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EditµÈ¹ú¼ÊÖøÃû¿¯ÎïÉÏ·¢±íÂÛÎÄ130¶àƪ¡£¶à´Î»ñµÃ¹ú¼Ê´ó½±¡£ Ò¶½ð»¨½ÌÊÚÏÖÒѱ»Æ¸ÎªÄϾ©´óѧ³¤½Ñ§Õß½²×ù½ÌÊÚ£¬²©Ê¿Éúµ¼Ê¦£¬¾ÍÖ°ÓÚ»·¾³²ÄÁÏÓëÔÙÉúÄÜÔ´Ñо¿ÖÐÐÄ¡£Ä¿Ç°Ò¶½ð»¨½ÌÊÚÕýÔÚÕÐÊÕ²©Ê¿¡¢Ë¶Ê¿Ñо¿Éú£¬»¶Ó¹ã´óÓÅ ÐãѧÉú±¨¿¼¡£ÏêÇéÇë²é¿´Ïà¹ØÍøÕ¾£ºhttp://ererc.nju.cn/¡£ ´ú±íÐÔÂÛÎÄ£º [1] Jiang Yin, Zhigang Zou, Jinhua Ye, ¡°Possible role of lattice dynamics in the photocatalytic activity of BaM1/3N2/3O3¡¡(M=Ni, Zn; N=Nb, Ta)¡±, Journal of Phys. Chem. B., 108, pp. 8888-8893, 2004. [2]Junwang Tang, Zhigang Zou, Jinhua Ye, ¡°Substitution Effects of Ca2+ by Sr2+ and Ba2+ on Structural Properties and Photocatalytic Behaviors of CaIn2O4¡°, Chemistry of Materials, 16, pp. 1644-1649, 2004. [3]Jiang Yin, Zhigang Zou, Jinhua Ye, ¡°Enhanced Photoelectrolysis of water with photoanode Nb:SrTiO3¡±, Applied Physics Letters, 85, pp.689-691, 2004. [4]Junwang Tang, Zhigang Zou, Jinhua Ye, ¡°Efficient Photocatalytic Decomposition of Organic Contaminants on CaBi2O4 under Visible Light Irradiation¡±, Angew.Chem.Int.Edit.,43,pp4463-4466,2004 . [5]Junwang Tang, Zhigang Zou, Jinhua Ye, ¡°Photophysical and photocatalytic properties of AgInW2O8¡±, J. Phys. Chem. B, 107, pp.14265, 2003. [6]Jinhua Ye, Zhigang Zou, Mitsutake Oshikiri, Akiyuki Matsushita, Masahiko Shimoda, Motoharu Imai, and Toetsu Shishido, ¡°A novel hydrogen-evolving photocatalyst InVO4 active under visible light irradiation¡±, Chem. Phys. Lett., 356, pp.221-226, 2002. [7]Zhigang Zou, Jinhua Ye, and H. Arakawa, ¡°Role of R in Bi2RNbO7(R= Y, Rare earth): Effect on Band Structure and Photocatalytic Properties¡±, J. Phys. Chem. B, 106, pp.517-520, 2002. [8]Zhigang Zou, Jinhua Ye, and H. Arakawa, ¡°Surface Characterization of Nanoparticles of NiOx/In0.9Ni0.1TaO4: Effects on Photocatalytic activity¡±, J. Phys. Chem. B, 106, pp.13098-13101, 2002. [9]Zhigang Zou, Jinhua Ye, Kazuhiro Sayama and Hironori Arakawa, ¡°Direct splitting of water under visible light irradiation with an oxide semiconductor¡±, Nature, 414, pp.625-627, 2001. ×ÞÖ¾¸Õ ×ÞÖ¾¸Õ¡ÃÄÐ,55ÄꣳÔÂÉú£¬ÄϾ©´óѧÎïÀíϵ½ÌÊÚ.1993ÄêÈÕ±¾¶«¾©´óѧ²©Ê¿Ñо¿Éú±ÏÒµ£¬»ñ²©Ê¿Ñ§Î»¡£ÏÖΪÄϾ©´óѧ³¤½ÌØÆ¸½ÌÊÚ£¬ÐÂÐÍÉú̬ÄÜÔ´»·¾³²ÄÁÏÑÐ ¾¿ÖÐÐÄÖ÷ÈÎ,²©Ê¿Éúµ¼Ê¦£¬¼æÈÎÈÕ±¾¾¼Ã²úҵʡ²úÒµ×ۺϼ¼ÊõÑо¿ËùCOEÌØ±ðÑо¿Ô±£¬ÈÕ±¾ÎIJ¿¿ÆÑ§¼¼ÊõÊ¡ÎÄÖ°²ÄÁÏÑо¿»ú¹¹¿Í×ùÑо¿Ô±¡£³¤ÆÚ´ÓʲÄÁÏÎïÀí»¯Ñ§ ºÍ¹â´ß»¯µÄÑо¿£¬ÒÑ·¢±íÂÛÎÄ110ÓàÆª£¬ÉêÇëרÀû10Ïî¡£ Tel:+86-025-83686630 Fax: +86-025-83686632 E-mail:zgzou@nju.edu.cn;z.zou@aist.go.jp Nanjing University ,Nanjing Hankou Road 22, 210093 , China; Photoreaction Control Research Center (PCRC), National Institute of Advanced Industrial Science andTechnology (AIST), 1-1-1 Higashi, Tsukuba, Ibaraki 305-8563, Japan ÂÛÎÄ´ú±í×÷£º First Author: 1. Z. Zou, J. Ye, and H. Arakawa, ¡°Substitution effects of In by Al and Ga on photocatalytic and structural properties of Bi2InNbO7 photocatalysts¡±, Chem. of Materials, 13, 1765, 2001. 2. Z. Zou, J. Ye, K. Sayama and H. Arakawa, ¡°Direct splitting of water under visible light irradiation with an oxide semiconductor photocatalyst¡±, Nature, 414, 625, 2001. 