MAGNETIC-RESONANCE STUDIES OF SAPO-44 AND MNAPSO-44

被引:28
作者
OLENDER, Z
GOLDFARB, D
BATISTA, J
机构
[1] WEIZMANN INST SCI,DEPT CHEM PHYS,IL-76100 REHOVOT,ISRAEL
[2] BORIS KIDRIC INST CHEM,DEPT CATALYSIS & CHEM REACT ENGN,61115 LJUBLJANA,SLOVENIA
关键词
D O I
10.1021/ja00056a040
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A variety of magnetic resonance experiments were performed to investigate the local environment of Mn in MnAPSO-44. MnAPSO-44 is a member of the aluminophosphate molecular sieves family and has a chabazite-like structure. Two samples with different Mn contents (Mn/(P + Al + Si) = 0.9 and 0.07 atom %) in their as-synthesized, calcined hydrated and dehydrated forms were studied. The P-31, Si-29, and Al-27 MAS NMR spectra are similar to those of the corresponding SAPO-44 samples showing only one type of TO4 tetrahedra. In the hydrated sample an Al-27 signal at -13 ppm, characteristic of octahedral Al, appears as well due to water coordination. EPR spectra were measured at X- and Q-band. The Mn(II) in the as-synthesized and calcined samples showed hyperfine splittings of 85 and 93 G, respectively, the latter being characteristic of octahedral environment. Dehydration at 400-degrees-C reduced the hyperfine constant to 65 G, indicating a change to tetrahedral coordination upon water removal. The nuclei in the immediate surrounding of the Mn were probed by the electron spin echo envelope modulation (ESEEM) technique. Both P-31 and Al-27 modulations were observed. The EPR and ESEEM results are interpreted in terms of Mn incorporation into tetrahedral framework sites for the sample with the low Mn content. The spatial distribution of the Mn throughout the sample was investigated by the ''2 + 1'' electron spin echo (ESE) experiment. It was found that only about 15% of the Mn(II) is homogeneously distributed and contributes to the echo signal.
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页码:1106 / 1114
页数:9
相关论文
共 42 条
[11]   ELIMINATION OF UNWANTED ECHOES AND REDUCTION OF DEAD TIME IN 3-PULSE ELECTRON SPIN-ECHO SPECTROSCOPY [J].
FAUTH, JM ;
SCHWEIGER, A ;
BRAUNSCHWEILER, L ;
FORRER, J ;
ERNST, RR .
JOURNAL OF MAGNETIC RESONANCE, 1986, 66 (01) :74-85
[12]  
FLANIGEN EM, 1986, NEW DEV ZEOLITE SCI, P103
[13]   AL-27 FOURIER-TRANSFORM ELECTRON-SPIN-ECHO MODULATION OF CU-2+-DOPED ZEOLITE-A AND ZEOLITE-X [J].
GOLDFARB, D ;
KEVAN, L .
JOURNAL OF MAGNETIC RESONANCE, 1989, 82 (02) :270-289
[14]   MAS NMR AND ESR STUDIES OF MNAIPO5 [J].
GOLDFARB, D .
ZEOLITES, 1989, 9 (06) :509-515
[15]  
GOLDFARB D, 1991, J AM CHEM SOC, V13, P1941
[16]  
HOCEVAR S, 1991, ADVANCES IN CATALYST DESIGN, P137
[17]   FOURIER-TRANSFORM AND CONTINUOUS-WAVE EPR STUDIES OF NICKEL IN SYNTHETIC DIAMOND - SITE AND SPIN MULTIPLICITY [J].
ISOYA, J ;
KANDA, H ;
NORRIS, JR ;
TANG, J ;
BOWMAN, MK .
PHYSICAL REVIEW B, 1990, 41 (07) :3905-3913
[18]   STRUCTURE OF AN ALUMINOSILICOPHOSPHATE [J].
ITO, M ;
SHIMOYAMA, Y ;
SAITO, Y ;
TSURITA, Y ;
OTAKE, M .
ACTA CRYSTALLOGRAPHICA SECTION C-CRYSTAL STRUCTURE COMMUNICATIONS, 1985, 41 :1698-1700
[19]  
ITON LE, 1989, ZEOLITES, V9, P457
[20]   TWO-DIMENSIONAL SOLID-STATE NUTATION NMR OF HALF-INTEGER QUADRUPOLAR NUCLEI [J].
KENTGENS, APM ;
LEMMENS, JJM ;
GEURTS, FMM ;
VEEMAN, WS .
JOURNAL OF MAGNETIC RESONANCE, 1987, 71 (01) :62-74