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1.
Org Lett ; 22(19): 7518-7521, 2020 10 02.
Article in English | MEDLINE | ID: mdl-32942861

ABSTRACT

Seven-membered-ring trans-alkenes undergo rapid hydro- and carboalumination reactions in the absence of a catalyst with complete regio- and diastereoselectivity. Control experiments, including deuterium labeling, adding radical inhibitors, and using a radical clock, suggest that these reactions proceed by a concerted mechanism. The products of the reaction possess a new carbon-aluminum bond that can then undergo subsequent transformations, particularly oxidation, providing functionalized products as single stereoisomers.


Subject(s)
Aluminum/chemistry , Cycloparaffins/chemistry , Catalysis , Cyclization , Molecular Structure , Oxidation-Reduction , Stereoisomerism
2.
J Am Chem Soc ; 141(14): 5835-5855, 2019 04 10.
Article in English | MEDLINE | ID: mdl-30866626

ABSTRACT

Ni-catalyzed C(sp3)-O bond activation provides a useful approach to synthesize enantioenriched products from readily available enantioenriched benzylic alcohol derivatives. The control of stereospecificity is key to the success of these transformations. To elucidate the reversed stereospecificity and chemoselectivity of Ni-catalyzed Kumada and cross-electrophile coupling reactions with benzylic ethers, a combined computational and experimental study is performed to reach a unified mechanistic understanding. Kumada coupling proceeds via a classic cross-coupling mechanism. Initial rate-determining oxidative addition occurs with stereoinversion of the benzylic stereogenic center. Subsequent transmetalation with the Grignard reagent and syn-reductive elimination produce the Kumada coupling product with overall stereoinversion at the benzylic position. The cross-electrophile coupling reaction initiates with the same benzylic C-O bond cleavage and transmetalation to form a common benzylnickel intermediate. However, the presence of the tethered alkyl chloride allows a facile intramolecular SN2 attack by the benzylnickel moiety. This step circumvents the competing Kumada coupling, leading to the excellent chemoselectivity of cross-electrophile coupling. These mechanisms account for the observed stereospecificity of the Kumada and cross-electrophile couplings, providing a rationale for double inversion of the benzylic stereogenic center in cross-electrophile coupling. The improved mechanistic understanding will enable design of stereoselective transformations involving Ni-catalyzed C(sp3)-O bond activation.


Subject(s)
Benzene/chemistry , Density Functional Theory , Ethers/chemistry , Nickel/chemistry , Catalysis , Models, Molecular , Molecular Conformation , Stereoisomerism
3.
J Am Chem Soc ; 135(9): 3303-6, 2013 Mar 06.
Article in English | MEDLINE | ID: mdl-23414579

ABSTRACT

Stereospecific coupling of benzylic carbamates and pivalates with aryl- and heteroarylboronic esters has been developed. The reaction proceeds with selective inversion or retention at the electrophilic carbon, depending on the nature of the ligand. Tricyclohexylphosphine ligand provides the product with retention, while an N-heterocyclic carbene ligand provides the product with inversion.


Subject(s)
Benzyl Compounds/chemistry , Boronic Acids/chemistry , Carbamates/chemistry , Esters/chemistry , Methane/chemical synthesis , Organometallic Compounds/chemistry , Catalysis , Methane/analogs & derivatives , Methane/chemistry , Molecular Structure , Nickel/chemistry , Stereoisomerism
4.
J Am Chem Soc ; 134(30): 12482-4, 2012 Aug 01.
Article in English | MEDLINE | ID: mdl-22780578

ABSTRACT

Silver-catalyzed silylene transfer to alkenes forms vinylsilacyclopropanes regioselectively. These allylic silanes undergo additions to aldehydes to form seven-membered-ring trans-alkenes with high diastereoselectivity. The high reactivity of the trans-alkenes is evidenced by their formal [1,3]-sigmatropic rearrangement reactions and the rapid additions of oxygen-hydrogen bonds across the carbon-carbon double bonds.


Subject(s)
Aldehydes/chemistry , Alkenes/chemical synthesis , Polyenes/chemistry , Silanes/chemistry , Aldehydes/chemical synthesis , Alkenes/chemistry , Catalysis , Polyenes/chemical synthesis , Silanes/chemical synthesis , Silver/chemistry , Stereoisomerism
5.
Org Lett ; 14(16): 4293-6, 2012 Aug 17.
Article in English | MEDLINE | ID: mdl-22568515

ABSTRACT

Stereospecific nickel-catalyzed cross-coupling reactions of benzylic 2-methoxyethyl ethers are reported for the preparation of enantioenriched 1,1-diarylethanes. The 2-methoxyethyl ether serves as a traceless directing group that accelerates cross-coupling. Chelation of magnesium ions is proposed to activate the benzylic C-O bond for oxidative addition.


Subject(s)
Benzene Derivatives/chemistry , Heterocyclic Compounds/chemical synthesis , Nickel/chemistry , Catalysis , Ethane/analogs & derivatives , Ethane/chemical synthesis , Ethane/chemistry , Heterocyclic Compounds/chemistry , Molecular Structure , Oxidation-Reduction
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