3. Z. Zou, J. Ye, and H. Arakawa, ¡°Role of R in Bi2RNbO7(R= Y, Rare earth): Effect on Band Structure and Photocatalytic Properties¡±, J. Phys. Chem. B., 106, 517, 2002 4. Z. Zou, J. Ye, and H. Arakawa, ¡°Surface characterization of nano-particles of NiOx/In0.9Ni0.1TaO4: Effects on photocatalytic activity¡±, J. Phys. and Chem. B. 106, 13098, 2002. 5. J. Ye, Z. Zou, A. Matsushita, K. Oka, Y. Nishihara, T. Matsumoto ¡°Unusually large Tc Enchanment in PrBa2Cu3Ox under High Pressure¡±, Physical Review B, 58, R619, 1998. 6. J. Ye, Z. Zou, M. Oshikiri, M. Shimoda, A. Matsushita and T. Shishito, ¡°A novel hydrogen-evolving photocatalyst InVO4 active under visible light irradiation¡±, Chem. Phys. Lett., 356, 221, 2002. 7. J. Yin, Z. Zou, J. Ye,¡°Photophysical and photocatalytic properties of MIn0.5Nb0.5O3(M=Ca, Sr and Ba)¡±, J. Phys. and Chem. B. 107, 61, 2003. Óà¼ÃÃÀ Ïã¸ÛÖÐÎÄ´óŒW ¿ÆŒWð^ 162 ÊÒ (852) 2609 6268 (852) 2603 5057jimyu@cuhk.edu.hk 1956Äê2Ô³öÉú£¬½ÌÊÚ£¬ÏÖ¹¤×÷µ¥Î»ÎªÏã¸ÛÖÐÎÄ´óѧ¡£ Óà¼ÃÃÀ½ÌÊÚµÄÑо¿·¶Î§°üÀ¨»·¾³»¯Ñ§£¬¹â´ß»¯£¬ÄÉÃײÄÁϺͺÛÁ¿·ÖÎöµÈ¶à·½Ãæ¡£°ËÊ®Äê´ú³õ¹¥¶Á²©Ê¿Ñ§Î»Ê±£¬·¢Õ¹³öÒ»Ì×ʵÓõĺÛÁ¿½ðÊôÝÍÈ¡·½·¨£¬µÃµ½»·¾³·ÖÎö»¯ ѧ½ç¹ã·ºÊ¹Óá£×Ô°ËÊ®Äê´úÖÐÆð¿ªÊ¼²ÎÓè°ëµ¼Ìå¹â»¯Ñ§µÄÑо¿¡£1996Ä꽨Á¢¹â´ß»¯ÊµÑéÊÒÑо¿Ð´߻¯¼ÁµÄÖÆ±¸ºÍ¿ª·¢¡£Õâ¸öʵÑéÊҵõ½Ïã¸ÛÕþ¸®´´Ð¿Ƽ¼»ù½ð£¬ Ñо¿×ÊÖú¾Ö£¬»·¾³±£»¤Êð¼°¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðµÄÖ§³Ö£¬¹²Í¶ÈëÁËһǧÍòÔªµÄÑо¿¾·Ñ¡£ Óà½ÌÊÚ»ØÏã¸ÛºóÔÚSCIÊÕ¼µÄ¹ú¼ÊºËÐÄ¿¯ÎïÉÏ·¢±íÂÛÎij¬¹ý80ƪ£¬²¢ÉêÇ룵Ïî·¢Ã÷רÀû¡£×î½üÔÚÑо¿¹¤×÷ÉϸüÂÅÓÐÍ»ÆÆ£¬³É¹ûÔÚChem. Commun. (£·Æª)£¬Langmuir (£¶Æª)£¬ Appl. Catal. B (£µÆª)£¬J. Phys. Chem. B (£´Æª)£¬Chem. Mater. (£³Æª)£¬Angew. Chem. Int. Ed. (£²Æª)£¬µÈÖøÃûÔÓÖ¾ÉÏÓÐÏêϸµÄ½éÉÜ¡£ ´ú±íÐÔÂÛÎÄ/ÂÛÖø/רÀû¼°»ñ½±Çé¿ö£¨15ÌõÄÚ/Áí¸½CV£© 1.CMA Machinery and Equipment Design Award Hong Kong Award for Industry,2002,Synthesis and Characterization of Phosphated Mesoporous Titanium Dioxide with High Photocatalytic Activity Chemistry of Materials 2003,2280-2286 2. Photocatalytic Activity, Antibacterial Effect, and Photoinduced Hydrophilicity of TiO2 Films Coated on a Stainless Steel Substrate Environmental Science and Technology 2003,2296-2301 3. Microemulsion-Mediated Solvothermal Synthesis of Nanosized CdS-Sensitized TiO2 Crystalline Photocatalyst Chemical Communications 2003,1552-1553 4. Effects of F--doping on the Photocatalytic Activity and Microstructures of Nanocrystalline TiO2 Powders Chemistry of Materials 2002,3808-3816 5.Direct Sonochemical Preparation and Characterization of Highly Active Mesoporous TiO2 with a Bicrystalline Framework Chemistry of Materials 2002,4647-4653 5. Enhanced Photocatalytic Activity of Mesoporous and Ordinary TiO2 Thin Films by Sulfuric Acid Treatment Applied Catalysis B: Environmental 2002 31-43 ÕÔ½ø²Å Tel£º010-82610080 E-mail£ºjczhao@iccas.ac.cn Fax£º010-82616495 Address£ºÖпÆÔº»¯Ñ§Ëù¹â»¯Ñ§¿ª·ÅʵÑéÊÒ£¨100080£© ²©Ê¿£¬Ñо¿Ô±£¬²©µ¼, ÎïÀí»¯Ñ§×¨Òµ, 1960Äê³öÉú, 1994ÄêÈÕ±¾Ã÷ÐÇ´óѧÀíѧ²©Ê¿, 1995Äê4Ô »Ø¹ú¹¤×÷£¬ÏÖΪÖпÆÔº»¯Ñ§Ëù·Ö×Ó¿ÆÑ§ÖÐÐÄÑо¿Ô±¡¢²©Ê¿Éúµ¼Ê¦¡£1997Äê»ñ¹ú¼Ò½Ü³öÇàÄê»ù½ðÒÑÔÚ¹ú¼ÊºËÐÄ¿¯ÎïÉÏ·¢±íÂÛÎÄ100ÓàÆª£¬±»ËûÈËÒýÓÃ1000Óà ´Î¡£±»Æ¸Îª Environ. Sci. Technol.