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回顾工业催化的35年

Looking Back on 35 Years of Industrial Catalysis.

作者信息

Blaser Hans-Ulrich

机构信息

Furglerstrasse 10, CH-9000 St. Gallen, Switzerland; (Formerly Ciba-Geigy, Novartis and Solvias).

出版信息

Chimia (Aarau). 2015 Aug 19;69(7):393-406. doi: 10.2533/chimia.2015.393.

DOI:10.2533/chimia.2015.393
PMID:28482971
Abstract

This article is an account of my 35 years in the Basel Chemical Industry, starting in 1976 as a young research chemist in the Central Research Laboratories of Ciba-Geigy until my retirement as Chief Scientific Officer of Solvias in 2011. In the first section, important aspects of industrial research are commented from my personal point of view with particular emphasis on the importance of team work and the situation of catalysis in the (Swiss) fine chemicals industry. In the next sections, the three most important areas of catalytic research are described where my colleagues and I could not only solve specific Ciba-Geigy / Novartis / Solvias problems, but also developed industrially relevant, generally applicable catalytic methodologies and contributed to the understanding of these complex catalytic transformations: i) Catalytic C-C and C-N coupling catalysis where we developed highly efficient catalysts for the Heck, Suzuki, Buchwald-Hartwig reactions; ii) Hydrogenations using modified heterogeneous catalysts, especially the chemoselective reduction of functionalized nitro arenes and the enantioselective hydrogenation of substituted ketones using Pt catalysts modified with chinchona alkaloids where mechanistic studies led to a working understanding of this fascinating reaction; iii) Enantioselective homogeneous hydrogenation and chiral ligands. The process development for the production of (S)-metolachlor, an important herbicide via an iridium-Josiphos catalyzed C=N hydrogenation is described in some detail, followed by a brief description how the Solvias Ligand Portfolio was developed.

摘要

本文讲述了我在巴塞尔化工行业的35年经历,始于1976年,当时我是汽巴 - 嘉基公司中央研究实验室的一名年轻研究化学家,直至2011年我从索尔维雅公司首席科学官的职位上退休。在第一部分,我从个人角度对工业研究的重要方面进行了评论,特别强调了团队合作的重要性以及(瑞士)精细化工行业中催化作用的情况。在接下来的部分中,描述了催化研究的三个最重要领域,在这些领域中,我和我的同事不仅解决了汽巴 - 嘉基/诺华/索尔维雅公司的特定问题,还开发了具有工业相关性、普遍适用的催化方法,并有助于理解这些复杂的催化转化:i)催化C - C和C - N偶联催化,我们为Heck反应、Suzuki反应、Buchwald - Hartwig反应开发了高效催化剂;ii)使用改性多相催化剂的氢化反应,特别是官能化硝基芳烃的化学选择性还原以及使用金鸡纳生物碱改性的Pt催化剂对取代酮的对映选择性氢化反应,机理研究使我们对这个迷人的反应有了实际的理解;iii)对映选择性均相氢化反应和手性配体。详细描述了通过铱 - Josiphos催化的C = N氢化反应生产重要除草剂(S)-异丙甲草胺的工艺开发,随后简要介绍了索尔维雅配体组合是如何开发的。

相似文献

1
Looking Back on 35 Years of Industrial Catalysis.回顾工业催化的35年
Chimia (Aarau). 2015 Aug 19;69(7):393-406. doi: 10.2533/chimia.2015.393.
2
Looking Back on 35 Years of Industrial Catalysis.回顾工业催化35年
Chimia (Aarau). 2015;69(7-8):393-406. doi: 10.2533/chimia.2015.393.
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Developing catalysts and catalytic processes with industrial relevance.开发具有工业相关性的催化剂和催化工艺。
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Iron-, Cobalt-, and Nickel-Catalyzed Asymmetric Transfer Hydrogenation and Asymmetric Hydrogenation of Ketones.铁、钴和镍催化的不对称转移氢化和酮的不对称氢化。
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Asymmetric hydrogenation in the core of dendrimers.树枝状大分子核心的不对称氢化。
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Chiral diphosphine and monodentate phosphorus ligands on a spiro scaffold for transition-metal-catalyzed asymmetric reactions.用于过渡金属催化不对称反应的螺环骨架上的手性双膦和单齿磷配体
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