中文
Announcement
More
Progress in Chemistry 2004, Vol. 16 Issue (04): 613- Previous Articles   Next Articles

• Review •

Progress in Visible Light Responding Photocatalysts

Chen Songzhe**;Zhang Pengyi;Zhu Wanpeng;Liu Fudong   

  1. (Department of Environmental Science and Engineering, Tsinghua University, Beijing 100084, China)
  • Received: Revised: Online: Published:
  • Contact: Chen Songzhe
PDF ( 3191 ) Cited
Export

EndNote

Ris

BibTeX

The latest research progress in visible light responsible photocatalysts is reviewed. The principle, design idea, preparing method, effects and shortcomings of the concerned materials are discussed in detail.

CLC Number: 

[ 1 ] Fujishima A , Honda K. Nature , 1972 , 238 : 37 —38
[ 2 ] Hoffmann M R , Martin S T, Choi W Y, et al . Chem. Rev. ,1995 , 95 : 69 —96
[ 3 ] 沈伟韧(Shen W R) , 赵文宽(Zhao W K) , 贺飞(He F) 等. 化学进展(Progress in Chemistry) , 1998 , 10 (4) : 349 —361
[ 4 ] 余刚(Yu G) , 黄俊(Huang J ) . 环境保护( Environment Protection) , 2001 , (4) : 37 —39
[ 5 ] Okochi M. Environ. Sci . Technol . , 1995 , 29 (2) : 501 —505
[ 6 ] Hung M, Tso E , Datye A K. Environ. Sci . Technol . , 1996 , 30(10) : 3084 —3088
[ 7 ] Hoffman A J , Carraway E R , Hoffmann M R. Environ. Sci .Technol . , 1994 , 28 (5) : 776 —785
[ 8 ] 韩兆慧(Han Z H) , 赵化侨(Zhao H Q) . 化学进展(Progress in Chemistry) , 1999 , 11 (1) : 1 —10
[ 9 ] 李新勇(Li X Y) , 李树本(Li S B) . 化学进展( Progress in Chemistry) , 1996 , 8 (3) : 231 —239
[10] Zang L , Lange C , Abraham I , Storck S , Maier W F , Kisch H.J . Phys. Chem. B , 1998 , 102 : 10765 —10771
[11] O’Regan B , Gr? tzel M. Nature , 1991 , 353 : 737 —739
[12] Wang P , Zakeeruddin , S M, Moser J E , Nazeeruddin M K,Sekiguchi T, Gr? tzel M. Nature Materials , 2003 , 2 (6) : 402 —407
[13] 张彭义(Zhang P Y) , 余刚(Yu G) , 蒋展鹏(Jiang Z P) . 环境科学进展(Advances in Environmental Science) , 1997 , 5 (3) :1 —10
[14] Osora H , Li W J , Otero L , et al . Journal of Photochemistry and Photobiology B : Biology , 1998 , 43 : 232 —238
[15] Tennakone K, Bandara J . Applied Catalysis A: General , 2001 ,208 : 335 —341
[16] Nasr C , Hotchandani S , Kamat P V , et al . J . Phys. Chem. B ,1997 , 101 : 7480 —7487
[17] 李卫华(Li W H) , 郝彦忠(Hao Y Z) , 王艳芹(Wang Y Q) 等.应用化学( Chinese Journal of Applied Chemistry) , 1999 , 16(1) : 6 —10
[18] 李卫华(Li W H) , 郝彦忠(Hao Y Z) , 王艳芹(Wang Y Q) 等.北京大学学报, 自然科学版(Acta Scientiarum Naturalium Universitatis Pekinensis) , 1999 , 35 (4) : 446 —452
[19] Heleg-Shabtai V , Willner I. J . Chem. Commun. , 1994 : 2113
[20] Schlettwein D , Oekermann T, Yoshida T et al . Journal of Electroanalytical Chemistry , 2000 , 481 : 42 —51
[21] Abe R , Sayama K, Arakawa H. Chemical Physics Letters , 2002 ,362 : 441 —444
[22] Choi W Y, Termin A , Hoffmann M R , et al . J . Phys. Chem.1994 , 98 : 13669 —13679
[23] 刘畅(Liu C) , 暴宁钟(Bao N Z) , 杨祝红( Yang Z H) 等. 催化学报(Chinese Journal of Catalysis) , 2001 , 22 (2) :215 —218
[24] Li X Z, Li F B. Environ. Sci . Technol . , 2001 , 35 ( 11 ) :2381 —2387
[25] Li X Z, Li F B , Yang C L , et al . Journal of Photochemistry and Photobiology A: Chemistry , 2001 , 141 : 209 —217
[26] 李芳柏(Li F B) , 古国榜(Gu G B) , 李新军(Li X J ) 等. 物理化学学报(Acta Physico-Chimica Sinica) , 2000 , 16 (11) : 997 —1002
[27] 陈慧(Chen H) ,金星龙(Jin X L) ,朱琨(Zhu K) 等. 中国环境科学(China Environmental Science) , 2000 , 20 (6) : 561 —564
[28] Jeon M S , Yoon W S , et al . Applied Surface Science , 2000 ,165 : 209 —216
[29] Sakata Y, Yamamoto T, Gunji H , et al . Chemistry Letters ,1998 , 131 —132
[30] 张峰(Zhang F) , 李庆霖(Li Q L) , 杨建军(Yang J J ) 等. 催化学报(Chinese Journal of Catalysis) , 1995 , 20 (3) : 329 —332
