Literature DB >> 21612200

Mechanistic aspects of bond activation with perfluoroarylboranes.

Warren E Piers1, Adam J V Marwitz, Lauren G Mercier.   

Abstract

In the mid-1990s, it was discovered that tris(pentafluorophenyl)borane, B(C(6)F(5))(3), was an effective catalyst for hydrosilylation of a variety of carbonyl and imine functions. Mechanistic studies revealed a counterintuitive path in which the function of the borane was to activate the silane rather than the organic substrate. This was the first example of what has come to be known as "frustrated Lewis pair" chemistry utilizing this remarkable class of electrophilic boranes. Subsequent discoveries by the groups of Stephan and Erker showed that this could be extended to the activation of dihydrogen, initiating an intense period of activity in this area in the past 5 years. This article describes the early hydrosilylation chemistry and its subsequent applications to a variety of transformations of importance to organic and inorganic chemists, drawing parallels with the more recent hydrogen activation chemistry. Here, we emphasize the current understanding of the mechanism of this process rather than focusing on the many and emerging applications of hydrogen activation by fluoroarylborane-based frustrated Lewis pair systems.
© 2011 American Chemical Society

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Year:  2011        PMID: 21612200     DOI: 10.1021/ic2006474

Source DB:  PubMed          Journal:  Inorg Chem        ISSN: 0020-1669            Impact factor:   5.165


  20 in total

1.  Direct observation of a borane-silane complex involved in frustrated Lewis-pair-mediated hydrosilylations.

Authors:  Adrian Y Houghton; Juha Hurmalainen; Akseli Mansikkamäki; Warren E Piers; Heikki M Tuononen
Journal:  Nat Chem       Date:  2014-09-28       Impact factor: 24.427

2.  Formal SiH4 chemistry using stable and easy-to-handle surrogates.

Authors:  Antoine Simonneau; Martin Oestreich
Journal:  Nat Chem       Date:  2015-08-24       Impact factor: 24.427

3.  Late-stage chemoselective functional-group manipulation of bioactive natural products with super-electrophilic silylium ions.

Authors:  Trandon A Bender; Philippa R Payne; Michel R Gagné
Journal:  Nat Chem       Date:  2017-09-18       Impact factor: 24.427

4.  Lewis Base Activation of Lewis Acids - Group 13. In Situ Generation and Reaction of Borenium Ions.

Authors:  Scott E Denmark; Yusuke Ueki
Journal:  Organometallics       Date:  2013-11-25       Impact factor: 3.876

5.  Fluoride Migration Catalysis Enables Simple, Stereoselective, and Iterative Glycosylation.

Authors:  Girish C Sati; Joshua L Martin; Yishu Xu; Tanmay Malakar; Paul M Zimmerman; John Montgomery
Journal:  J Am Chem Soc       Date:  2020-04-01       Impact factor: 15.419

6.  Syntheses, Structures, and Complexation Studies of Tris(organostannyl)methane Derivatives.

Authors:  Anicet Siakam Wendji; Michael Lutter; Lukas M Stratmann; Klaus Jurkschat
Journal:  ChemistryOpen       Date:  2016-10-25       Impact factor: 2.911

Review 7.  The Influence of Ziegler-Natta and Metallocene Catalysts on Polyolefin Structure, Properties, and Processing Ability.

Authors:  Ahmad Shamiri; Mohammed H Chakrabarti; Shah Jahan; Mohd Azlan Hussain; Walter Kaminsky; Purushothaman V Aravind; Wageeh A Yehye
Journal:  Materials (Basel)       Date:  2014-07-09       Impact factor: 3.623

8.  N-Methyl-Benzothiazolium Salts as Carbon Lewis Acids for Si-H σ-Bond Activation and Catalytic (De)hydrosilylation.

Authors:  Valerio Fasano; James E Radcliffe; Liam D Curless; Michael J Ingleson
Journal:  Chemistry       Date:  2016-11-22       Impact factor: 5.236

9.  Fluorinated antimony(v) derivatives: strong Lewis acidic properties and application to the complexation of formaldehyde in aqueous solutions.

Authors:  Daniel Tofan; François P Gabbaï
Journal:  Chem Sci       Date:  2016-07-11       Impact factor: 9.825

10.  SET processes in Lewis acid-base reactions: the tritylation of N-heterocyclic carbenes.

Authors:  Zhaowen Dong; Cristian Pezzato; Andrzej Sienkiewicz; Rosario Scopelliti; Farzaneh Fadaei-Tirani; Kay Severin
Journal:  Chem Sci       Date:  2020-04-09       Impact factor: 9.825

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