综述了近年来本课题组依据材料化学工程研究思想,对含TiO2(B)(一种比金红石和锐钛矿相结构更松散的氧化钛晶型)介孔氧化钛材料在制各、结构和性能方面所取得的研究进展,该介孔材料由二钛酸钾经水合、离子交换和热处理得到,具有良好原子尺度晶格匹配界面特征的锐钛矿和TiO2(B)核壳结构.研究表明,该介孔材料在兼备高比表面积、高晶化孔壁和高热稳定性的同时,还表现出良好的纳米颗粒担载稳定性,在光催化、油品加氧精制、药物载体、固体酸催化和电化学电容器等方面已凸显出良好的应用潜力和推广价值,目前该新型含TiO2(B)介孔氧化钛材料已经实现低成本、规模化制备.
参考文献
[1] | Fujishima A;Honda K .[J].Nature,1972,238:37. |
[2] | Chen X B;Mao S S .[J].Chemical Reviews,2007,107:2891. |
[3] | Antonelli D M;Ying J Y .[J].Angewandte Chemie International Edition,1995,34:2014. |
[4] | Shen Y;Bao J;Dai N;Wu J Gu F Tao J C Zhang J C .[J].Applied Surface Science,2009,255:3908. |
[5] | Lee J;Orilall MC;Warren SC;Kamperman M;Disalvo FJ;Wiesner U .Direct access to thermally stable and highly crystalline mesoporous transition-metal oxides with uniform pores[J].Nature materials,2008(3):222-228. |
[6] | Choi SY;Lee B;Carew DB;Mamak M;Peiris FC;Speakman S;Chopra N;Ozin GA .3D hexagonal (R-3m) mesostructured nanocrystalline titania thin films: Synthesis and characterization[J].Advanced functional materials,2006(13):1731-1738. |
[7] | Rossmanith R;Weiss C K;Geserick J;Hfising N H(o)rmann U Kaiser U Landfester K .[J].Chemistry of Materials,2008,20:5768. |
[8] | He M;Lu XH;Feng X;Yu L;Yang ZH .A simple approach to mesoporous fibrous titania from potassium dititanate[J].Chemical communications,2004(19):2202-2203. |
[9] | Li W;Bai Y;Liu Ch;Yang Zh H Feng X Lu X H van der Laak N K Chan K Y .[J].Environmental Science and Technology,2009,43:5423. |
[10] | Li W;Zhou Y X;Liu Ch;Zhou X F,Yang Zh H,Bai Y,Zhu Y H.Lu X H.[A].Kerala:Research Signpost,2009:59. |
[11] | Li W;Liu Ch;Zhou Y X;Bai Y Feng X Yang Zh H Lu L H Lu X H Chan K Y .[J].Journal of Physical Chemistry C,2008,112:20539. |
[12] | Zheng Zh F;Liu H W;Ye J P;Zhao J C Waclawik E R Zhu H Y .[J].Journal of Molecular Catalysis A:Chemical,2010,316:75. |
[13] | Yang D J;Liu H W;Zheng Zh F;Yuan Y Zhao J C Waclawik E R Ke X B Zhu H Y .[J].Journal of the American Chemical Society,2009,131:17885. |
[14] | Zhang J;Xu Q;Feng Zh Ch;Li M J,Li C .[J].Angewandte Chemie International Edition,2008,47:1766. |
[15] | Bai Y;Zhang Y;Li W;Zhou X F Wang Ch S Fang X Zhang L Zh Lu X H .[J].Applied Surface Science,2009,255:9296. |
[16] | Bai Y;Li W;Liu Ch;Yang Zh H Fang X Lu X H Chan K Y .[J].Journal of Materials Chemistry,2009,19:7055. |
[17] | Cromer D T;Herrington K .[J].Journal of the American Chemical Society,1955,77:4708. |
[18] | Baur WH .[J].Acta Crystallographica,1961,14:214. |
[19] | Marchand R;Brohan L;Toumoux M .[J].Materials Research Bulletin,1980,15:1129. |
[20] | Banfield J F;Veblen D R;Smith D J .[J].American Mineralogist,1991,76:343. |
[21] | Feist T P;Davies P K .[J].Journal of Solid State Chemistry,1992,101:275. |
