The advantages and drawbacks of various techniques that utilize multiple quantum magic angle spinning (MQMAS) NMR for studying molecular sieves and related materials are reviewed. The techniques include z-filtered MQMAS with rotor synchronization, MQMAS with cross-polarization and MQMAS with REDOR.
2D multiquantum MAS-NMR spectroscopy of 27Al in aluminophosphate molecular sieves
β Scribed by C. Fernandez; J.P. Amoureux
- Publisher
- Elsevier Science
- Year
- 1995
- Tongue
- English
- Weight
- 404 KB
- Volume
- 242
- Category
- Article
- ISSN
- 0009-2614
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β¦ Synopsis
Two-dimensional multiquantum MAS-NMR spectroscopy (2D-MQ) has been applied to the discrimination of the different 27A1 sites in several aluminophosphate molecular sieves. It is shown that a new quintuple-quantum MAS-NMR method (2D-5Q) gives an extraordinary improved resolution compared to the DOR or DAS technique. The pure-absorption 2D spectra allow the direct determination of the number of different species, the correct determination of their actual chemical shifts and quadrupolar parameters. In addition, the method gives incomparable information about the distributions of both the chemical shifts and quadrupolar coupling constants. These findings are demonstrated by the experimental spectra of the ALPO-11 and VPI-5 aluminophosphate molecular sieves.
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