van 't Hoff Institute for Molecular Sciences, University of Amsterdam, Amsterdam, The Netherlands.
Nat Protoc. 2014 May;9(5):1183-91. doi: 10.1038/nprot.2014.077. Epub 2014 Apr 24.
This protocol describes how to prepare 2-(2-formylalkyl)-arenecarboxylic acid derivatives, common building blocks for the synthesis of various valuable chemicals (e.g., anti-obesity and Alzheimer's disease treatment pharmaceuticals), by using the fully regioselective hydroformylation of vinyl arene derivatives. This catalytic reaction proceeds cleanly with 100% regioselectivity and chemoselectivity. The procedure is reliably scalable and can be efficiently conducted on a multigram scale. The analytically pure product is easily isolated with a nearly quantitative yield by using a simple acid-base extraction workup and avoids any tedious chromatography. This protocol details the synthesis of a bisphosphite ligand (L1) that is a pivotal element of the catalytic system used, Rh(acac)(CO)2 with ligand L1, starting from commercial building blocks. The protocol also describes a general procedure for the preparative hydroformylation of vinylarene-2-carboxylic acid derivatives to 2-formylalkylarene products, providing a representative example for the hydroformylation of 2-vinylbenzoic acid (1a) to 2-(3-oxopropane)-benzoic acid (2a). The synthesis of L1 (six chemical reactions) uses 2-nitrophenylhydrazine, 4-benzyloxybenzoylchloride and (S)-binol, and takes 5-7 working days. The actual hydroformylation reaction of each vinyl arene derivative takes ∼4 h of active effort over a period of 1-3 d.
本方案描述了如何通过乙烯基芳基衍生物的完全区域选择性氢甲酰化反应来制备 2-(2-甲酰基烷基)芳基羧酸衍生物,这些衍生物是合成各种有价值的化学物质(例如,抗肥胖和阿尔茨海默病治疗药物)的常见构建块。该催化反应具有 100%的区域选择性和化学选择性,反应过程清洁。该程序可可靠地放大规模,并且可以在多克规模上有效地进行。通过使用简单的酸碱萃取后处理,可近乎定量地收率且简便地分离得到分析纯产物,从而避免了繁琐的色谱分离。本方案详细介绍了一种双膦配体(L1)的合成,该配体是所用催化体系中关键的组成部分,由商业起始原料 Rh(acac)(CO)2与配体 L1 合成。该方案还描述了一种制备性氢甲酰化乙烯基芳基羧酸衍生物为 2-甲酰基芳基产物的一般程序,以 2-乙烯基苯甲酸(1a)氢甲酰化为 2-(3-氧代丙基)苯甲酸(2a)为例。L1 的合成(六个化学反应)使用 2-硝基苯肼、4-苄氧基苯甲酰氯和(S)-BINOL,需要 5-7 个工作日。每个乙烯基芳基衍生物的实际氢甲酰化反应需要 1-3 天的时间,大约 4 小时的主动努力。