Isothermal structural evolution of SnO2 monolithic porous xerogels

被引:3
作者
Brito, GES [1 ]
Pulcinelli, SH
Santilli, CV
Craievich, AF
机构
[1] UNESP, Inst Chem, Araraquara, SP, Brazil
[2] Univ Paris Sud, LURE, Orsay, France
[3] CNPq, Natl Synchrotron Light Lab, Campinas, SP, Brazil
[4] Univ Sao Paulo, Inst Phys, Sao Paulo, Brazil
关键词
D O I
10.1107/S0021889897002434
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Monolithic samples of SnO2 xerogel were produced by careful control of the gelation and drying steps of material preparation. In these samples, small and nanoporous aggregates stick together, yielding a monolithic (nonpowdered) material. The material was analyzed by in situ small-angle X-ray scattering (SAXS) during isothermal treatment at temperatures ranging from 473 to 773 K. At 473 K, the SAXS intensity does not change significantly with time. All experimental scattering intensity functions for T > 473 K are composed of two wide peaks, which evolve with increasing time. Each of them was associated with one of the modes of a bimodal distribution of pore sizes corresponding to a fine (intra-aggregate) and a coarse (inter-aggregate) porosity. The SAXS intensities of the maxima of both peaks increase with increasing treatment time, while the position of their maxima, associated with an average correlation distance, decreases. The time dependences of the SAXS intensity corresponding to both families of pores qualitatively agree with those expected for a two-phase separating system exhibiting dynamic scaling properties. The time evolutions of the several moments of the structure function of samples heat treated at 773 K exhibit a good quantitative agreement with the theory of dynamic scaling for systems evolving by a coagulation mechanism. The kinetic parameters are the same for both peaks, indicating that the same mechanism is responsible for the structural evolution of both families of pores.
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收藏
页码:664 / 669
页数:6
相关论文
共 14 条
[1]  
BRINKER CJ, 1990, SOL GEL SCI PHYSICS, P547
[2]  
Brito GES, 1997, J SOL-GEL SCI TECHN, V8, P269, DOI 10.1007/BF02436851
[3]   PHASE-SEPARATION AND DYNAMIC SCALING IN BORATE GLASSES [J].
CRAIEVICH, AF ;
SANCHEZ, JM ;
WILLIAMS, CE .
PHYSICAL REVIEW B, 1986, 34 (04) :2762-2769
[4]   TIME EVOLUTION OF THE STRUCTURE-FUNCTION AND DYNAMICAL SCALING IN POROUS SNO2 DRY GELS [J].
CRAIEVICH, AF ;
SANTILLI, CV ;
PULCINELLI, SH .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 1995, 97 (1-4) :78-81
[5]  
Brito GED, 1994, J SOL-GEL SCI TECHN, V2, P575
[6]   DYNAMICAL SCALINGS FOR PHASE SEPARATIONS IN LIQUID AND SOLID SYSTEMS [J].
FURUKAWA, H .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1988, 21 :805-810
[7]  
GLATTER O, 1982, SMALL XRAYS SCATTERI, P199
[8]   EFFECT OF ELECTROLYTE ON THE GELATION AND AGGREGATION OF SNO2 COLLOIDAL SUSPENSIONS [J].
HIRATSUKA, RS ;
SANTILLI, CV ;
SILVA, DV ;
PULCINELLI, SH .
JOURNAL OF NON-CRYSTALLINE SOLIDS, 1992, 147 :67-73
[9]  
KLEIN LC, 1988, SOL GEL TECHNOLOGY T, P382
[10]   SMALL-ANGLE SCATTERING STUDIES OF PHASE-SEPARATION AND DEFECTS IN INORGANIC MATERIALS [J].
KOSTORZ, G .
JOURNAL OF APPLIED CRYSTALLOGRAPHY, 1991, 24 :444-456