Structural and Sr2+ ion exchange studies of gallosilicate TsG-1

被引:17
作者
Lee, YJ
Kim, SJ
Schoonen, MAA
Parise, JB [1 ]
机构
[1] SUNY Stony Brook, Dept Geosci, Stony Brook, NY 11794 USA
[2] SUNY Stony Brook, Dept Chem, Stony Brook, NY 11794 USA
关键词
D O I
10.1021/cm990789g
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The potassium gallosilicate TsG-1, K10Ga10Si22O64. 5H(2)O, when contacted with a Sr2+:Na+ = 1:5 solution, exhibited a preference for Sr2+ as determined from ion-exchange studies using ion chromatography. A structural model for the strontium-exchanged material, Sr-TsG-1, Sr5Ga10Si22O64. 19H(2)O, was obtained using Rietveld analysis and high-resolution synchrotron X-ray powder diffraction data. The space group, Pnma, of the as-synthesized material is retained in Sr-TsG-1, which has a = 8.6826(1), b = 13.8828(1); c = 16.2484(1) Angstrom. The buckled 8-ring site, consisting of interpenetrated double 6-ring (iD6R) arrays in the CGS topology adopted by TsG-1, is half-occupied by Sr2+ to form a distorted tetrahedral coordination with four framework oxygen atoms. The elliptical 8-ring and s-shaped 10-ring, generated by crosslinking the iD6R arrays along the b and a axis, respectively, also provide environments suitable for Sr2+. A,in-situ synchrotron X-ray powder diffraction study confirmed b axis contraction upon Sr2+ uptake into K-TsG-1. Changes in the ellipticity of the s-shaped 10-ring (Delta 10) and elliptical 8-ring (Delta 8) were monitored from Rietveld refinements based on these data. An abrupt increase in Delta 10 is commensurate with the b-axis contraction and suggested a site-specific ion-exchange mechanism. Changes in the cation distribution at each site, however, are not resolved due to a lack of contrast between the effective scattering powers and the interatomic distances involving the sites occupied by Sr2+ and K+ ions.
引用
收藏
页码:1597 / 1603
页数:7
相关论文
共 32 条
[1]  
AMES LL, 1960, AM MINERAL, V45, P689
[2]  
[Anonymous], 1986, 86748 LAUR LOS AL NA
[3]  
Barrer RM., 1982, HYDROTHERMAL CHEM ZE
[4]  
Borgstedt EV, 1997, STUD SURF SCI CATAL, V105, P1659
[5]  
Breck D.W., 1984, Zeolite molecular sieves
[6]   Novel germanate zeolite structures with 3-rings [J].
Bu, XH ;
Feng, PY ;
Stucky, GD .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (43) :11204-11205
[7]   Heteroatom-substituted microporous gallium phosphates [J].
Chippindale, AM ;
Cowley, AR .
MICROPOROUS AND MESOPOROUS MATERIALS, 1998, 21 (4-6) :271-279
[8]   CALCULATION OF ANOMALOUS SCATTERING FACTORS AT ARBITRARY WAVELENGTHS [J].
CROMER, DT .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1983, 16 (AUG) :437-437
[9]   A CORRECTION FOR POWDER DIFFRACTION PEAK ASYMMETRY DUE TO AXIAL DIVERGENCE [J].
FINGER, LW ;
COX, DE ;
JEPHCOAT, AP .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1994, 27 :892-900
[10]   MULTICOMPONENT ION-EXCHANGE IN ZEOLITES .1. EQUILIBRIUM PROPERTIES OF THE SODIUM CALCIUM MAGNESIUM ZEOLITE-A SYSTEM [J].
FRANKLIN, KR ;
TOWNSEND, RP .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS I, 1985, 81 :1071-1086