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High-resolution heteronuclear correlation spectra between 31P and 27Al in microporous aluminophosphates
C Fernande1, C Morais, J Rocha
1Laboratoire Catalyse et Spectrochimie (CNRS UMR 6506), ISMRA/Université de Caen, France. christian.fernandez@ismra.fr
Abstract:
A solid-state nuclear magnetic resonance (NMR) experiment, which provides high-resolution two-dimensional heteronuclear correlation (HETCOR) spectra between 27Al and 31P, is described. The first part of the experiment uses triple-quantum or quintuple-quantum magic-angle spinning (MQMAS) NMR of spin-5/2 nuclei (27Al) to produce an isotropic echo that is unaffected by the second-order quadrupolar broadening. The magnetization is then transferred to the spin-1/2 (31P) nuclei via cross-polarization (CP), resulting in isotropic resolution in both spectral dimensions. To illustrate its usefulness, this method (referred to as MQHETCOR) is applied to two important microporous framework aluminophosphates, hydrated VPI-5 and AIPO4-40.