中文
Announcement
More
Progress in Chemistry 2001, Vol. 13 Issue (01): 19- Previous Articles   Next Articles

• Review •

Development of Titanium Silicon Catalytic Materials.Preparation of Titania-Silica Mixed Oxides and Its Catalytic Properties

Zhang Yihua;Wang Xiangsheng;Guo Xinwen   

  1. Lab of Comprehensive Utilization of Carbonaceous Resources,Dalian University of Technology, Dalian 116012, China
  • Received: Revised: Online: Published:
PDF ( 1388 ) Cited
Export

EndNote

Ris

BibTeX

Titanium silicon catalytic materials gives new ways for the studies of the catalytic oxidizing reactions and the exploitation of the environmental benign chemical engineering processes. Titan ia2silica mixed oxides has at tracted more at tention because of its tailor preparing method and the easy operating process. This article summarizes the preparation of titania2silica mixed oxides. The factors effecting on the character and catalytic properties of the materials,such as preparing method,drying method, content of titanium and surface modification, as well as the prospect of application have been discussed.

CLC Number: 

[ 1 ] U. S. Patent, 3 923 843, 1975; Brit. Patent, 1 249 079, 1971
[ 2 ] Sharpless K B, Woodard S S, Finn M G. Pure Appl. Chem. ,1983, 55: 1823- 1836
[ 3 ] Sohn J R, Jang H J. J. Catal. , 1991, 132: 563- 565
[ 4 ] Lange C, De Caro D, Gamez A. et al. Langmuir, 1999, 15(16) : 5333- 5338
[ 5 ] Kamiya K, Sakka S. J. Mater. Sci. , 1980, 15 (11) : 2937-2939
[ 6 ] Breval E, Deng Z, Pantano C G. J. Non-Cryst. Solids, 1990,125: 50- 57
[ 7 ] Van der Pool A J H P, Van Hoof J H C. Appl. Catal. A ,1992, 92: 93- 111
[ 8 ] Jokinen M , Patsi M , Rahiala H J. Biomedical Materials Research, 1998, 42 (2) : 295- 302
[ 9 ] Mizukami F, Matsuzaki S Y, Furukori K, et al. J. Chem.Soc. Chem. Commun. , 1986, 678- 679
[ 10 ] Toba M , Mizukami F, Niwa S. J. Chem. Soc. Chem.Commun. , 1990, 1211- 1212
[ 11 ] Aizawa M , Nosaka Y, Fujii N. J. Non-Cyst. Solids, 1991,128: 77- 85
[ 12 ] Nakabayashi H. Bull. Chem. Soc. Jpn. , 1992, 65 (3) : 914-916
[ 13 ] Hayashi T, Yamada T, Saito H. J. Mater. Sci. , 1983, 18:3137- 3142
[ 14 ] Yamane M , Inoue S, Nakazawa K. J. Non-Cryst. Solids,1982, 48 (1) : 153- 159
[ 15 ] Brinker Y C J. J. Non-Cryst. Solids, 1988, 100: 31- 50
[ 16 ] Neumann R, Levin-Elad M. J. Catal. , 1997, 166: 206- 217
[ 17 ] Ying J Y, Benziger J B, Narrotsky A. J. Am. Ceram. Soc. ,1993, 76 (10) : 2571- 2582
[ 18 ] Hench L L , West J K. Chem. Rev. , 1991, 90: 33- 72
[ 19 ] Brinker C J. J. Non-Cryst. Solids, 1985, 70: 301- 322
[ 20 ] 余桂郁(Yu G Y) , 杨南如(Yang N R ). 硅酸盐通报(Bull.Chin. Silicate Soc. ) , 1993, 6: 60- 66
[ 21 ] Niwa S, Mizukami F, Isoyama S, et al. J. Chem. Technol.Biotechnol. , 1986, 36: 236- 246
[ 22 ] Mizukami F, Niwa S, et al. J. Mol. Catal. , 1994, 91: 277-289
[ 23 ] Dutoit D C M , Schneider M , Baiker A. J. Catal. , 1995, 153:165- 176.
[ 24 ] Lacourse C W , Kim S. Ceram. Eng. Sci. Proc. , 1987, 8:1129- 1134
[ 25 ] Shelden R A. J. Mol. Catal. , 1980, 7 (1) : 107- 126
[ 26 ] Tanabe K. Catalysis Science and Technology. Berlin:Springer, 1981, 231
[ 27 ] Liu Z, Tabora J , Davis R J. J. Catal. , 1994, 149: 117- 126
[ 28 ] Liu Z, Davis R J. J. Phys. Chem. , 1994, 98: 1253- 1261
[ 29 ] Odenbrand C U , Brandin J G, Busca G. J. Catal. , 1992,135: 505- 517
[ 30 ] No tariB. A dv. Catal. , 1996, 41: 253- 334
[ 31 ] Scherer G. J. Non-Cryst. Solids, 1988, 100: 77- 92
[ 32 ] Scherer G. J. Am. Ceram. Soc. , 1990, 73 (1) : 3- 14
[ 33 ] Deshpande R, Hua D, Smith D M , Brinker C J. J. Non Crsyt. Solids, 1992, 144: 32- 44
[ 34 ] Schneider M , Baiker A. Encyclopedia of Advanced Materials,Vol. 1, Oxford: Pergamon Press, 1994
[ 35 ] Cogliati G, Guglielmi M , Che T M , et al. Mater. Res. Soc.Symp. Proc. , 1990, 180: 329- 334
[ 36 ] Brntigam U , Meyer K, Bürger H, EUROGEL ’91.Am sterdam: Elsevier, 1992, 335
[ 37 ] Matsuda A , Kogurve T, Matsuno Y, et al. J. Am. Ceram.Soc. , 1993, 76 (11) : 2899- 2903.
[ 38 ] Müller C A , Maciejewski M , Mallat T, Baiker A. J. Catal. ,1999, 184: 280- 293
[ 39 ] Kochkar H, Figueras F. J. Catal. , 1997, 171: 420- 430
[ 40 ] Klein S, Maier W F. Angew. Chem. , 1996, 35 (19) : 2230-2233
[ 41 ] Itoh M , Hattori H, Tanabe K. J. Catal. , 1974, 35: 225-231
[ 42 ] Klein S, Thorimbert S, Maier W F. J. Catal. , 1996: 163,476- 488
[ 43 ] Corma A , Camblor M A , Esteve P, et al. J. Catal. , 1994,145: 151- 157
[ 44 ] Neumann R, Chava M , Levin M. J. Chem. Soc. , Chem.Commun. , 1993, 1685- 1686
[ 45 ] Khouw C B, Li H X, Darrt C B. Catalytic Selective Oxidation, ACS Symp. Ser. , Vol. 523. Washington, DC,1993, 273
[ 46 ] Hutter R, Mallat T, Baiker A. J. Catal. , 1995, 153: 177-189
[ 47 ] Hutter R, Mallat T, Baiker A. J. Catal. , 1995, 157: 665-675
[ 48 ] Hutter R, Mallat T, Peterhans A. J. Mol. Catal. A: Chem.1999, 138: 241- 247
[ 49 ] Dusi M , Mallat T, Baiker A. J. Mol. Catal. A: Chem.1999, 138: 15- 23
[ 50 ] Cativiela J M , Fraile J I, Garcia J A , et al. J. Mol. Catal. A:Chem. 1996, 112: 259- 267
[ 51 ] Kumar R, Pais G C G, Pandey B, Kumar P. J. Chem. Soc. ,Chem. Commun. , 1995, 1315- 1316
[ 52 ] Keshavaraja A , Ranaswamy V , Soni H S, et al. J. Catal. ,1995, 157: 501- 511
[ 53 ] 王洪林(Wang H L ). 博士论文, 大连理工大学, 1999
[ 54 ] 辛勤, 吴自力. 第七届全国青年催化学术会议论文集, 1999,3- 4

