| Literature DB >> 31183071 |
Sangjune Park1, Nathan J Adamson1, Steven J Malcolmson1.
Abstract
We describe the development of Pd-PHOX-catalysed enantioselective couplings of internal dienes with malononitrile and other activated C-pronucleophiles. Reactions are dramatically accelerated by the addition of Et3N·HBArF 4 as a Brønsted acid co-catalyst, enabling a suite of products bearing a variety of alkyl substituents at the stereogenic carbon to be prepared. A series of mechanism-oriented experiments reveal key aspects of the catalytic cycle and the importance of the non-coordinating BArF 4 counterion in not only promoting reactions of internal dienes but also additions of previously unreactive nucleophiles towards terminal dienes.Entities:
Year: 2019 PMID: 31183071 PMCID: PMC6524568 DOI: 10.1039/c9sc00633h
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Scheme 1Catalytic enantioselective additions of enols/enolates to olefins.
Reaction optimization for diene–malononitrile coupling
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Reaction under N2 with 0.2 mmol malononitrile in 0.2 mL Et2O. 1a used as a 1.8 : 1 E,Z : E,E mixture of stereoisomers. See the ESI for experimental details.
Isolated yield of purified product.
Determined by HPLC analysis of purified 2.
Reaction with 5 mol% Pd-1.
Internal diene scope for malononitrile additions
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Reaction under N2 with 0.2 mmol malononitrile in 0.2 mL Et2O. Dienes were used as a mixture of stereoisomers (1.1 : 1 to 4.2 : 1 E,Z : E,E). See the ESI for experimental details.
Isolated yield of purified product.
Determined by HPLC analysis of purified 2.
Pronucleophile scope for internal diene addition reactions , ,
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Reaction under N2 with 0.2 mmol pronucleophile in 0.2 mL Et2O. 1a used as a 1.8:1 E,Z : E,E mixture of stereoisomers.
Isolated yield of purified product.
er determined by HPLC analysis of purified 5.
Isolated yield of the isomeric mixture; er not determined.
Scheme 2Synthesis of α-alkenyl carbonyls from the malononitrile group.
Scheme 4Comparison of reactivity of diene diastereomers; conditions: Pd-1 (7 mol%), Et3N·HBArF4 (7 mol%), Et3N (300 mol%), Et2O, 22 °C, 1 h.
Scheme 3Proposed mechanism of malononitrile addition to internal dienes.
Scheme 5Deuterium labelling studies with deuterated methylmalononitrile
Scheme 6Curtin–Hammett kinetics likely operative in internal diene–enolate couplings and responsible for the observed regio- and enantioselectivity.
Scheme 7Addition of dimethyl malonate to phenylbutadiene with Pd-1.
Scheme 8Meldrum's acid addition to phenylbutadiene with Pd–PHOX catalysts bearing different counteranions.