[31] Yamashita H , Harada M, Misaka J , et al . Journal of Photochemistry and Photobiology A: Chemistry , 2002 , 148 : 257 —261
[32] Hattori A , Yamamoto M, Tada H , et al . Chemistry Letters ,1998 , 707 —708
[33] Asahi R , Morikawa T, Ohwaki T, et al . Science , 2001 , 293(13) : 269 —271
[34] Lettmann C , Hildenbrand K, Kisch H , et al . Applied Catalysis B : Environmental , 2001 , 32 : 215 —227
[35] Shahed U , Khan M, Mofareh Al-Shahry , et al . Science 2002 ,297 (27) : 2243 —2245
[36] 成英之(Cheng Y Z) , 张渊明(Zhang Y M) , 唐渝(Tang Y) .催化学报(Chinese Journal of Catalysis) , 2001 , 22 (2) :203 —205
[37] 岳林海(Yue L H) , 水淼(Shui M) , 徐铸德(Xu Z D) . 浙江大学学报, 理学版(Journal of Zhejiang University , Sciences Edition) , 2000 , 27 (1) : 69 —74
[38] Nakamura I , Negishi N , Kutsuna S , et al . Journal of Molecular Catalysis A: Chemical , 2000 , 161 : 205 —212
[39] Sclafani A. J . Photochem. Photobiol . A: Chem. , 1991 , 56 :113 —123
[40] Yu J C , Lin J , Kwok R W M. J . Photochem. Photobiol . , 1997 ,111 : 199 —203
[41] Wilke K, Breuer H D. J . Photochem. Photobiol . A , 1998 , 121(1) : 49 —53
[42] 周根陶(Zhou G T) , 刘双怀(Liu S H) , 彭定坤(Peng D K) .化学物理学报(Chinese Journal of Chemical Physics) , 1996 , 9(1) : 54 —60
[43] Bard A J . Science , 1980 , 207 : 139 —144
[44] Sinha A , Sahu N , Arora M K, et al . Catalysis Today , 2001 (69) : 297 —305
[45] Bandara J , Mielczarski J A , Lopez A , et al . Applied Catalysis B :Environmental , 2001 , 34 : 321 —333
[46] Jongh P E de , Vanmaekrelberg D , Kelly J J . J . Chem. Soc.Chem. Commun. , 1999 , 1069
[47] Gopidas K R , Bohorguez M, Kamat P V. J . Phys. Chem. ,1990 , 94 : 6435 —6440
[48] 徐悦华(Xu Y H) , 古国榜(Gu G B) ,陈小泉(Chen X Q) . 华南理工大学学报,自然科学版(Journal of South China University of Technology , Natural Science Edition) , 2001 , 29 (11) : 76 —80
[49] Fujii H , Otaki M, Eguchi K, et al . Journal of Materials Science Letters , 1997 , 16 : 1086 —1088
[50] Sato T, Yin S. Materials Integration , 2001 , 2 : 39
[51] Kisch H , Twardzik G. Chem. Ber. , 1991 ,14 : 1161 —1162
[52] Taqui K M, Nageswara R N , Chatterjee D. J . Photochem. Photobiol . , A: Chem. ,1991 , 60 : 311 —318
[53] Harada H , Hosoki C , Kudob A. Journal of Photochemistry and Photobiology A: Chemistry , 2001 , 141 : 219 —224
[54] Ye J H , Zou Z G, Oshikiri M, et al . Chemical Physics Letters ,2002 , 356 : 221 —226
[55] Zou Z G, Ye J H , Arakawa H. Materials Science and Engineering , 2001 , B79 : 83 —85
[56] 白树林(Bai S L) , 付希贤(Fu X X) , 王俊珍(Wang J Z) 等.应用化学( Chinese Journal of Applied Chemistry) , 2000 , 17(3) : 343 —345
[57] Zou Z G, Ye J H , Arakawa H. Journal of Molecular Catalysis A:Chemical , 2001 , 168 : 289 —297
[58] Zou Z G, Ye J H , Arakawa H. Chemical Physics Letters , 2001 ,333 : 57 —62
[59] Zou Z G, Ye J H , Arakawa H. Catal . Lett . , 2000 , 68 : 235
[60] Zou Z G, Ye J H , Arakawa H. Chem. Materials , 2001 , 13 :1765 —1769
[61] Zou Z G, Ye J H , Arakawa H. J . Phys. Chem. B , 2002 , 106 :517 —520
[62] Zou Z G, Ye J H , Arakawa H. Topics in Catalysis , 2003 , 22 :107 —110
[63] Zou Z G, Ye J H , Arakawa H. Chemical Physics Letters , 2000 ,332 : 271 —277
[64] Zou Z G, Ye J H , Arakawa H. Materials Research Bulletin ,2001 , 36 : 1185 —1193
[65] Zou Z G, Ye J H , Sayama K, et al . Journal of Photochemistry and Photobiology A: Chemistry , 2002 , 148 : 65 —69
[66] Zou Z G, Ye J H , Arakawa H. J . Phys. Chem. B , 2002 , 106 :13 098 —13 101
[67] Zou Z G, Ye J H , Arakawa H. Solid State Communication , 2001 ,119 : 471 —475
[68] Zou Z G, Ye J H , Sayama K, et al . Chem. Phys. Lett . 2001 ,343 : 303 —308
[69] Zou Z G, Ye J H , Sayama K, et al . Nature , 2001 , 414 : 625 —627

