Steric effects on alkyl cation affinities of maingroup-element hydrides

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Abstract

We have carried out an extensive exploration of gas-phase alkyl cation affinities (ACA) of archetypal anionic and neutral bases across the periodic system using zeroth order regular approximation-relativistic density functional theory at BP86/QZ4P//BP86/TZ2P. ACA values were computed for the methyl, ethyl, i-propyl and t-butyl cations and compared with the corresponding proton affinities (PA). One purpose of this work is to provide an intrinsically consistent set of values of the 298 K ACA of all anionic (XHân-1-) and neutral bases (XHn) constituted by maingroup-element hydrides of groups 14-17 and the noble gases (group 18) along the periods 1-6. Another purpose is to determine and rationalize the trend in affinity for a cation as the latter varies from proton to t-butyl cation. This undertaking is supported by quantitative bond energy decomposition analyses. Correlations are established between PA and ACA values. © 2010 Wiley Periodicals, Inc.

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Ruiz, J. M., Mulder, R. J., Guerra, C. F., & Bickelhaupt, F. M. (2011). Steric effects on alkyl cation affinities of maingroup-element hydrides. Journal of Computational Chemistry, 32(4), 681–688. https://doi.org/10.1002/jcc.21673

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