Structure of fumed titania and silica/titania and influence of the nature of surface sites on interaction with water

被引:54
作者
Gunko, VM
Zarko, VI
Chibowski, E
Dudnik, VV
Leboda, R
Zaets, VA
机构
[1] MARIE CURIE SKLODOWSKA UNIV,FAC CHEM,DEPT PHYS CHEM,PL-20031 LUBLIN,POLAND
[2] MARIE CURIE SKLODOWSKA UNIV,FAC CHEM,DEPT CHEM PHYS,PL-20031 LUBLIN,POLAND
关键词
titania; silica/titania; particle structure; rutile; anatase; Bronsted acidity; electrophoretic mobility; particle size distribution; cluster modeling;
D O I
10.1006/jcis.1996.4728
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
Fumed titania and silica/titania (ST) were studied by optical spectroscopy of an adsorbed color indicator, X-ray, high-energy electron diffraction, electrophoresis, and quantum chemical methods. Titania in ST with the TiO2 concentration (C-TiO2) above 5 wt % as well as original fumed titania has blended crystalline structure with rutile and anatase; therewith particle cores consist of rutile, and particle shells are mainly anatase. The ST surface possesses higher Bronsted acidity, caused by bridging hydroxy groups Ti-O(H)-Si, than that for original titania (Ti-O(H)-Ti) or silica (SiOH), and its maximum is for C-TiO2 approximate to 20 wt %. Electrophoretic mobility of the ST particles depends on the titania concentration nonlinearly and passes though a maximum for C-TiO2 = 9 wt % if pH greater than or equal to 5. A C-TiO2 increase leads to reduction of a ST particle size in aqueous suspensions from effective diameter of 15 mu m for agglomerates of pure silica to 0.4 mu m for ST with C-TiO2 = 36 wt %. According to theoretical simulation, the Ti atoms in the boundary cells on the steps of the titania or ST particles can easily change the coordination number upon water adsorption and desorption. (C) 1997 Academic Press.
引用
收藏
页码:39 / 57
页数:19
相关论文
共 96 条
[61]  
SHIMANOVSKAYA VV, 1990, UKR KHIM ZH+, V56, P1255
[62]  
SHIMANOVSKAYA VV, 1990, UKR KHIM ZH+, V56, P998
[63]  
SHIMANOVSKAYA VV, 1988, IZV AKAD NAUK USSR N, V24, P1219
[64]   INVESTIGATION OF RUTILE, ANATASE, AND INDUSTRIAL TITANIA WATER SOLUTION INTERFACES USING POTENTIOMETRIC TITRATION AND MICROELECTROPHORESIS [J].
SPANOS, N ;
GEORGIADOU, I ;
LYCOURGHIOTIS, A .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 1995, 172 (02) :374-382
[65]   MECHANISTIC ASPECTS OF THE DEPOSITION OF THE CR(VI) SPECIES ON THE SURFACE OF TIO2 AND SIO2 [J].
SPANOS, N ;
SLAVOV, S ;
KORDULIS, C ;
LYCOURGHIOTIS, A .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 1995, 97 (02) :109-117
[66]   THEORETICAL-STUDY ON THE LARGE ANISOTROPY OF THE G-FACTOR IN A HYDRATED METAL-COMPLEX [J].
TACHIKAWA, H ;
MURAKAMI, A .
JOURNAL OF PHYSICAL CHEMISTRY, 1995, 99 (28) :11046-11050
[67]  
Tanabe K, 1990, New Solid Acids Bases
[68]  
TERTYKH VA, 1991, CHEM REACTION INVOLV
[69]   WATER ELECTRET RELAXATION AT DISPERSED SILICA SURFACES [J].
TISCHENKO, VA ;
GUNKO, VM .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 1995, 101 (2-3) :287-294
[70]   THEORY OF ELECTRONIC-STRUCTURE OF OXIDE SURFACES [J].
TSUKADA, M ;
ADACHI, H ;
SATOKO, C .
PROGRESS IN SURFACE SCIENCE, 1983, 14 (02) :113-173