ÔÓÖ¾±àί£¬ÓÚ2005Äê»ñµÃ¹ú¼Ò×ÔÈ»¿ÆÑ§¶þµÈ½±. Ñо¿·½Ïò: Ø ÄÉÃײÄÁϼ°ÄÉÃ×¹â´ß»¯Ø »·¾³ÎÛȾÎï¹â»¯Ñ§Ñõ»¯·Ö½âз½·¨Ø »·¾³ÖÐÎÛȾÎï¹â»¯Ñ§·´Ó¦»úÀí Selected Publications X. Tao, W. Ma, and J. Zhao, et al., Efficient oxidative degradation of organic pollutants in the presence of iron tetrasulfophthalayanine under visible irradiation, Angew. Chem. Int. Ed., 113, 3013 (2001) W. Ma, J. Li, and J. Zhao, et al.,Efficient Degradation of Organic Pollutants Using Dioxygen Activated by Resin-Exchanged Iron (II) Bipyridine under Visible Irradiation, Angew. Chem. Int. Ed.£¬42, 1029 (2003) W. Zhao, W. Ma, and J. Zhao, et al., Efficient Degradation of Toxic Organic Pollutants with Ni2O3/TiO2-xB under Visible Irradiation, J. Am. Chem. Soc., 126, 4782 (2004) H. Zhu, X. Gao, and J. Zhao, et al., Hydrogen Titanate Nanofibers Covered with Anatase Nanocrystals:A Delicate Structure Achieved by the Wet Chemistry Reaction of the Titanate Nanofibers. J. Am.Chem. Soc., 126, 8380 -8381.(2004) H. Zhu, X. Gao, and J. Zhao, et al., Phase Transition between Nanostructures of Titanate and Titanium Dioxides via Simple Wet-Chemical Reactions, J. Am. Chem. Soc.,127, 6730-6736.(2005) H. Zhu, Z. Zheng, and J. C. Zhao., et al., Structural Evolution in a Hydrothermal Reaction between Nb2O5 and NaOH Solution: From Nb2O5 Grains to Microporous Na2Nb2O6•2/3H2O Fibers and NaNbO3 Cubes J. Am. Chem. Soc., 128, 2373-2384 (2006) W. Song, W. Ma, and J. Zhao, et al., Photochemical Oscillation of Fe(II)/Fe(III) Ratio Induced by Periodic Flux of Dissolved Organic Matter Environ. Sci. Technol., 39, 3121-3127.( 2005) J. Ma, W. Song, and J. Zhao, et al. Fenton Degradation of Organic Compounds Promoted by Dyes under Visible Irradiation. Environ. Sci. Technol., 39, 5810-5815.( 2005) ÀîÏæÖÐ Department of Civil & Structural Engineering, The Hong Kong Polytechnic University, Hunghom, Kowloon, Hong Kong Tel: (852) 2766 6016; Fax: (852) 2334 6389 Email:cexzli@polyu.edu.hk rof. X. Z. Li has been a full-time staff in the CSE Department of The Hong Kong Polytechnic University since 1993. Before joining PolyU, he spent seven years in research and consulting engineering in water and wastewater treatment and odour pollution control fields in the University of New South Wales, Australia. His major research and consultancy interests include physico-chemical and biological treatment of trade and industrial wastewaters with outstanding achievement in the area of the photocatalytic oxidation techniques. His works have resulted in the publication of over 100 articles in reputable journals and international conference proceedings. He is the editorial board member of China Water and Wastewater and also Urban Environment and Urban Ecology, and the regular reviewer for a number of renowned international journals. Prof. Li is also specialized in the field of odour sampling, measurement and control techniques. In 1995, he established the first odour research laboratory in HK to lead the odour research activities in this region as a local expert and also has been the advisor for China National Laboratory for Odour Pollution Control since 1999. Li X.Z., Liu H.L., Yue P.T. and Sun Y.P. (2000) Photoelectrocatalytic oxidation of rose Bengal using a Ti/TiO2 mesh electrode, Environ. Sci. Technol. 