[22] | Yamamoto K;Shimoita H;Tomita K;Fujita K Kobayashi M Petrykin V Kakihana M .[J].Journal of the Ceramic Society of Japan,2009,117:347. |
[23] | Wilkening M;Lyness C;Armstrong A R;Bruce P G .[J].Journal of Physical Chemistry C,2009,113:4741. |
[24] | Zhang X W;Pan J H;Du A J;Lee P F,Sun D D,Leckie J O .[J].Chemistry Letters,2008,37:424. |
[25] | Kuo, HL;Kuo, CY;Liu, CH;Chao, JH;Lin, CH .A highly active bi-crystalline photocatalyst consisting of TiO2 (B) nanotube and anatase particle for producing H-2 gas from neat ethanol[J].Catalysis Letters,2007(1/2):7-12. |
[26] | Wang G;Wang Q;Lu W;Li J H .[J].Journal of Physical Chemistry B,2006,110:22029. |
[27] | Yu L;He M;Liu C;Lu XH;Feng X .Nano-scale mixing of TiO2 center dot nH(2)O and potassium carbonate[J].Materials Chemistry and Physics,2005(2/3):342-347. |
[28] | Bao N Zh;Shen L M;Feng X;Lu X H .[J].Journal of the American Ceramic Society,2004,87:326. |
[29] | Bao N Zh;Feng X;Lu X H;Shen L M Yanagisawa K .[J].AICHE Journal,2004,50:1568. |
[30] | Liu Ch;He M;Lu X H;Zhang Q T Xu Zh Z .[J].Crystal Growth and Design,2005,5:1399. |
[31] | Bao N Zh;Feng X;Lu X H;Yang Zh H .[J].Journal of Materials Science,2002,37:3035. |
[32] | Bao N Zh;Feng X;Shen L M;Lu X H .[J].Crystal Growth and Design,2002,2:437. |
[33] | Ji X Y;Feng X;Lu X H;Zhang L Zh Wang Y R Shi J Liu Y D .[J].Industrial and Engineering Chemistry Research,2002,41:2040. |
[34] | He M;Feng X;Lu X H;Ji X Y Liu Ch Bao N Zh Xie J W .[J].Journal of the Ceramic Society of Japan,2003,36:1259. |
[35] | Bao N Zh;Lu X H;Ji X Y;Feng X Xie J W .[J].Fluid Phase Equilibria,2002,193:229. |
[36] | 陆小华,吉晓燕,陈栋梁,刘畅,暴宁钟,冯新.溶解和离子交换反应中K+的快速测定[J].化工学报,2002(03):241-245. |
[37] | Liu Ch;Ji Y H;Shao Q;Feng X Lu X H .[J].Structure and Bonding,2009,131:193. |
[38] | Hsiao P T;Wang K P;Cheng C W;Teng H .[J].Journal of Photochemistry and Photobiology A:Chemistry,2007,188:19. |
[39] | Nian J N;Teng H S .[J].Journal of Physical Chemistry B,2006,110:4193. |
[40] | Serrano D P;Calleja G;Sanz R;Pizarro P .[J].Journal of Materials Chemistry,2007,17:1178. |
[41] | Stone VF.;Davis RJ. .Synthesis, characterization, and photocatalytic activity of titania and niobia mesoporous molecular sieves[J].Chemistry of Materials,1998(5):1468-1474. |
[42] | Liu R L;Ren Y J;Shi Y F;Zhang F Zhang L J Tu B Zhao D Y .[J].Chemistry of Materials,2008,20:1140. |
[43] | Dong W Y;Sun Y J;Lee C W;Hua W M Lu X Ch Shi Y F Zhang Sh Ch Chen J M Zhao D Y .[J].Journal of the American Chemical Society,2007,129:13894. |
[44] | Liu L;Meng Q H .[J].Journal of Materials Science,2005,40:4105. |
[45] | Zhao D Y;Feng J L;Huo Q Sh;Melosh N Fredfickson G H Chmelka B F Stucky G D .[J].Science,1998,279:548. |
