English
新闻公告
More
化学进展 2007, Vol. 19 Issue (05): 665-670 前一篇   后一篇

• 综述与评论 •

TiO2表面羟基及其性质*

林华香; 王绪绪**; 付贤智   

  1. 福州大学光催化研究所 福州 350002
  • 收稿日期:2006-08-30 修回日期:2006-10-19 出版日期:2007-05-24 发布日期:2007-05-24
  • 通讯作者: 王绪绪

Properties and Distribution of the Surface Hydroxyl Groups of TiO2

Lin Huaxiang;Wang Xuxu** ; Fu Xianzhi   

  1. Research Institute of Photocatalysis, Fuzhou University, Fuzhou 350002
  • Received:2006-08-30 Revised:2006-10-19 Online:2007-05-24 Published:2007-05-24
TiO2材料表面含有丰富的羟基基团,研究表面羟基的分布和性质对理解TiO2的吸附和光催化作用本质有非常重要的意义。本文简要总结了国内外近年来关于TiO2表明羧基的研究进展,如不同晶相结构TiO2的表面羟基状态及不同晶面上羧基的种类、表面吸附水对羟基分布的影响、表面羟基的光电化学性质以及其在光催化反应中的作用等。最后对TiO2表面羧基研究中存在的问题进行了分析。
Having surface hydroxyl groups are one of the most important characteristics of TiO2 surface, and this has great effect on the photocatalysis and adsorption properties of TiO2. Study of surface hydroxyl groups of TiO2 is of importance in the investigation of surface properties and catalysis properties of TiO2. This review briefly summarized the investigations of surface hydroxyl groups in recent years, including the states and kinds of the hydroxyl groups of the different crystal phases of TiO2, the effect of absorbed H2O on the hydroxyl groups, and the photo electrochemical and photocatalytic behaviors of the hydroxyl groups. Finally, some problems In the study of surface hydroxyl groups is analyzed.

中图分类号: 

()

