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On the Performance of Second-Order Polarization Propagator Methods in the Calculation of 1 J FC and n J FH NMR Spin-Spin Coupling Constants.

Authors :
de Giovanetti M
Cormanich RA
Sauer SPA
Source :
Journal of chemical theory and computation [J Chem Theory Comput] 2024 Dec 10; Vol. 20 (23), pp. 10453-10467. Date of Electronic Publication: 2024 Nov 29.
Publication Year :
2024

Abstract

This study evaluates the performance of doubles-corrected random phase approximation (RPA) and higher random phase approximation (HRPA) approaches in predicting nuclear magnetic resonance (NMR) coupling constants involving fluorine. Their performance is benchmarked against experimental data and compared with that of higher-level theoretical methods, specifically second-order polarization propagator (SOPPA) and SOPPA(CCSD). Additionally, we discuss their performance relative to density functional theory (DFT). We find that RPA(D) is severely constrained by (near) triplet instabilities, while HRPA(D) demonstrates markedly improved stability. Statistical analysis reveals stronger patterns for carbon-fluorine couplings across the methods and systems investigated compared with fluorine-hydrogen couplings. While SOPPA-based methodologies prove to be superior in accuracy, HRPA(D) shows promising performance in reducing the computational burden of these calculations, albeit with a tendency to underestimate the coupling strength. These findings highlight the potential of HRPA(D) as a practical alternative to SOPPA methods, even for such difficult properties as NMR spin-spin coupling constants involving fluorine, emphasizing its role in improving predictive accuracy and efficiency across diverse chemical environments.

Details

Language :
English
ISSN :
1549-9626
Volume :
20
Issue :
23
Database :
MEDLINE
Journal :
Journal of chemical theory and computation
Publication Type :
Academic Journal
Accession number :
39611783
Full Text :
https://doi.org/10.1021/acs.jctc.4c01043