4.7 Article

General Approach for Preparation of Polymer-Supported Chiral Organocatalysts via Acrylic Copolymerization

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JOURNAL OF ORGANIC CHEMISTRY
卷 75, 期 5, 页码 1620-1629

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AMER CHEMICAL SOC
DOI: 10.1021/jo902585j

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  1. Birkeland Innovasjon
  2. Technology Transfer office of the University of Oslo

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Polymer-supported chiral organocatalysts, as well as most other forms of immobilized catalysts! arc traditionally prepared by a postmodification approach where modified catalyst precursors are anchored onto prefabricated polymer beads. Herein, we report an alternative and more scalable approach where polymer-supported chiral enamine and iminium organocatalysts are prepared in a bottom-up fashion where methacrylic functional monomers are prepared in an entirely nonchromatographic manner and subsequently copolymerized with suitable comonomers to give cross-linked polymer beads. All syntheses have been conducted on multigram scale for all intermediates and finished polymer products, and the catalysts have proven successful in reactions taking place in solvents spanning a wide range of solvent polarity. While polymer-supported proline and proline-amides generally demonstrated excellent results and recycling robustness in asymmetric aldol reactions or ketones and benzaldehydes, the simplest type of Jorgensen/Hayashi diarylprolinol TMS-ether showed excellent selectivity, but rather sluggish reactivity in the Enders-type asymmetric cascade. The polymer-supported version of the first-generation MacMillan imidazolidinone had a pattern of reactivity very similar to that of the monomeric catalyst, but is too unstable to allow recycling.

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