[46] | Ohtani B;Ogawa Y;Nishimoto S .[J].Journal of Physical Chemistry B,1997,101:3746. |
[47] | Tanaka K;Capule M F V;Hisanaga T .[J].Chemical Physics Letters,1991,187:73. |
[48] | Furube A;Asahi T;Masuhara H;Yamashita H,Anpo M .[J].Journal of Physical Chemistry B,1999,103:3120. |
[49] | Choi W;Termin A;Hoffmann M R .[J].Angewandte Chemie International Edition,1994,33:1091. |
[50] | Zhang J;Li M J;Feng Zh Ch;Chen J Li C .[J].Journal of Physical Chemistry B,2006,110:927. |
[51] | Reidy DJ;Holmes JD;Nagle C;Morris MA .A highly thermally stable anatase phase prepared by doping with zirconia and silica coupled to a mesoporous type synthesis technique[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,2005(34):3494-3500. |
[52] | Xie T H;Lin J .[J].Journal of Physical Chemistry C,2007,111:9968. |
[53] | Ohno T;Tokieda K;Higashida S;Matsumura M .[J].Applied Catalysis A:General,2003,244:383. |
[54] | 于洪涛,全燮.纳米异质结光催化材料在环境污染控制领域的研究进展[J].化学进展,2009(02):406-419. |
[55] | Li GH;Gray KA .Preparation of mixed-phase titanium dioxide nanocomposites via solvothermal processing[J].Chemistry of Materials: A Publication of the American Chemistry Society,2007(5):1143-1146. |
[56] | Li GH;Gray KA .The solid-solid interface: Explaining the high and unique photocatalytic reactivity of TiO2-based nanocomposite materials[J].Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature,2007(1-3):173-187. |
[57] | Chen L;Graham ME;Li GH;Gray KA .Fabricating highly active mixed phase TiO2 photocatalysts by reactive DC magnetron sputter deposition[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2006(3):1176-1181. |
[58] | Hurum D C;Agrios A G;Gray K A;Rajh T Thurnauer M C .[J].Journal of Physical Chemistry B,2003,107:4545. |
[59] | Bell A T .[J].Science,2003,299:1688. |
[60] | Valden M;Lai X;Goodman D W .[J].Science,1998,281:1647. |
[61] | Linsebigler A L;Lu G Q;Yates J T .[J].Chemical Reviews,1995,95:735. |
[62] | Rhee, CK;Kim, BJ;Ham, C;Kim, YJ;Song, K;Kwon, K .Size Effect of Pt Nanoparticle on Catalytic Activity in Oxidation of Methanol and Formic Acid: Comparison to Pt(111), Pt(100), and Polycrystalline Pt Electrodes[J].Langmuir: The ACS Journal of Surfaces and Colloids,2009(12):7140-7147. |
[63] | Zeng Q H;Wong K;Jiang X C;Yu A B .[J].Applied Physics Letters,2008,92:103109. |
[64] | Diebold U .[J].Surface Science Reports,2003,48:53. |
[65] | Campbell C T .[J].Surface Science Reports,1997,27:1. |
[66] | Wang J G;Hammer B .[J].Physical Review Letters,2006,97:136107. |
[67] | Zhu Y H;Li W;Zhou Y X;Lu X H Feng X Yang Zh H .[J].Catalysis Letters,2009,127:406. |
