为水性双相加氢甲酰化的催化纳米反应器

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Amphiphilic phosphine-functionalized nanogel particles were synthesized by aqueous polymerization induced self-assembly insuring a well-defined architecture as well as a narrow size distribution (average diameter of ca. 90 nm in water). They were successfully applied as ligands for the biphasic hydroformylation of 1-octene catalyzed by rhodium, yielding TOFs in the 350-650 h(-1) range and a linear to branched aldehyde ratio of 3.5. Embedding the phosphine ligands within a cross-linked structure did not strongly impede mass transfer toward the active centers, as proved by fast metal coordination and a catalytic activity tantamount to that of higher chain mobility micelles or core-cross-linked micelles that have phosphine moieties located on flexible linear arms. However, this extended cross-linking reduced particle swelling and transfer to the organic phase, affording a significantly lowered Rh loss. For all the architectures, a low functionalization degree was preferable to achieve high activity, the selectivity remaining essentially unchanged. (C) 2016 Elsevier Inc. All rights reserved.
机译:两性膦官能化的纳米凝胶颗粒是通过水聚合引发的自组装合成的,从而确保了定义明确的结构以及窄的尺寸分布(在水中的平均直径约为90 nm)。它们成功地用作铑催化的1-辛烯双相加氢甲酰化的配体,在350-650 h(-1)范围内产生TOF,线性与支化醛的比率为3.5。将膦配体嵌入到交联结构中并没有强烈阻碍向活性中心的传质,这是通过快速的金属配位和相当于具有膦部分的较高链迁移性胶束或核心交联胶束的催化活性所证明的。位于柔性线性臂上。然而,这种延长的交联减少了颗粒溶胀和转移至有机相,从而显着降低了Rh损失。对于所有架构,为了实现高活性,低官能度是优选的,选择性基本上保持不变。 (C)2016 Elsevier Inc.保留所有权利。

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