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27 Al NMR diffusometry of Al 13 Keggin nanoclusters

Authors :
Sue B. Clark
Trent R. Graham
Gregory K. Schenter
Xin Zhang
Kevin M. Rosso
Jaehun Chun
Carolyn I. Pearce
Source :
Magnetic Resonance in Chemistry. 60:226-238
Publication Year :
2021
Publisher :
Wiley, 2021.

Abstract

Although nanometer-sized aluminum hydroxide clusters (i.e., ϵ-Al13 , [Al13 O4 (OH)24 (H2 O)12 ]7+ ) command a central role in aluminum ion speciation and transformations between minerals, measurement of their translational diffusion is often limited to indirect methods. Here, 27 Al pulsed field gradient stimulated echo nuclear magnetic resonance (PFGSTE NMR) spectroscopy has been applied to the AlO4 core of the ϵ-Al13 cluster with complementary theoretical simulations of the diffusion coefficient and corresponding hydrodynamic radii from a boundary element-based calculation. The tetrahedral AlO4 center of the ϵ-Al13 cluster is symmetric and exhibits only weak quadrupolar coupling, which results in favorable T1 and T227 Al NMR relaxation coefficients for 27 Al PFGSTE NMR studies. Stokes-Einstein relationship was used to relate the 27 Al diffusion coefficient of the ϵ-Al13 cluster to the hydrodynamic radius for comparison with theoretical simulations, dynamic light scattering from literature, and previously published 1 H PFGSTE NMR studies of chelated Keggin clusters. This first-of-its-kind observation proves that 27 Al PFGSTE NMR diffusometry can probe symmetric Al environments in polynuclear clusters of greater molecular weight than previously considered.

Details

ISSN :
1097458X and 07491581
Volume :
60
Database :
OpenAIRE
Journal :
Magnetic Resonance in Chemistry
Accession number :
edsair.doi...........e86a8608bfb4077c7a7841c3feb5caca