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1.
J Org Chem ; 85(21): 13453-13465, 2020 11 06.
Article in English | MEDLINE | ID: mdl-33085490

ABSTRACT

The functionalization of azulenes via reaction with cationic η5-iron carbonyl diene complexes under mild reaction conditions is demonstrated. A range of azulenes, including derivatives of naturally occurring guaiazulene, were investigated in reactions with three electrophilic iron complexes of varying electronic properties, affording the desired coupling products in 43-98% yield. The products were examined with UV-vis/fluorescence spectroscopy and showed interesting halochromic properties. Decomplexation and further derivatization of the products provide access to several different classes of 1-substituted azulenes, including a conjugated ketone and a fused tetracycle.

2.
Chem Commun (Camb) ; 57(53): 6518-6521, 2021 Jul 01.
Article in English | MEDLINE | ID: mdl-34105551

ABSTRACT

A palladium-catalyzed domino arylation-cyclization of biocatalytically derived cyclic 1,3-dienes is demonstrated. The reaction introduces a high degree of structural complexity in a single step, giving access to tricyclic tetrahydrofluorenones with full regio- and stereoselectivity. The transformation proceeds through a novel acylation-terminated Heck-type sequence, and quantum chemical calculations indicate that C-H activation is involved in the terminating acylation step.

3.
Org Lett ; 22(6): 2464-2469, 2020 03 20.
Article in English | MEDLINE | ID: mdl-32150420

ABSTRACT

Microbial arene oxidation of benzoic acid with Ralstonia eutropha B9 provides a chiral highly functionalized cyclohexadiene, suitable for further structural diversification. Subjecting this scaffold to a Pd-catalyzed Heck reaction effects a regio- and stereoselective arylation of the cyclohexadiene ring, with 1,3-chirality transfer of stereogenic information installed in the microbial arene oxidation. Quantum chemical calculations explain the selectivity both by a kinetic preference for the observed arylation position and by reversible carbopalladation in competing positions. Further product transformation allowed the formation of a tricyclic ketone possessing four stereogenic centers. This demonstrates the capability of the method to introduce stereochemical complexity from planar nonchiral benzoic acid in just a few steps.


Subject(s)
Cupriavidus necator/metabolism , Cyclohexenes/chemical synthesis , Palladium/chemistry , Benzoates/chemistry , Catalysis , Cupriavidus necator/chemistry , Iodobenzenes/chemistry , Oxidation-Reduction , Stereoisomerism
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