34(20), 4401-4406. Li X.Z. and Li F.B. (2001) Study of Au/Au3+-TiO2 photocatalysts toward visible photo-oxidation for water and wastewater treatment, Environ. Sci. Technol. 35(11), 2381-2387 Li X.Z., Li F.B., Yang C.L. and Ge W.K. (2001) The photo-catalytic activity of WOx-TiO2 under visible light irradiation, J. Photoch. Photobio. A, 141(2-3), 209-217 Li F.B. and Li X.Z.(2002) Photocatalytic properties of gold/gold ion-modified titanium dioxide for wastewater treatment, Appl. Catal. A., 228(1-2), 15-27. Li X.Z., Li F.B., Fan C.M. and Sun Y.P.(2002) Photocatalytic degradation of humic acid in aqueous solution using a Ti/TiO2 mesh photoelectrode, Water Res. 36(9) 2213-2222 Li X.Z. and Zhao Q.L. (2003): Recovery of ammonium-nitrogen from landfill leachate as a multi-nutrient fertilizer, Ecol. Eng. 20(2)171-181 Liu H., Li X.Z., Leng Y.J., Ma H.T., Li W.Z., Wu M. and Bao X.H. (2003) An alternative approach to ascertain the rate-determining step of TiO2 photoelectrocatalytic oxidation by electrochemical impedance spectroscopy, J. Physi. Chem. B. 107(34), 8988-8996. Li X.Z., Liu H. Cheng L.F. and Tong H.J. (2003) Photocatalytic oxidation using a new catalyst ¨C TiO2 microsphere for water and wastewater treatment, Environ. Sci. Technol. 37(17), 3989-3994. Li F.B., Li X.Z. and M.F. Hou (2004) The photocatalytic degradation of 2-Mercaptobenzothiazole in Aqueous La3+-TiO2 Suspension for Odour Control, Appl. Catal. B. 48(3), 185-194 Li X.Z. and Liu H.S. (2005) Development of an E-H2O2/TiO2 photoelectrocatalytic oxidation system for water and wastewater treatment, Environ. Sci. Technol. 39(12), 4614-4620 ¸¶ÏÍÖÇ Í¨Ñ¶µØÖ· ¸£ÖÝÊй¤ÒµÂ·523ºÅ ÓÊÕþ±àÂë 350002 ÁªÏµµç»° 0591-3738608 ´«¡¡¡¡Õæ 0591-3738608¡¡ µç×ÓÓʼþxzfu@fzu.edu.cn 1957ÄêÉú£¬±ÏÒµÓÚ±±¾©´óѧ»¯Ñ§Ïµ²¢»ñ²©Ê¿Ñ§Î»¡£1991~1993ÄêÔÚ±±¾©´óѧ´Óʲ©Ê¿ºóÑо¿£¬1993~1997ÄêÔÚÃÀ¹úÍþ˹¿µÐÇ¡ªÂóµÏÑ·´óѧ´ÓÊ ²©Ê¿ºóÑо¿£¬1997Äê6Ô»عú¡£ÏÖÈθ£ÖÝ´óѧ¸±Ð£³¤£¬¸£½¨Ê¡¹â´ß»¯ÖصãʵÑéÊÒÖ÷ÈΣ¬»¯Ñ§»¯¹¤Ñ§Ôº½ÌÊÚ£¬ÎïÀí»¯Ñ§¹ú¼ÒÖØµãѧ¿ÆÑ§Êõ´øÍ·ÈË£¬²©Ê¿Éúµ¼Ê¦¡£¹ú ÎñԺѧλίԱ»áѧ¿ÆÆÀÒé×é³ÉÔ±£¬¹úÎñÔº¡°Õþ¸®ÌØÊâ½òÌùר¼Ò¡±£¬¹ú¼Ò°ÙǧÍòÈ˲ʤ³ÌÒ»¡¢¶þ²ã´ÎÈËÑ¡£¬¸£½¨Ê¡Ãö½Ñ§Õ߼ƻ®Ê×ÅúÌØÆ¸½ÌÊÚ£¬¸£½¨Ê¡ÓÅÐãר¼Ò¡£³¤ÆÚ ´ÓÊÂÎïÀí»¯Ñ§¿ÆÑй¤×÷£¬´´½¨ÁËÎÒ¹úµÚÒ»¸ö¹â´ß»¯Ñо¿Ëù£¬Áìµ¼½¨É踣½¨Ê¡¹â´ß»¯¼¼Êõ¹¤³ÌÑо¿ÖÐÐÄ£¬ÊÇÎÒ¹ú¹â´ß»¯ÁìÓòÖªÃûѧÕß¡£Ö÷³Ö³Ðµ£Á˹ú¼Ò¼ÆÎ¯ÖØ´ó¿Æ¼¼¹¥ ¹Ø¡¢¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÖØµã¡¢½ÌÓý²¿¹Ç¸É½Ìʦ×ÊÖú¼Æ»®¡¢¸£½¨Ê¡×ÔÈ»¿ÆÑ§»ù½ðÖØµã¡¢¸£½¨Ê¡¿Æ¼¼¼Æ»®ÖØ´óµÈÊ®ÓàÏî»ù´¡ºÍÓ¦ÓÃÑо¿ÏîÄ¿£¬ÔÚ¹â´ß»¯»ù´¡ÀíÂÛ¡¢Ó¦ÓÃÑÐ ¾¿ºÍ²úÒµ»¯µÈÁìÓò¿ªÕ¹ÁËÉîÈë¶ø¸»Óгɾ͵Ť×÷¡£2001Äê³öÉ«µØÍê³ÉÁË¡°¹â´ß»¯¹¦ÄܲÄÁϼ°ÏµÁвúÆ·²úÒµ»¯Ç°ÆÚ¹Ø¼ü¼¼ÊõÑо¿¡±ÖØ´ó¿Æ¼¼¹¥¹ØÏîÄ¿£¬¸Ã³É¹û±»¹ú ¼Ò¼ÆÎ¯ÊÚÓè¡°¹ú¼Ò¸ß¼¼Êõ²úÒµ»¯Ê¾·¶¹¤³Ì¡±¡£·¢±íѧÊõÂÛÎÄ80ÓàÆª£¬±»SCI¡¢EIÊÕ¼32ƪ¡¢ÒýÓÃ130´Î£»»ñ11ÏîרÀû£¬ÆäÖÐ3ÏîÒÑʵÏÖ²úÒµ»¯²¢È¡µÃÏÔ ÖøÉç»á¾¼ÃÐ§Òæ£»2002Äê»ñµÃ¸£½¨Ê¡¿ÆÑ§¼¼ÊõÒ»µÈ½±ºÍÖйúʯ»¯Ð»á¿Æ¼¼½ø²½Ò»µÈ½±¡£ ![]() |