[1] Song Zhaoning, Feng Xiang, Liu Yibin, Yang Chaohe, Zhou Xinggui. Advances in Manipulation of Catalyst Structure and Relationship of Structure-Performance for Direct Propene Epoxidation with H2 and O2 [J]. Progress in Chemistry, 2016, 28(12): 1762-1773.
[2] Niu Fanfan, Nie Changjun, Chen Yong, Sun Xiaoling. Asymmetric Catalytic Epoxidation of Unfunctionalized Olefins [J]. Progress in Chemistry, 2014, 26(12): 1942-1961.
[3] Li Linqing, Lv Ying, Li Jun, Dong Xiaoli, Gao Shuang. Application of Metal-Organic Frameworks in Olefin Oxidation [J]. Progress in Chemistry, 2012, 24(05): 747-756.
[4]

Jin Fei, Ding Hangjun, Luan Yi, Wang Ge

. The Sharpless Epoxidation of Molybdenum Peroxide and Tungsten Peroxide [J]. Progress in Chemistry, 2008, 20(12): 1886-1895.
[5] Chai Fenglan|Wang Xiangyu**|Tao Jingchao. Chiral Schiff Base Complexes for the Asymmetric Epoxidation [J]. Progress in Chemistry, 2008, 20(0203): 300-311.
[6] Gao Yongjun,Ma Jingjun,Wu Qiuhua,Zang Xiaohuan,Wang Chun** . Asymmetric Epoxidation of Electron-Deficient Olefins Catalyzed by Coordination Compound Derived From Chiral Binaphthol and Its Derivatives [J]. Progress in Chemistry, 2007, 19(05): 796-804.
[7] Lifei Zhi,Yucheng Jiang**,Mancheng Hu,Shuni Li. Applications of Chloroperoxidase in Chiral Organic Synthesis [J]. Progress in Chemistry, 2006, 18(09): 1150-1156.
[8] Xuefeng Li1,Huanxin Gao2,Qingling Chen1,2*. Catalytic Applications of the Mesoporous Materials in Epoxidation of Olefins [J]. Progress in Chemistry, 2006, 18(0708): 849-853.
[9] Chun Wang,Yongjun Gao,Yingqun Zhang,Zhi Wang**,Jingjun Ma. Organocatalytic Asymmetric Epoxidation of Olefins Catalyzed by Chiral Ketones Derived from Carbohydrates [J]. Progress in Chemistry, 2006, 18(06): 761-767.
[10] Yangying Chen 1,2*,Xiuwen Han2. Progress in Catalytic Epoxidation of Olefins with Hydrogen Peroxide [J]. Progress in Chemistry, 2006, 18(04): 399-409.
[11] Sun Wei,Xia Chungu. Application of Chiral Metal-Salen Complexes in Asymmetric Catalysis [J]. Progress in Chemistry, 2002, 14(01): 8-.
[12] Zhou Jicheng,Wang Xiangsheng. The Syntheses and Applications of Titanium Silicalite Molecular Sieves as a New Kind of Catalytic Materials [J]. Progress in Chemistry, 1998, 10(04): 381-.
[13] Zhang Yiliang,Yang Zhenyun. Asymmetric Catalytic Epoxidation Reactions [J]. Progress in Chemistry, 1996, 8(01): 57-.