使用预制或原位生成的 Co 配合物对苯乙烯进行室温气相氧化或非水马科夫尼科夫水合反应的糖源配体

IF 4.4 3区 化学 Q2 CHEMISTRY, PHYSICAL
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引用次数: 0

摘要

将苯乙烯氧化成苯乙酮是一种与工业相关的转化过程,传统的方法是在高温高压下使用 Pd-Cu 催化剂,利用纯氧进行 Wacker 型反应。在此,我们报告了一种由 L-二氨基可可碱衍生的沙仑配体的 Co(II) 复合物,该复合物对苯乙烯在室温下选择性地氧化成苯乙酮具有催化活性。此外,还发现原位生成的 Co(II) 复合物(由附着 L-二氨基里波糖源配体和 Co(II) 盐的混合物生成)也具有催化活性。该氧化反应在作为氢原子转移(HAT)剂的 Et3SiH 存在下高效进行,并提供了非常高的苯乙酮分离产率(71-95%)。此外,以 NaBH4 为氢原子转移介导的转化还能实现苯乙烯的非水性马可夫尼科夫水合反应,通过氧化还原机制以单一产物的形式提供相应的苄醇,分离收率超过 72-97%。这些方法提供了非常高的产品纯度,并且与苯乙烯芳基环上的各种取代相兼容。详细的实验和计算研究揭示了配体的一个结构特征,它使假八面体 Co(III) 中间体易于形成和稳定,从而促进了氧化反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A sugar-derived ligand for room temperature aerial oxidation or non-aqueous Markovnikov hydration of styrenes using a preformed or in situ generated Co complex†

A sugar-derived ligand for room temperature aerial oxidation or non-aqueous Markovnikov hydration of styrenes using a preformed or in situ generated Co complex†

A sugar-derived ligand for room temperature aerial oxidation or non-aqueous Markovnikov hydration of styrenes using a preformed or in situ generated Co complex†

The oxidation of styrenes to acetophenones is an industrially relevant transformation that has been traditionally conducted with the Wacker-type reaction using pure oxygen at high temperature and pressure using Pd–Cu catalysts. Herein, we report a Co(ii) complex of a salen appended l-diaminoribose-derived ligand that is catalytically active for the room temperature, selective aerial oxidation of styrenes to acetophenones. Further, the in situ generated Co(ii) complex (from a mixture of the salen appended l-diaminoribose-derived ligand and a Co(ii) salt) is also found to enable the catalysis. The oxidation is efficiently conducted in the presence of Et3SiH as a hydrogen atom transfer (HAT) agent and provides very high isolated yields (71–95%) of the acetophenones. Further, the HAT mediated transformation with NaBH4 also enables the non-aqueous, Markovnikov hydration of styrenes, providing the corresponding benzylic alcohols, exclusively as a single product in over 72–97% isolated yields via an oxidation–reduction mechanism. The methodologies provided very high exclusive yields of the products and were compatible with various substitutions on the aryl ring of the styrene. Detailed experimental and computational studies revealed a structural feature of the ligand that enabled the facile formation and stabilization of a pseudo-octahedral Co(iii) intermediate that facilitated the oxidation reaction.

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来源期刊
Catalysis Science & Technology
Catalysis Science & Technology CHEMISTRY, PHYSICAL-
CiteScore
8.70
自引率
6.00%
发文量
587
审稿时长
1.5 months
期刊介绍: A multidisciplinary journal focusing on cutting edge research across all fundamental science and technological aspects of catalysis. Editor-in-chief: Bert Weckhuysen Impact factor: 5.0 Time to first decision (peer reviewed only): 31 days
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