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通过混合物筛选发现多组分非均相催化剂:用于伯醇有氧氧化酯化的 PdBiTe 催化剂。

Discovery of Multicomponent Heterogeneous Catalysts via Admixture Screening: PdBiTe Catalysts for Aerobic Oxidative Esterification of Primary Alcohols.

机构信息

Department of Chemical and Biological Engineering and ‡Department of Chemistry, University of Wisconsin-Madison , Madison, Wisconsin 53706, United States.

出版信息

J Am Chem Soc. 2017 Feb 1;139(4):1690-1698. doi: 10.1021/jacs.6b12722. Epub 2017 Jan 23.

DOI:10.1021/jacs.6b12722
PMID:28060501
Abstract

In the present study, we demonstrate the utility of "admixture screening" for the discovery of new multicomponent heterogeneous Pd catalyst compositions that are highly effective for aerobic oxidative methyl esterification of primary alcohols. The identification of possible catalysts for this reaction was initiated by the screening of simple binary and ternary admixtures of Pd/charcoal in combination with one or two metal and/or metalloid components as the catalyst. This approach permitted rapid evaluation of over 400 admixture combinations for the oxidative methyl esterification of 1-octanol at 60 °C in methanol. Product yields from these reactions varied widely, ranging from 2% to 88%. The highest yields were observed with Bi-, Te-, and Pb-based additives, and particularly from those containing both Bi and Te. Validation of the results was achieved by preparing specific PdBiTe catalyst formulations via a wet-impregnation method, followed by application of response surface methodology to identify the optimal Pd-Bi-Te catalyst stoichiometry. This approach revealed two very effective catalyst compositions: PdBiTe/C (PBT-1) and PdBiTe/C (PBT-2). The former catalyst was used in batch aerobic oxidation reactions with different primary alcohols and shown to be compatible with substrates bearing heterocycle and halide substituents. The methyl ester products were obtained in >90% yield in nearly all cases. Implementation of the PBT-2 catalyst in a continuous-flow packed-bed reactor achieved nearly 60 000 turnovers with no apparent loss of catalytic activity.

摘要

在本研究中,我们展示了“混合物筛选”在发现新的多组分异相 Pd 催化剂方面的效用,这些催化剂对于伯醇的有氧氧化甲酯化非常有效。该反应的可能催化剂的鉴定是通过筛选 Pd/炭的简单二元和三元混合物,并结合一种或两种金属和/或类金属成分作为催化剂来启动的。这种方法允许在甲醇中于 60°C 下对 1-辛醇的氧化甲酯化快速评估超过 400 种混合物组合。这些反应的产物产率差异很大,范围从 2%到 88%。使用基于 Bi、Te 和 Pb 的添加剂观察到最高的产率,特别是那些同时含有 Bi 和 Te 的添加剂。通过湿浸渍法制备特定的 PdBiTe 催化剂配方来验证结果,然后应用响应面法来确定最佳的 Pd-Bi-Te 催化剂化学计量比。这种方法揭示了两种非常有效的催化剂组成:PdBiTe/C(PBT-1)和 PdBiTe/C(PBT-2)。前者催化剂用于不同伯醇的分批有氧氧化反应,并且与带有杂环和卤代取代基的底物兼容。在几乎所有情况下,甲基酯产物的收率均超过 90%。在连续流动填充床反应器中实施 PBT-2 催化剂可实现近 60000 次转化,而催化活性没有明显损失。

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