Literature DB >> 19296659

Ru(II) catalysts supported by hydridotris(pyrazolyl)borate for the hydroarylation of olefins: reaction scope, mechanistic studies, and guides for the development of improved catalysts.

Nicholas A Foley1, John P Lee, Zhuofeng Ke, T Brent Gunnoe, Thomas R Cundari.   

Abstract

Carbon-carbon bond formation is the central method by which synthetic chemists add complexity, which often represents value, to molecules. Uniting a carbon chain with an aromatic substrate to yield an alkyl arene product is thus a molecular means of creating value-added materials. A traditional method for generating alkyl arenes is Friedel-Crafts catalysis, in which an alkyl halide or olefin is activated to react with an aromatic substrate. Unfortunately, despite the development of new generations of solid-state catalysts, the reaction often requires relatively harsh conditions and frequently gives poor to moderate selectivity. Conversely, a halide can first be incorporated into the aromatic ring, and the aryl halide can subsequently be joined by a variety of catalytic coupling techniques. But generating the aryl halide itself can be problematic, and such methods typically are not atom-economical. The addition of aromatic C-H bonds across the C-C double bonds of olefins (olefin hydroarylation) is therefore an attractive alternative in the preparation of alkyl arenes. Despite the dominance and practical advantages of heterogeneous catalysts in industrial synthesis, homogeneous systems can offer an enhanced ability to fine-tune catalyst activity. As such, well-defined homogeneous catalysts for the hydroarylation of olefins provide a potentially promising avenue to address issues of selectivity, including the production of monoalkylated arene products and the control of linear-to-branched ratios for synthesis of long-chain alkyl arenes, and provide access to more ambient reaction conditions. However, examples of homogeneous catalysts that are active for the conversion of unactivated aromatic and olefin substrates to alkyl arene products that function via metal-mediated C-H activation pathways are limited. In this Account, we present results from research aimed at the development of Ru(II) catalysts supported by the hydridotris(pyrazolyl)borate (Tp) ligand for the addition of aromatic C-H bonds across olefins. On the basis of detailed mechanistic studies with TpRu(L)(NCMe)R catalysts, in which the neutral ancillary ligand L is varied, we have arrived at guidelines for the development of improved catalysts that are based on the octahedral-d6 motif.

Entities:  

Year:  2009        PMID: 19296659     DOI: 10.1021/ar800183j

Source DB:  PubMed          Journal:  Acc Chem Res        ISSN: 0001-4842            Impact factor:   22.384


  10 in total

1.  Palladium-catalyzed hydrofunctionalization of vinyl phenol derivatives with heteroaromatics.

Authors:  Tejas P Pathak; Matthew S Sigman
Journal:  Org Lett       Date:  2011-04-21       Impact factor: 6.005

2.  A tethering directing group strategy for ruthenium-catalyzed intramolecular alkene hydroarylation.

Authors:  Praveen Kilaru; Sunil P Acharya; Pinjing Zhao
Journal:  Chem Commun (Camb)       Date:  2018-01-23       Impact factor: 6.222

3.  Rh-Catalyzed decarbonylative coupling with alkynes via C-C activation of isatins.

Authors:  Rong Zeng; Guangbin Dong
Journal:  J Am Chem Soc       Date:  2015-01-15       Impact factor: 15.419

4.  Scope and Mechanistic Study of the Coupling Reaction of α, β-Unsaturated Carbonyl Compounds with Alkenes: Uncovering Electronic Effects on Alkene Insertion vs Oxidative Coupling Pathways.

Authors:  Ki-Hyeok Kwon; Do W Lee; Chae S Yi
Journal:  Organometallics       Date:  2012-01-09       Impact factor: 3.876

5.  Catalytic dehydroaromatization of n-alkanes by pincer-ligated iridium complexes.

Authors:  Ritu Ahuja; Benudhar Punji; Michael Findlater; Carolyn Supplee; William Schinski; Maurice Brookhart; Alan S Goldman
Journal:  Nat Chem       Date:  2010-12-19       Impact factor: 24.427

6.  Efficient Benzimidazolidinone Synthesis via Rhodium-Catalyzed Double-Decarbonylative C-C Activation/Cycloaddition between Isatins and Isocyanates.

Authors:  Rong Zeng; Peng-Hao Chen; Guangbin Dong
Journal:  ACS Catal       Date:  2015-12-30       Impact factor: 13.084

7.  Metal-free hydroarylation of the side chain carbon-carbon double bond of 5-(2-arylethenyl)-3-aryl-1,2,4-oxadiazoles in triflic acid.

Authors:  Anna S Zalivatskaya; Dmitry S Ryabukhin; Marina V Tarasenko; Alexander Yu Ivanov; Irina A Boyarskaya; Elena V Grinenko; Ludmila V Osetrova; Eugeniy R Kofanov; Aleksander V Vasilyev
Journal:  Beilstein J Org Chem       Date:  2017-05-11       Impact factor: 2.883

8.  Controlling cyclization pathways in palladium(ii)-catalyzed intramolecular alkene hydro-functionalization via substrate directivity.

Authors:  Xin Wang; Zi-Qi Li; Binh Khanh Mai; John A Gurak; Jessica E Xu; Van T Tran; Hui-Qi Ni; Zhen Liu; Zhonglin Liu; Kin S Yang; Rong Xiang; Peng Liu; Keary M Engle
Journal:  Chem Sci       Date:  2020-09-22       Impact factor: 9.825

9.  Nickel-catalysed anti-Markovnikov hydroarylation of unactivated alkenes with unactivated arenes facilitated by non-covalent interactions.

Authors:  Noam I Saper; Akito Ohgi; David W Small; Kazuhiko Semba; Yoshiaki Nakao; John F Hartwig
Journal:  Nat Chem       Date:  2020-02-10       Impact factor: 24.427

10.  Hydroarylation of olefins catalysed by a dimeric ytterbium(II) alkyl.

Authors:  Georgia M Richardson; Iskander Douair; Scott A Cameron; Joe Bracegirdle; Robert A Keyzers; Michael S Hill; Laurent Maron; Mathew D Anker
Journal:  Nat Commun       Date:  2021-05-25       Impact factor: 14.919

  10 in total

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