Computing the 7Li NMR chemical shielding of hydrated Li+ using cluster calculations and time-averaged configurations from ab initio molecular dynamics simulations
- 24 June 2011
- journal article
- research article
- Published by Royal Society of Chemistry (RSC) in Physical Chemistry Chemical Physics
- Vol. 13 (30), 13629-13637
- https://doi.org/10.1039/c1cp20967a
Abstract
Ab initio molecular dynamics (AIMD) simulations have been used to predict the time-averaged Li NMR chemical shielding for a Li+ solution. These results are compared to NMR shielding calculations on smaller Li+(H2O)n clusters optimized in either the gas phase or with a polarizable continuum model (PCM) solvent. The trends introduced by the PCM solvent are described and compared to the time-averaged chemical shielding observed in the AIMD simulations where large explicit water clusters hydrating the Li+ are employed. Different inner- and outer-coordination sphere contributions to the Li NMR shielding are evaluated and discussed. It is demonstrated an implicit PCM solvent is not sufficient to correctly model the Li shielding, and that explicit inner hydration sphere waters are required during the NMR calculations. It is also shown that for hydrated Li+, the time averaged chemical shielding cannot be simply described by the population-weighted average of coordination environments containing different number of waters.This publication has 36 references indexed in Scilit:
- Solid-state Li NMR with applications to the translational dynamics in ion conductorsProgress in Nuclear Magnetic Resonance Spectroscopy, 2007
- First Principles and Experimental 1H NMR Signatures of Solvated Ions: The Case of HCl(aq)Chemphyschem, 2006
- Quantum Mechanical Continuum Solvation ModelsChemical Reviews, 2005
- 6Li, 7Li nuclear magnetic resonance investigation of lithium coordination in binary phosphate glassesJournal of Non-Crystalline Solids, 1999
- Quadrupole Relaxation of the 7 Li + Ion in Dilute Aqueous Solution Determined by Experimental and Theoretical MethodsJournal of Molecular Modeling, 1996
- Solvent Effect on the NMR Chemical Shieldings in Water Calculated by a Combination of Molecular Dynamics and Density Functional TheoryChemistry – A European Journal, 1996
- Calculations of 14N and 2H Nuclear Quadrupolar Coupling Constants for Liquid AmmoniaZeitschrift für Naturforschung A, 1995
- The Bicyclic Structure of a Novel TMEDA-Solvated Lithium Chloride Tetramer [(LiCl)4.cntdot.3.5TMEDA]2: X-ray Structural Analysis and MO InvestigationsInorganic Chemistry, 1995
- A study of NMR chemical shielding in water clusters derived from molecular dynamics simulationsJournal of Molecular Structure: THEOCHEM, 1994
- Ab initio calculation of the equilibrium geometry and the 13C, 17O, 23Na and 7Li NMR shielding tensors of the systems Na+/CO and Li+/COChemical Physics Letters, 1983