[68] | 朱银华,陈闪山,陆小华,杨祝红,冯新,汪怀远.新型晶须状氧化钛担载Au的CO催化氧化性能[J].催化学报,2009(05):421-425. |
[69] | 陈晓波.二氧化钛纳米材料及其能源应用[J].催化学报,2009(08):839-851. |
[70] | Ib?n)ez J A;Litter M I;Pizarro R A .[J].Journal of Photochemistry and Photobiology A:Chemistry,2003,157:81. |
[71] | Ao C H;Lee S C;Yu J C .[J].Journal of Photochemistry and Photobiology A:Chemistry,2003,156:171. |
[72] | Vautier M;Guillard C;Herrmann J M .[J].Journal of Catalysis,2001,201:46. |
[73] | Morgado E;Zotin J L;de Abreu M A S;Rosas D O Jardim P M Marinkovic B A .[J].Applied Catalysis A:General,2009,357:142. |
[74] | Wang R;Hashimoto K;Fujishima A;Chikuni M Kojima E Kitamura A Shimohigoshi M Watanabe T .[J].Nature,1997,388:431. |
[75] | Bernard B K;Osheroff M R;Hofmann A;Mennear J H .[J].Journal of Toxicology and Environmental Health,1990,29:417. |
[76] | 张建平,李东,方维,刘畅,杨祝红,陆小华.介孔氧化钛晶须气相光催化降解三氯乙烯[J].过程工程学报,2009(01):171-175. |
[77] | 于荟,朱银华,刘畅,杨祝红,陆小华,冯新.新型介孔SO42-/TiO2固体酸的制备及其催化酯化性能[J].催化学报,2009(03):265-271. |
[78] | 王海棠,朱银华,杨祝红,刘金龙,孙庆杰,陆小华,冯新.新型Ni/TiO2催化剂用于对硝基苯酚催化加氢[J].催化学报,2009(05):414-420. |
[79] | Li Q N;Wang X M;Lu X H;Tian H E Jiang H Lv G Guo D D Wu Ch H Chen B A .[J].Biomaterials,2009,30:4708. |
[80] | 吕玲红,胡煜艳,朱育丹,吕志华,刘畅,冯新,陆小华.介孔TiO2晶须及其担载RuO2的电容性能[J].化工学报,2008(02):490-496. |
[81] | 刘金龙,朱银华,杨祝红,王海棠,陆小华,冯新,汪怀远.MoO3/TiO2催化剂的二苯并噻吩加氢脱硫性能[J].过程工程学报,2009(05):882-886. |
[82] | 朱银华;周亚新;杨祝红;陆小华 冯新 .[J].石油学报,2007,23:16. |
[83] | Yang, HG;Liu, G;Qiao, SZ;Sun, CH;Jin, YG;Smith, SC;Zou, J;Cheng, HM;Lu, GQ .Solvothermal Synthesis and Photoreactivity of Anatase TiO2 Nanosheets with Dominant {001} Facets[J].Journal of the American Chemical Society,2009(11):4078-4083. |
[84] | Han, XG;Kuang, Q;Jin, MS;Xie, ZX;Zheng, LS .Synthesis of Titania Nanosheets with a High Percentage of Exposed (001) Facets and Related Photocatalytic Properties[J].Journal of the American Chemical Society,2009(9):3152-3153. |
[85] | Yang H G;Sun Ch H;Qiao Sh Zh;Zou J Liu G Smith S C Cheng H M Lu G Q .[J].Nature,2008,453:638. |
[86] | Liu W J;Wang J G;Li W;Guo X J Ln L H Lu X H Feng X Liu Ch Yang Zh H.[J].Physical Chemistry Chemical Physics,2010 |
[87] | 李东,杨祝红,李伟,冯新,陆小华.基于TiO2晶须的光催化工艺过程和装备优化研究[J].南京工业大学学报(自然科学版),2008(02):105-110. |
[88] | 文高飞,杨祝红,李伟,冯新,陆小华.TiO2晶须在深度净化饮用水过程中失活原因分析[J].环境科学,2007(09):2025-2029. |
[89] | 陈国钧,杨祝红,郑仲,冯新,朱建,刘志国,陆小华.液固二相光催化反应器模型的研究[J].高校化学工程学报,2005(02):202-207. |
[90] | Tauster S J;Fung S C;Garten R L .[J].Journal of the American Chemical Society,1978,100:170. |
[91] | Zhu J F;Zhang J L;Chen F;Anpo M .[J].Materials Letters,2005,59:3378. |
[92] | Armstrong A R;Armstrong G;Canales J;Bruce P G .[J].Angewandte Chemie International Edition,2004,43:2286. |
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