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Lv K,; Xu Y. Effects of polyoxometalate and fluoride on adsorption and photocatalytic degradation of organic dye X3B on TiO2: The difference in the production of reactive species. J. Phys. Chem. B. 2006, 110, 6204-6212. 2. Ma, J. ; Ma, W.; Song, W.; Chen, C.; Tang, Y.; Zhao, J.; Huang, Y.; Xu, Y.; Zang, L. Fenton degradation of organic pollutants in the presence of low-molecular-weight organic acids: cooperative effect of quinone and visible light. Environ. Sci. Technol. 2006, 40, 618-624. 3. Xiong, Z.;Xu, Y.; Zhu, L.; Zhao, J. Enhanced photo degradation of 2,4,6-trichlophenol over palladium phthalocyaninesulfonate modified organobentonite. Langmuir. 2005, 21, 10602-10607. 4. Song, W.; Ma, W.; Ma, J.; Chen, C.; Zhao, J.; Huang, Y.; Xu, Y. Photochemical oscillation of Fe(II)/ Fe(III) ratio induced by periodic flux of dissolved organic matter. Environ. Sci. Technol. 2005, 39, 3121-3127. 5. Xiong, Z.;Xu, Y.; Zhu, L.; Zhao, J. Photo sensitized oxidation of substituted phenols on aluminum phthalocyanine-intercalated organo-clay. Environ. Sci. Technol. 2005, 39, 651-657. 6. Hu, M.; Xu, Y.; Zhao, J. Efficient photosensitized degradation of 4-chlorophenol over immobilized aluminum tetrasulfophthalocyanine in the presence of hydrogen peroxide. Langmuir. 2004, 20, 6302-6307. 7. Cheng, M.; Ma, W.; Li, J.; Huang, Y.; Zhao, J.; Wen, Y.; Xu, Y. Visible-light-assisted degradation of dye pollutants over Fe(III)-loaded resin in the presence of H2O2 at neutral pH values. Environ. Sci. Technol. 2004, 38, 1569-1575. 8. Li, J.; Ma, W.; Huang, Y.; Tao, X.; Zhao, J.;, Xu, Y. Oxidative degradation of organic pollutants utilizing molecular oxygen and visible light over a supported catalyst of Fe(bpy)3+ in water. Appl. Catal. B. 2004, 48, 17-24. 9. Ma, W.; Li, J.; Tao, X.; He, J.; Xu, Y.; Yu, J.; Zhao, J. Efficient degradation of organic pollutants by using dioxygen activated by resin-exchanged iron(II) bypyridine under visible light irradiation. Angew. Chem. Int. Ed. 2003, 42, 1029-1031. 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X. Yu, D. S. Xu*, ¡°Single-crystalline TiO 2 Nanorods: Highly Active and Easily Recycled Photocatalysts¡±, Appl. Catal. B, 2006, in press. S. H. Jiao, L. F. Xu, K. Jiang, D. S. Xu * , ¡°Well-defined Non-spherical Copper Sulfide Mesocages with Single-crystalline Shells by Shape-controlled Cu 2 O Crystal Templating¡±, Adv. Mater., 2006 , 18, 1174. L. F. Xu, Y. Guo, Q. Liao, J. P. Zhang, D. S. Xu, * ¡°Morphological control of ZnO nanostructures by electrodeposition¡±, J. Phys. Chem. B, 2005, 109, 13519. Y. Q. Liang, L. Zhai, X. S. Zhao, D. S. Xu * , ¡°Band-gap engineering for semiconductor nanowires through composition modulation¡±, J. Phys. Chem. B, 2005 , 109 , 7120. Y. Q. Liang, C. G. Zhen, D. C. Zou, D. S. Xu *, ¡°Preparation of Free-standing Nanowire Arrays on Conductive Substrates¡±, J. Am. Chem. Soc., 2004 , 126 , 16338-16339. C. Mu, Y. X. Yu, R. M. Wang, K. Wu, D. S. Xu *, ¡°Uniform. metal nanotube arrays by multi-step template replication and electrodeposition¡±, Adv. 