Issue 7, 2023

Quantitative analysis of steric effects on the regioselectivity of the Larock heteroannulation reaction

Abstract

Alkylphenylacetylene derivatives were synthesized and used as reactants in the Larock heteroannulation reaction to investigate the steric influence on regioselectivity. Large alkyl groups preferentially yielded 2-alkyl-3-phenylindole products, while smaller alkyl groups provided 3-alkyl-2-phenylindole as major products. The logarithm of regioisomeric product ratios exhibited good correlations with various steric parameters. Notably, the Charton values provided the best correlation when excluding the cyclopropyl group. In addition, the Boltzmann-weighted Sterimol parameter (wSterimol) was utilized to generate a good predictive model, indicating the B1 wSterimol as the significant regiochemical determining parameter with no obvious deviation for the cyclopropyl group. Relative atomic distances within the DFT-optimized transition state structures revealed good correlations with the logarithm of regioisomeric ratios. Furthermore, the cyclopropyl adsorption complex indicated electronic contribution, explaining the peculiar behavior of this substituent in the experimental observation.

Graphical abstract: Quantitative analysis of steric effects on the regioselectivity of the Larock heteroannulation reaction

Supplementary files

Article information

Article type
Paper
Submitted
15 Nov 2022
Accepted
17 Jan 2023
First published
17 Jan 2023

Org. Biomol. Chem., 2023,21, 1501-1513

Quantitative analysis of steric effects on the regioselectivity of the Larock heteroannulation reaction

P. Thangsan, T. Rukkijakan, B. Thanaussavadate, K. Yiamsawat, J. Sirijaraensre, K. P. Gable and P. Chuawong, Org. Biomol. Chem., 2023, 21, 1501 DOI: 10.1039/D2OB02089K

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