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首页> 外文期刊>Catalysis science & technology >Ligand-free Guerbet-type reactions in air catalyzed by in situ formed complexes of base metal salt cobaltous chloride
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Ligand-free Guerbet-type reactions in air catalyzed by in situ formed complexes of base metal salt cobaltous chloride

机译:空气中的无配体构型反应,由原位形成的原位形成的碱金属盐钴含量

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摘要

Inexpensive, earth-abundant and environmentally benign cobaltous chloride efficiently accomplishes the catalytic β-alkylation of alcohols in air at 140 °C. At higher loadings of cobaltous chloride (1 mol%) in the presence of 2.5 mol% NaOtBu, there is a rapid formation of heterogeneous Co nanoparticles (NPs) which are apparently sensitive to air and result in poor yields (ca. 25%) of β-alkylated products. In contrast, performing the reaction in an argon atmosphere under otherwise identical conditions leads to higher yields (ca. 44%). The heterogenization and eventual loss of activity in air could be delayed by operating at a lower (0.01 mol%) CoCl2 loading in the presence of 2.5 mol% NaOtBu at 140 °C. Under these conditions, the catalytic β-alkylation of alcohols proceeded with high yields (up to 89%) and unprecedented turnovers (ca. 8900). Mechanistic studies are indicative of the involvement of catalysts based on in situ generated molecular Co complexes of alcohols. Labelling studies provide key evidence for the involvement of C–H activation in the cobaltous chloride catalyzed β-alkylation with a KIE of 1.61. Kinetic studies indicate linear dependence of the rate on the concentration of cobaltous chloride and sodium t-butoxide along with a non-linear dependence on the concentration of 1-phenyl ethanol and benzyl alcohol.
机译:廉价,含有的土壤含量和环境良性的二居氯化物有效地完成了140°C中空气中醇的催化β-烷基化。在存在2.5 mol%naotbu的情况下,在较高的氯化二单含量(1 mol%)的载荷下,存在异质的CO纳米颗粒(NPS)的迅速形成,显然对空气敏感,并导致产量较差(Ca. 25%) β-烷基化产物。相反,在相同的条件下,在氩气大气中进行反应会导致较高的产率(约44%)。在140°C下在2.5 mol%NAOTBU的情况下,在较低(0.01 mol%)COCL2载荷下运行,可以通过在较低(0.01 mol%)COCL2载荷下运行空气中的异质化和最终活动损失。在这些条件下,醇的催化β-烷基化以高产量(高达89%)和前所未有的营业额(约8900)进行。机械研究表明基于原位产生的醇的分子CO复合物的催化剂参与。标记研究为C – H激活参与钴含量为1.61的β-烷基化提供了关键证据。动力学研究表明,速率对二苯基乙醇和苄醇的浓度的非线性依赖性以及非线性依赖性的线性依赖性以及非线性依赖性。

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