[ 1 ] Hoffmann M R , Martin S T , Chol W Y. Chem. Rev. , 1995 , 95 :69 —96
[ 2 ] Organ B , Gratzel M. Nature , 1991 , 353 : 737 —739
[ 3 ] Wolfrum E J , Huang J , Blake D M. Environ. Sci . Technol . ,2002 , 36 : 3412 —3419
[ 4 ] Wamer W G, Yin J J , Wei R R. Free Radic. Biol . Med. ,1997 , 23 : 851 —858
[ 5 ] Borteau M A. Chem. Rev. , 1996 , 96 : 1413 —1430
[ 6 ] Lewis K E , Parfitt G D. Trans. Faraday Soc. , 1966 , 62 : 204 —214
[ 7 ] Lad R J . Surf . Rev. Lett . , 1995 , 21 : 109 —126
[ 8 ] Campbell C T. Surf . Sci . Rep. , 1997 , 27 : 1 —111
[ 9 ] Bonnell D A. Prog. Surf . Soc. , 1998 , 57 : 187 —252
[10] Ulrike D. Surf . Sci . Rep. , 2003 , 48 : 53 —229
[11] Hadjiivanov K I , Klissurski D G. Chem. Soc. Rev. , 1996 , 25 :61 —70
[12] Yates D J C. J . Phys. Chem. , 1961 , 65 : 746 —753
[13] Kiselev A V , Uvarov A V. Surf . Sci . , 1967 , 6 : 399 —421
[14] Primet M, Pichat P , Mathieu M V. J . Phys. Chem. , 1971 , 75 :1216 —1220
[15] Primet M, Pichat P , Mathieu M V. J . Phys. Chem. , 1971 , 75 :1221 —1226
[16] Primet M, Basset J , Mathieu M V , Prerre M. J . Phys. Chem. ,1970 , 74 : 2868 —2874
[17] Munuera G. J . Catal . , 1970 , 18 : 19 —29
[18] Jones P , Hockey J A. Trans. Faraday Soc. , 1971 , 67 : 2669 —2678
[19] Jaycock M J , Waldsax J C R. J . Chem. Soc. Faraday Trans. ,1974 , 70 : 1501 —1517
[20] Jones P , Hockey J A. Trans. Faraday Soc. , 1971 , 67 : 2679 —2685
[21] Rochester C H. Colloid Surf . , 1986 , 21 : 205 —217
[22] Suda Y, Morimoto T. Langmuir , 1987 , 3 : 786 —788
[23] Malet P , Munuera GJ . J . Chem. Soc. Faraday Trans. , 1989 ,85 : 4157 —4166
[24] Bezrodna T , Puchkovska G, Shymanovska V , et al . J . Mol .Structure , 2004 , 700 : 175 —181
[25] Herman G S , Dohanlek Z , Ruzycki N. J . Phys. Chem. B ,2003 , 107 : 2788 —2795
[26] Vittadni A , Selloni A , Rotzinger F P. Phys. Rev. Lett . , 1998 ,81 : 2954 —2957
[27] Bredow T , Jug W. Surf . Sci . , 1995 , 327 : 398 —408
[28] Selloni A , Vittadini A , Gratzel M. Surf . Sci . , 1998 , 402(1/3) :219 —222
[29] Muryan C A , Hardman P J , Crouch J J . Surf . Sci . , 1991 , 251 :747 —752
[30] Bourgeois S , Gitton L , Perdereau M. J . Chem. Phys. Chem.Biol . , 1988 , 85 : 413 —416
[31] Bourgeois S , Jomard F , Perdereau M. Surf . Sci . , 1992 , 279 :349 —354
[32] WangL Q , Skiba P X A , Shultz N. Surf . Sci . , 1999 , 440 :60 —68
[33] Lo W J , Chung Y W, Somorjai G A. Surf . Sci . , 1978 , 71 :199 —219
[34] Henderson M A. Surf . Sci . , 1994 , 319 : 315 —328
[35] Fahmi A , Minot C. Surf . Sci . , 1994 , 304 : 343 —359
[36] Ferri K F , Wang L Q. J . Vac. Sci . Technol . A , 1998 , 16 :956 —960
[37] Nalewajski R T , Koester A M, Bredow T. J . Mol . Catal . , 1993 ,82 : 407 —423
[38] Brinkley D , Dietrich M, Engel T. Surf . Sci . , 1998 , 395 : 292 —306
[39] Henrich V E , Dresselhaus G, Zeiger H J . J . Solid State Commun. , 1977 , 24 : 623 —626
[40] Henderson M A. Surf . Sci . , 1996 , 355 : 151 —166
[41] Hugenschmidt M B , Gamble L. Surf . Sci . , 1994 , 302 : 329 —340
[42] Kurtz P L , Stockbauer R , Madey T E. Surf . Sci . , 1989 , 218 :178 —200
[43] White J M, Szanyi J , Henderson M A. J . Phys. Chem. B ,2003 , 107 : 9029 —9033
[44] Henderson M A. Surf . Sci . , 1998 , 400 : 203 —219
[45] Fujino T , Katayama M, Indzuka K. Appl . Phys. Letter , 2001 ,79 : 2716 —2718
[46] Henderson M A , Epling W S , Peden C H F. J . Phys. Chem. B ,2003 , 107 : 534 —545
[47] Yoshimichi N , Osamu M. J . Phys. Chem. B , 2005 , 109 :23948 —23954
[48] Anpo M, Shima T , Kubokawa Y. Chem. Letter , 1985 , 12 :1799 —1802
[49] Finne K S , Cassidy D J , Bartlett J R , et al . Langmuir , 2001 ,17 : 816 —820
[50] Takeuchi M, Martra G, Coluccia S , Anpo M. J . Phys. Chem.B , 2005 , 109 : 7387 —7391
[51] Lazzeri M, Vittadini A , Selloni A. Phys. Rev. B , 2001 , 63 :155409 —155418
[52] Lazzeri M, Vittadini A , Selloni A. Phys. Rev. B , 2002 , 65 :art . no. 119901
[53] Oliver P M, Watson G W, Kelsey E T. J . Mater. Chem. , 1997 ,7 : 563 —568
[54] Henderson M A. Langmuir , 1996 , 12 : 5093 —5098
[55] Wang L Q , Baer D R , Engelhard M H , et al . Surf . Sci . , 1995 ,344 : 237 —250
[56] Martin S T , Herrmann H , Hoffmann M R. Trans. Faraday Soc. ,1994 , 90 : 3323 —3330
[57] Wang R , Hashimoto K, Fujishima A. Nature , 1997 , 388 : 431 —432
[58] Wang R , Hashimoto K, Fujishima A , et al . Adv. Mater. , 1998 ,10 : 135 —138
[59] Wang R , Sakai N , Fujishima A. J . Phys. Chem. B , 1999 , 103 :2188 —2194
[60] Sakai N , Fujishima A , Watanabe T , et al . J . Phys. Chem. B ,2001 , 105 : 3023 —3026
[61] Szczepankiewicz S H , Colussi A J , Hoffmann M R. J . Phys.Chem. B , 2000 , 104 : 9842 —9850
[62] Szczepankiewicz S H , Moss J A , Hoffmann M R. J . Phys. Chem.B , 2002 , 106 : 7654 —7658
[63] Wang C Y, Groenzin H , Shultz M J . Langmuir , 2003 , 19 :7330 —7334
[64] Ryuhei N , Kazuhiro U , Shinri S. Langmuir , 2001 , 17 : 2298 —2300
[65] Zubkov T , Stahl D , Thompson T L. J . Phys. Chem. B , 2005 ,109 : 15454 —15462
[66] Kesselman J M, Weres O , Lewis N S , et al . J . Phys. Chem. B ,1997 , 101 : 2637 —2643
[67] Augugliaro V , Palmisano L , Scalfani A , et al . Toxicol . Environ.Chem. , 1988 , 16 : 89 —109
[68] Okamoto K, Yamamoto Y, Tanaka H , et al . Bull . Chem. Soc.Jpn. , 1985 , 58 : 2015 —2022
[69] Maira A J , Coronado J M, Augugliaro V , et al . J . Catal . , 2001 ,202 : 413 —420
[70] Rusu C N , Yates J T Jr. J . Phys. Chem. B , 2000 , 104 :12292 —12298
[71] Moss J A , Szczepankiewicz S H , Park E , et al . J . Phys. Chem.B , 2005 , 109 : 19779 —19785
[72] Nosaka A Y, Kojima E , Fujiwara T , et al . J . Phys. Chem. B ,2003 , 107 : 12042 —12044
[73] Nosaka A Y, Kojima E , Fujiwara T , et al . J . Phys. Chem. B ,2004 , 108 : 9121 —9125
[74] Nosaka A Y, Nishino J , Fujiwara T , et al . J . Phys. Chem. B ,2006 , 110 : 8380 —8385

