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1.
J Am Chem Soc ; 144(42): 19231-19237, 2022 10 26.
Article in English | MEDLINE | ID: mdl-36195082

ABSTRACT

The enantioselective synthesis of bis-homoallylic alcohols through nickel-catalyzed three-component fragment couplings of simple aldehydes, dienes, and aryl organoborons is disclosed. The reactions proceed through diene dicarbofunctionalization that concurrently forms two C-C bonds and two stereogenic centers. The transformations are promoted by a 5.0 mol % loading of a readily accessible chiral phosphine-nickel complex and afford products with high stereoselectivity.


Subject(s)
Aldehydes , Nickel , Aldehydes/chemistry , Nickel/chemistry , Stereoisomerism , Catalysis , Alcohols/chemistry , Polyenes
2.
Angew Chem Int Ed Engl ; 59(33): 14070-14075, 2020 08 10.
Article in English | MEDLINE | ID: mdl-32374502

ABSTRACT

A catalytic method for the site-selective and enantioselective synthesis of functionalized arenes by the intermolecular hydroarylation of terminal and internal 1,3-dienes with aryl pinacolato boronates is reported. The reactions are promoted by 5.0 mol % of a readily available monodentate phosphoramidite-Ni complex in ethanol, affording a variety of enantioenriched products in up to 96 % yield and 99:1 er. Mechanistic studies indicate that Ni-allyl formation is irreversible and related to the nature of the arylboronate.

3.
J Am Chem Soc ; 139(44): 15580-15583, 2017 11 08.
Article in English | MEDLINE | ID: mdl-29058881

ABSTRACT

Catalytic enantioselective addition of N-heteroarenes to terminal and internal 1,3-dienes is reported. Reactions are promoted by 5 mol % of Rh catalyst supported by a new chiral pincer carbodicarbene ligand that delivers allylic substituted arenes in up to 95% yield and up to 98:2 er. Mechanistic and X-ray evidence is presented that supports that the reaction proceeds via a Rh(III)-η3-allyl.

4.
J Org Chem ; 81(17): 7963-9, 2016 09 02.
Article in English | MEDLINE | ID: mdl-27490146

ABSTRACT

The copper-catalyzed etherification of ortho-borylated benzylic amines with phenols has been achieved to provide biaryl ethers that are prevalent in biologically active compounds. A variety of substitution patterns on the aryl boronate ester and the phenol are tolerated under the reaction conditions, providing moderate to high yields. A competition reaction between phenol and aniline revealed condition-dependent selectivity in which the phenol could be highly favored over the aniline.

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