Literature DB >> 29099591

Decomposition of Olefin Metathesis Catalysts by Brønsted Base: Metallacyclobutane Deprotonation as a Primary Deactivating Event.

Gwendolyn A Bailey1, Justin A M Lummiss1, Marco Foscato2, Giovanni Occhipinti2, Robert McDonald3, Vidar R Jensen2, Deryn E Fogg1.   

Abstract

Brønsted bases of widely varying strength are shown to decompose the metathesis-active Ru intermediates formed by the second-generation Hoveyda and Grubbs catalysts. Major products, in addition to propenes, are base·HCl and olefin-bound, cyclometalated dimers [RuCl(κ2-H2IMes-H)(H2C═CHR)]2 Ru-3. These are generated in ca. 90% yield on metathesis of methyl acrylate, styrene, or ethylene in the presence of either DBU, or enolates formed by nucleophilic attack of PCy3 on methyl acrylate. They also form, in lower proportions, on metathesis in the presence of the weaker base NEt3. Labeling studies reveal that the initial site of catalyst deprotonation is not the H2IMes ligand, as the cyclometalated structure of Ru-3 might suggest, but the metallacyclobutane (MCB) ring. Computational analysis supports the unexpected acidity of the MCB protons, even for the unsubstituted ring, and by implication, its overlooked role in decomposition of Ru metathesis catalysts.

Entities:  

Year:  2017        PMID: 29099591     DOI: 10.1021/jacs.7b08578

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  7 in total

1.  The Janus face of high trans-effect carbenes in olefin metathesis: gateway to both productivity and decomposition.

Authors:  Giovanni Occhipinti; Daniel L Nascimento; Marco Foscato; Deryn E Fogg; Vidar R Jensen
Journal:  Chem Sci       Date:  2022-03-22       Impact factor: 9.969

2.  Homogeneous and Functional Group Tolerant Ring-Closing Metathesis for DNA-Encoded Chemical Libraries.

Authors:  Olivier B C Monty; Pranavanand Nyshadham; Kurt M Bohren; Murugesan Palaniappan; Martin M Matzuk; Damian W Young; Nicholas Simmons
Journal:  ACS Comb Sci       Date:  2020-01-21       Impact factor: 3.784

3.  4-Methyltetrahydropyran as a Convenient Alternative Solvent for Olefin Metathesis Reaction: Model Studies and Medicinal Chemistry Applications.

Authors:  Tomasz Nienałtowski; Paweł Krzesiński; Marcel E Baumert; Aleksandra Skoczeń; Ewa Suska-Kauf; Jolanta Pawłowska; Anna Kajetanowicz; Karol Grela
Journal:  ACS Sustain Chem Eng       Date:  2020-11-25       Impact factor: 8.198

4.  Testing enabling techniques for olefin metathesis reactions of lipophilic substrates in water as a diluent.

Authors:  Agata Tyszka-Gumkowska; Vishal B Purohit; Tomasz Nienałtowski; Michał Dąbrowski; Anna Kajetanowicz; Karol Grela
Journal:  iScience       Date:  2022-03-21

5.  Routes to High-Performing Ruthenium-Iodide Catalysts for Olefin Metathesis: Ligand Lability Is Key to Efficient Halide Exchange.

Authors:  Christian O Blanco; Daniel L Nascimento; Deryn E Fogg
Journal:  Organometallics       Date:  2021-06-16       Impact factor: 3.876

6.  It is Better with Salt: Aqueous Ring-Opening Metathesis Polymerization at Neutral pH.

Authors:  Jeffrey C Foster; Marcus C Grocott; Lucy A Arkinstall; Spyridon Varlas; McKenna J Redding; Scott M Grayson; Rachel K O'Reilly
Journal:  J Am Chem Soc       Date:  2020-08-03       Impact factor: 15.419

7.  Efficient [(NHC)Au(NTf2)]-catalyzed hydrohydrazidation of terminal and internal alkynes.

Authors:  Maximillian Heidrich; Herbert Plenio
Journal:  Beilstein J Org Chem       Date:  2020-08-26       Impact factor: 2.883

  7 in total

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