Publication Type Journal Article
Title Density Functional Theory Study of the Metal-Catalyzed Cycloaddition of Indolyl-Allenes: Possible Reaction Pathways, Stereoselectivity, and Regioselectivity
Authors Ran Fang Zhitao Feng A Kirillov Lizi Yang
Groups BioMol
Journal ORGANOMETALLICS
Year 2020
Month May
Volume 39
Number 10
Pages 1782-1789
Abstract The mechanism, stereoselectivity, and regioselectivity in the Au- and Pt-catalyzed cycloadditions of indolyl-allenes were explored by density functional theory (DFT). Three different catalytic systems, PtCl2, [JohnPhosAu](+), and [IPrAu](+), were selected as model catalysts. The DFT calculations revealed that the [JohnPhosAu](+) catalyst features a reaction pathway completely different from those of the PtCl2 and [IPrAu](+) catalytic systems. The PtCl2-catalyzed process preferably begins with cis coordination and leads to the R configuration products via cis [3+2] cycloaddition. Furthermore, the stereoselectivity of the indolyl-allenes is mainly controlled by the interaction energy. In the [JohnPhosAu](+)-catalyzed process, a relatively lower distortion energy, observed for the new reaction pathway proposed by our DFT calculations, enables the formation of the S configuration products through the trans [3+2] cycloaddition step that becomes the principal pathway. On the other hand, the electronic properties of the substituent in the substrate have a combined influence on the selective formation of different products in the [IPrAu](+)catalyzed reactions. The obtained theoretical data explain well the formation of different products when using these three distinct catalytic systems and provide a theoretical foundation for selecting an optimal catalyst in such cycloaddition reactions of indolyl-allenes.
DOI http://dx.doi.org/10.1021/acs.organomet.0c00080
ISBN
Publisher
Book Title
ISSN 0276-7333
EISSN 1520-6041
Conference Name
Bibtex ID ISI:000537685700015
Observations
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