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Influence of structural factors on 29Si and 27Al NMR chemical shifts of phyllosilicates 2:1
Authors:J. Sanz  J. -L. Robert
Affiliation:1. Instituto de Ciencia de Materiales, CSIC, c/Serrano 115 dpdo, 28006, Madrid, Spain
2. Centre de Recherches sur la Synthèse et la Chimie des Minéraux, CNRS, 1A Rue de la Férollerie, F-45071, Orléans Cedex 2, France
Abstract:The 29Si and 27Al nuclear magnetic resonance (NMR) analysis of synthetic trioctahedral phyllosilicates 2:1, with tetrahedral ratios AlT/(Si + AlT) ranging from 0 to 0.5, has shown that the ditrigonal distortion of tetrahedral rings (angle agr) is the main factor controlling chemical shift values of tetrahedral components in both signals. The increase of ditrigonal rotation angle shifts these components towards more positive values. For each sample, the composition of tetrahedral and octahedral sheets determine the value of agr, and from this parameter, the mean tetrahedral Tot angle and the chemical shift values of components are deduced. For a given environment, variations on ditrigonal angle are responsibles for the observed evolution of chemical shift values with bulk composition. The comparative analysis of micas and saponite samples has demonstrated that the location of compensating charge (interlayer and octahedral sheet) does not affect chemical shift values.
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