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Am. Chem. Soc., J. Phys. Chem. B, Tetrahedron Letters, Journal of Hazardous Materials,Materials Research Bulletin, Dyes and Pigments µÈ¹ú¼ÊÔÓÖ¾µÄÌØÔ¼Éó¸åÈË¡£ÔÚJ. Phys. Chem.B£¬Langmuir£¬J.Catal.; Micropores and Mesopores MaterialsµÈSCIÊÕ¼ÆÚ¿¯ÉÏ·¢±íÂÛÎÄ60ÓàÆª£¬·¢±íÂÛÎÄ×ÜÊý³¬¹ý100ƪ£¬ÂÛÎı»ÒýÓðÙÓà´Î¡£Ö÷±àÖø×÷1²¿£¬²Î±àÖø×÷3²¿¡£ÁíÍ⻹ÉêÇëÖйú·¢Ã÷ רÀû5Ïî¡£ Ö÷ÒªÑо¿·½Ïò£ºÄÉÃײÄÁÏ£¬¹â´ß»¯£¬Óлú-ÎÞ»ú¹¦ÄܲÄÁÏ£¬¹â»¯Ñ§£¬»·¾³ÎÛȾÓë¿ØÖÆ ´ú±íÐÔÂÛÎÄ£º Jinlong Zhang, Terukazu Ayusawa, Madoka Minagawa, Hiromi Yamashita and Masakazu Anpo, Investigations of TiO2 Photocatalysts for the Decomposition of NO in the Flow System - (1) - The Role of Pretreatment and Reaction Condition in the Photocatalytic Efficiency-.¡°J. Catal¡±, 2001£¬198£¬1. Jinlong Zhang, Yun Hu, Masaya Matsuoka, Hiromi Yamashita, Madoka Minagawa, Hisao Hidaka and Masakazu Anpo, Relationship between the Local Structures of Titanium Oxide Photocatalysts and Their Reactivities in the Decomposition of NO, ¡°J. Phys. Chem. B¡±, 2001, 105, 8395. H. Nishiguchi, J-L. Zhang, M. Anpo, Characteristics of the Phosphorescence Spectra of Benzophenone adsorbed on Ti-Al Binary Oxides, ¡°Langmuir¡± 2001, 17, 3958. H. Nishiguchi, J-L. Zhang, M. Anpo, H, Masuhara, Photochemical Properties of Benzophenone Adsorbed on Ti-Al Binary Oxides: The Effects of the surface Acidity, ¡°J. Phys. Chem. B¡±2001, 105, 3218. Haijun Chen, Masaya Matsuoka, Jinlong Zhang, and Masakazu Anpo The Reduction Behavior. of the Cu Ion Species Exchanged into Y Zeolite during the Thermovacuum Treatment, J. Catal.2004, 228(1), 75-79 Haijun Chen, Masaya Matsuoka, Jinlong Zhang, and Masakazu Anpo The Effect of the Si/Al Ratio on the Photoluminescence Properties of Cu(I)SAPO-5 Catalysts and Their Photocatalytic Reactivity for the Decomposition of N2O into N2 and O2, Chem. Lett., 33(10), 1254 Xuedong Sun, Jinlong Zhang*, Bin He, The synthesis and photochemical characterization of meso tetra-thienyl porphyrins, J. Photochem. & Photobiochem. A Chem.2005,172(3), 283-288 Maocheng Yan, Feng Chen, Jinlong Zhang*,, and Masakazu Anpo, Preparation of controllable crystalline titania and study on the photocatalytic property, J. Phys. Chem. 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Photochem.Photobio. A: chemistry, 125,135,1999, Yuan Lin, JingBo Zhang, Feng Yin, XuRui Xiao,Interfacial charge transfer behaviours of nanoparticulate CdSe thin film electrodes , Zeitschrift fuer Physikalisck Chemie, 1999 ,213,1 Yuan Lin, Rui Feng Lin, Xiao Wen Zhou, Jin Bo Zhang, Xu Rui Xiao, Scanning Tunneling Microscope and Scanning Tunneling Spectroscopic Studies of Nanocrystalline CdSe Thin Film, Chinese Chemical Letters, 1997, 8, 831, Zhang Jingbo, Lin Yuan, Ying Feng Xiao Xurui,Studies On The Interfacial Charge Transfer Processes of Nanocrystalline CdSe Thin Film Electrodes By Intensity Modulated Photo-current Spectroscopy, Science in China (series B) 2000,43,443 ![]() |

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Lv K,; Xu Y. Effects of polyoxometalate and fluoride on adsorption and photocatalytic degradation of organic dye X3B on TiO2: The difference in the production of reactive species. J. Phys. Chem. B. 2006, 110, 6204-6212. 2. Ma, J. ; Ma, W.; Song, W.; Chen, C.; Tang, Y.; Zhao, J.; Huang, Y.; Xu, Y.; Zang, L. Fenton degradation of organic pollutants in the presence of low-molecular-weight organic acids: cooperative effect of quinone and visible light. Environ. Sci. Technol. 