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Updated: Feb 11, 2026

Synthesis of Bimetallic Pt/Sn-based Nanoparticles in Ionic Liquids
Published on: August 23, 2018
On the measurement of intermolecular heteronuclear cross relaxation rates in ionic liquids
Pierre-Alexandre Martin1, Elodie Salager2, Maria Forsyth3
1CEMHTI, CNRS UPR 3079, Université d'Orléans, F45071 Orléans, France. michael.deschamps@univ-orleans.fr and Institute for Frontier Materials, Deakin University, Geelong, Victoria 3220, Australia. luke.odell@deakin.edu.au.
Abstract:
The HOESY (Heteronuclear Overhauser Effect SpectroscopY) NMR experiment is commonly used to study interactions and structuring in ionic liquids (ILs) via the measurement of the cross relaxation rate σ between two spins. In the intermolecular case, σ is proportional to r-n, where r is the internuclear distance and n can vary between 1 and 6 depending on the frequency of the nuclei and their dynamics, thus σ can potentially provide detailed information on the liquid phase structure. However, in HOESY studies of ILs only relative values for σ are typically reported, making comparisons between different samples difficult. Herein we discuss the quantitative measurement of intermolecular cross relaxation rates based on the normalisation of HOESY signal intensities to the nuclear Boltzmann polarisation, demonstrated for 7Li-1H spin pairs in a lithium-containing pyrrolidinum-based ionic liquid electrolyte. We also use a simple model based on diffusing hard spheres for interpreting these quantities in terms of a distance of closest approach.
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