| Literature DB >> 26088063 |
Ivo Leito1, Ilmar A Koppel2, Ivar Koppel3, Karl Kaupmees4, Sofja Tshepelevitsh4, Jaan Saame4.
Abstract
The potential limits of superbasicity achievable with different families of neutral bases by expanding the molecular framework are explored using DFT computations. A number of different core structures of non-ionic organosuperbases are considered (such as phosphazenes, guanidinophosphazenes, guanidino phosphorus ylides). A simple model for describing the dependence of basicity on the extent of the molecular framework is proposed, validated, and used for quantitatively predicting the ultimate basicities of different compound families and the rates of substituent effect saturation. Some of the considered bases (guanidino phosphorus carbenes) are expected to reach gas-phase basicity around 370 kcal mol(-1), thus being the most basic neutral bases ever reported. Also, the classical substituted alkylphosphazenes were predicted to reach pK(a) values of around 50 in acetonitrile, which is significantly higher than previously expected.Entities:
Keywords: Brønsted superbases; carbenes; density functional calculations; phosphazenes; phosphorus ylides
Year: 2015 PMID: 26088063 DOI: 10.1002/anie.201503345
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336