2006, 40, 618-624. 3. Xiong, Z.;Xu, Y.; Zhu, L.; Zhao, J. Enhanced photo degradation of 2,4,6-trichlophenol over palladium phthalocyaninesulfonate modified organobentonite. Langmuir. 2005, 21, 10602-10607. 4. Song, W.; Ma, W.; Ma, J.; Chen, C.; Zhao, J.; Huang, Y.; Xu, Y. Photochemical oscillation of Fe(II)/ Fe(III) ratio induced by periodic flux of dissolved organic matter. Environ. Sci. Technol. 2005, 39, 3121-3127. 5. Xiong, Z.;Xu, Y.; Zhu, L.; Zhao, J. Photo sensitized oxidation of substituted phenols on aluminum phthalocyanine-intercalated organo-clay. Environ. Sci. Technol. 2005, 39, 651-657. 6. Hu, M.; Xu, Y.; Zhao, J. Efficient photosensitized degradation of 4-chlorophenol over immobilized aluminum tetrasulfophthalocyanine in the presence of hydrogen peroxide. Langmuir. 2004, 20, 6302-6307. 7. Cheng, M.; Ma, W.; Li, J.; Huang, Y.; Zhao, J.; Wen, Y.; Xu, Y. Visible-light-assisted degradation of dye pollutants over Fe(III)-loaded resin in the presence of H2O2 at neutral pH values. Environ. Sci. Technol. 2004, 38, 1569-1575. 8. Li, J.; Ma, W.; Huang, Y.; Tao, X.; Zhao, J.;, Xu, Y. Oxidative degradation of organic pollutants utilizing molecular oxygen and visible light over a supported catalyst of Fe(bpy)3+ in water. Appl. Catal. B. 2004, 48, 17-24. 9. Ma, W.; Li, J.; Tao, X.; He, J.; Xu, Y.; Yu, J.; Zhao, J. Efficient degradation of organic pollutants by using dioxygen activated by resin-exchanged iron(II) bypyridine under visible light irradiation. Angew. Chem. Int. Ed. 2003, 42, 1029-1031. 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X. Yu, D. S. Xu*, ¡°Single-crystalline TiO 2 Nanorods: Highly Active and Easily Recycled Photocatalysts¡±, Appl. Catal. B, 2006, in press. S. H. Jiao, L. F. Xu, K. Jiang, D. S. Xu * , ¡°Well-defined Non-spherical Copper Sulfide Mesocages with Single-crystalline Shells by Shape-controlled Cu 2 O Crystal Templating¡±, Adv. Mater., 2006 , 18, 1174. L. F. Xu, Y. Guo, Q. Liao, J. P. Zhang, D. S. Xu, * ¡°Morphological control of ZnO nanostructures by electrodeposition¡±, J. Phys. Chem. B, 2005, 109, 13519. Y. Q. Liang, L. Zhai, X. S. Zhao, D. S. Xu * , ¡°Band-gap engineering for semiconductor nanowires through composition modulation¡±, J. Phys. Chem. B, 2005 , 109 , 7120. Y. Q. Liang, C. G. Zhen, D. C. Zou, D. S. Xu *, ¡°Preparation of Free-standing Nanowire Arrays on Conductive Substrates¡±, J. Am. Chem. Soc., 2004 , 126 , 16338-16339. C. Mu, Y. X. Yu, R. M. Wang, K. Wu, D. S. Xu *, ¡°Uniform. metal nanotube arrays by multi-step template replication and electrodeposition¡±, Adv. Mater., 2004 , 16, 1550. 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Am. Chem. Soc., J. Phys. Chem. B, Tetrahedron Letters, Journal of Hazardous Materials,Materials Research Bulletin, Dyes and Pigments µÈ¹ú¼ÊÔÓÖ¾µÄÌØÔ¼Éó¸åÈË¡£ÔÚJ. Phys. Chem.B£¬Langmuir£¬J.Catal.; Micropores and Mesopores MaterialsµÈSCIÊÕ¼ÆÚ¿¯ÉÏ·¢±íÂÛÎÄ60ÓàÆª£¬·¢±íÂÛÎÄ×ÜÊý³¬¹ý100ƪ£¬ÂÛÎı»ÒýÓðÙÓà´Î¡£Ö÷±àÖø×÷1²¿£¬²Î±àÖø×÷3²¿¡£ÁíÍ⻹ÉêÇëÖйú·¢Ã÷ רÀû5Ïî¡£ Ö÷ÒªÑо¿·½Ïò£ºÄÉÃײÄÁÏ£¬¹â´ß»¯£¬Óлú-ÎÞ»ú¹¦ÄܲÄÁÏ£¬¹â»¯Ñ§£¬»·¾³ÎÛȾÓë¿ØÖÆ ´ú±íÐÔÂÛÎÄ£º Jinlong Zhang, Terukazu Ayusawa, Madoka Minagawa, Hiromi Yamashita and Masakazu Anpo, Investigations of TiO2 Photocatalysts for the Decomposition of NO in the Flow System - (1) - The Role of Pretreatment and Reaction Condition in the Photocatalytic Efficiency-.