[1] Dong Baokun, Zhang Ting, He Fan. Research Progress and Application of Flexible Thermoelectric Materials [J]. Progress in Chemistry, 2023, 35(3): 433-444.
[2] Jing Li, Weigang Zhu, Wenping Hu. Organic Complex Materials and Devices for Near and Shortwave Infrared Photodetection [J]. Progress in Chemistry, 2023, 35(1): 119-134.
[3] Lin Chen, Jie-Feng Chen, Yi-Ren Liu, Yuyu Liu, Hai-Feng Ling, Ling-Hai Xie. Organic Strained Semiconductors and Their Optoelectronic Properties [J]. Progress in Chemistry, 2022, 34(8): 1772-1783.
[4] Yiling Tan, Shichun Li, Xi Yang, Bo Jin, Jie Sun. Strategies of Improving Anti-Humidity Performance for Metal Oxide Semiconductors Gas-Sensitive Materials [J]. Progress in Chemistry, 2022, 34(8): 1784-1795.
[5] Chenghao Li, Yamin Liu, Bin Lu, Ulla Sana, Xianyan Ren, Yaping Sun. Toward High-Performance and Functionalized Carbon Dots: Strategies, Features, and Prospects [J]. Progress in Chemistry, 2022, 34(3): 499-518.
[6] Xing Zhan, Wei Xiong, Michael K.H Leung. From Wastewater to Energy Recovery: The Optimized Photocatalytic Fuel Cells for Applications [J]. Progress in Chemistry, 2022, 34(11): 2503-2516.
[7] Jinhuo Gao, Jiafeng Ruan, Yuepeng Pang, Hao Sun, Junhe Yang, Shiyou Zheng. High Temperature Properties of LiNi0.5Mn1.5O4 as Cathode Materials for High Voltage Lithium-Ion Batteries [J]. Progress in Chemistry, 2021, 33(8): 1390-1403.
[8] Yifan Zhao, Qiyun Mao, Xiaoya Zhai, Guoying Zhang. Structural Defects Regulation of Bismuth Molybdate Photocatalyst [J]. Progress in Chemistry, 2021, 33(8): 1331-1343.
[9] Shicheng Jin, Shuang Yan. Nanostructure Construction and Sensing Mechanism of Metal Oxides for Room Temperature Gas Sensing [J]. Progress in Chemistry, 2021, 33(12): 2348-2361.
[10] Chuxuan Yan, Qinglin Li, Zhengqi Gong, Yingzhi Chen, Luning Wang. Organic Semiconductor Nanostructured Photocatalysts [J]. Progress in Chemistry, 2021, 33(11): 1917-1934.
[11] Xuqiang Zhang, Gongxuan Lu. Thin Film Protection Strategy of Ⅲ-Ⅴ Semiconductor Photoelectrode for Water Splitting [J]. Progress in Chemistry, 2020, 32(9): 1368-1375.
[12] Lei Zhu, Jianan Wang, Jianwei Liu, Ling Wang, Wei Yan. Applications of Electrospun One-Dimensional Nanomaterials in Gas Sensors [J]. Progress in Chemistry, 2020, 32(2/3): 344-360.
[13] Xiujun Cao, Lei Zhang, Yuanxin Zhu, Xin Zhang, Chaonan Lv, Changmin Hou. Design and Synthesis of Sillenite-Based Micro/Nanomaterials and Their Applications in Photocatalysis [J]. Progress in Chemistry, 2020, 32(2/3): 262-273.
[14] Guoying Yao, Qinglu Liu, Zongyan Zhao. Applications of Localized Surface Plasmon Resonance Effect in Photocatalysis [J]. Progress in Chemistry, 2019, 31(4): 516-535.
[15] Yuanyuan Qi, Mingguang Li, Honglei Wang, Wen Zhang, Runfeng Chen*, Wei Huang*. Applications of Novel Hole-Transporting Material Copper(Ⅰ) Thiocyanate (CuSCN) in Optoelectronic Devices [J]. Progress in Chemistry, 2018, 30(6): 785-796.