[1] 王丹丹, 蔺兆鑫, 谷慧杰, 李云辉, 李洪吉, 邵晶. 钼酸铋在光催化技术中的改性与应用[J]. 化学进展, 2023, 35(4): 606-619.
[2] 刘雨菲, 张蜜, 路猛, 兰亚乾. 共价有机框架材料在光催化CO2还原中的应用[J]. 化学进展, 2023, 35(3): 349-359.
[3] 李锋, 何清运, 李方, 唐小龙, 余长林. 光催化产过氧化氢材料[J]. 化学进展, 2023, 35(2): 330-349.
[4] 范倩倩, 温璐, 马建中. 无铅卤系钙钛矿纳米晶:新一代光催化材料[J]. 化学进展, 2022, 34(8): 1809-1814.
[5] 马晓清. 石墨炔在光催化及光电催化中的应用[J]. 化学进展, 2022, 34(5): 1042-1060.
[6] 李晓微, 张雷, 邢其鑫, 昝金宇, 周晋, 禚淑萍. 磁性NiFe2O4基复合材料的构筑及光催化应用[J]. 化学进展, 2022, 34(4): 950-962.
[7] 庞欣, 薛世翔, 周彤, 袁蝴蝶, 刘冲, 雷琬莹. 二维黑磷基纳米材料在光催化中的应用[J]. 化学进展, 2022, 34(3): 630-642.
[8] 占兴, 熊巍, 梁国熙. 从废水到新能源:光催化燃料电池的优化与应用[J]. 化学进展, 2022, 34(11): 2503-2516.
[9] 王文婧, 曾滴, 王举雪, 张瑜, 张玲, 王文中. 铋基金属有机框架的合成与应用[J]. 化学进展, 2022, 34(11): 2405-2416.
[10] 唐晨柳, 邹云杰, 徐明楷, 凌岚. 金属铁络合物光催化二氧化碳还原[J]. 化学进展, 2022, 34(1): 142-154.
[11] 葛明, 胡征, 贺全宝. 基于尖晶石型铁氧体的高级氧化技术在有机废水处理中的应用[J]. 化学进展, 2021, 33(9): 1648-1664.
[12] 赵依凡, 毛琦云, 翟晓雅, 张国英. 钼酸铋光催化剂的结构缺陷调控[J]. 化学进展, 2021, 33(8): 1331-1343.
[13] 陈肖萍, 陈巧珊, 毕进红. 光催化降解土壤中多环芳烃[J]. 化学进展, 2021, 33(8): 1323-1330.
[14] 陈阳, 崔晓莉. 锂离子电池二氧化钛负极材料[J]. 化学进展, 2021, 33(8): 1249-1269.
[15] 郭俊兰, 梁英华, 王欢, 刘利, 崔文权. 光催化制氢的助催化剂[J]. 化学进展, 2021, 33(7): 1100-1114.
阅读次数
全文


摘要

TiO2表面羟基及其性质*