Title | STRUCTURAL INVESTIGATIONS OF SAPO-37 MOLECULAR-SIEVE BY COHERENCE-TRANSFER AND DIPOLAR-DEPHASING SOLID-STATE NUCLEAR-MAGNETIC-RESONANCE EXPERIMENTS |
Publication Type | Journal Article |
Year of Publication | 1995 |
Authors | Fyfe, CA, Wongmoon, KC, Huang, Y, Grondey, H |
Journal | Microporous Materials |
Volume | 5 |
Pagination | 29-37 |
Date Published | Oct |
Type of Article | Article |
ISBN Number | 0927-6513 |
Keywords | AL-27, COHERENCE-TRANSFER, DIPOLAR-DEPHASING, NMR, QUADRUPOLAR, SAPO-37 MOLECULAR SIEVE, SILICOALUMINOPHOSPHATE, TRANSFERRED-ECHO DOUBLE-RESONANCE, VPI-5 |
Abstract | In this work, dipolar-based coherence-transfer and dipolar-dephasing solid-state nuclear magnetic resonance (NMR) experiments were performed to investigate the structure of the silicoaluminophosphate molecular sieve SAPO-37. The Al-27,Si-29 transferred-echo double-resonance (TEDOR) experiment directly proves, for the first time, that silicon substitutes for phosphorus atoms in the framework via the SM2 mechanism. The Al-27 (P-31) and Al-27 (Si-29) dipolar-dephasing difference experiments and the two-dimensional Al-27–>P-31 TEDOR experiment indicate the presence of three types of aluminum environments: tetrahedral Al surrounded by symmetrical [4P] or [4Si] environments which give rise to a sharp resonance, tetrahedral Al surrounded by asymmetrical [3P, Si], [2P, 2Si] or [P, 3Si] environments which give rise to a broad resonance, and also extra-framework amorphous octahedral Al. |
URL | <Go to ISI>://A1995TD67500004 |