¡°J. Catal¡±, 2001£¬198£¬1. Jinlong Zhang, Yun Hu, Masaya Matsuoka, Hiromi Yamashita, Madoka Minagawa, Hisao Hidaka and Masakazu Anpo, Relationship between the Local Structures of Titanium Oxide Photocatalysts and Their Reactivities in the Decomposition of NO, ¡°J. Phys. Chem. B¡±, 2001, 105, 8395. H. 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Photochem.Photobio. A: chemistry, 125,135,1999, Yuan Lin, JingBo Zhang, Feng Yin, XuRui Xiao,Interfacial charge transfer behaviours of nanoparticulate CdSe thin film electrodes , Zeitschrift fuer Physikalisck Chemie, 1999 ,213,1 Yuan Lin, Rui Feng Lin, Xiao Wen Zhou, Jin Bo Zhang, Xu Rui Xiao, Scanning Tunneling Microscope and Scanning Tunneling Spectroscopic Studies of Nanocrystalline CdSe Thin Film, Chinese Chemical Letters, 1997, 8, 831, Zhang Jingbo, Lin Yuan, Ying Feng Xiao Xurui,Studies On The Interfacial Charge Transfer Processes of Nanocrystalline CdSe Thin Film Electrodes By Intensity Modulated Photo-current Spectroscopy, Science in China (series B) 2000,43,443 |

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(3) Hu Chun, Wang Yizhong, Tang Hongxiao, Preparation and characterization of surface bond-conjugated TiO2/SiO2 and photocatalysis for azo dyes£¬Applied Catalysis B, Environmental, 2001, 30:277. (4) Hu Chun, Wang Yizhong, Tang Hongxiao, Influence of adsorption on the photodegradation of various dyes using surface bond -conjugated TiO2/SiO2 photocatalyst, Applied Catalysis B, Environmental, 2001£¬3 5£º95. (5) Hu Chun, Tang Yuchao, Yu Jimmy C., Wong Po Keung, Photocatalytic degradation of cationic blueX-GRL adsorbed on TiO2/SiO2 photocatalyst, Applied Catalysis B, Environmental, 2003£¬40:131. (6) Hu Chun, Yu Jimmy C., Hao Zhengping, Wong Po Keung, Photocatalytic degradation of triazine-containing azo dyes in aqueous TiO2 suspensions, Applied Catalysis B, Environmental, 2003£¬42:47. (7) Hu Chun, Yu Jimmy C., Hao Zhengping, Wong Po Keung, Effects of acidity and inorganic ions on the photocatalytic degradation of different azo dyes, Applied Catalysis B, Environmental, 2003£¬46:35. (8) Hu Chun, Tang Yuchao, Jiang Zheng, Hao Zhengping, Tang Hongxiao, Wong Po Keung, Characterization and photocatalytic activity of noble-metal -supported surfaceTiO2/SiO2, Applied Catalysis A: General, 2003, 253:389. (9) Hu Chun, Tang Yuchao, Tang Hongxiao, Characterization and photocatalytic activity of transition-metal-supported surface bond-conjugated TiO2/SiO2, Catalysis Today, 2004, 90:325. (10) Hu Chun, Tang Yuchao, Lin Lanyu, Hao Zhengping, Wang yizhong, Tang Hongxiao, Effects of inorganic anions on the photoactivity of various photocatalysts under different conditions, J. Chem. Tech. and Biotech., 2004, 79£¬ 247-252. ÖìÓÀ·¨, Àíѧ²©Ê¿£¬½ÌÊÚ£¬²©Ê¿Éúµ¼Ê¦¡£ ÁªÏµ·½·¨£º ±±¾©100084 Ç廪´óѧ»¯Ñ§Ïµ µç»°010-62787601; ´«Õæ010-62787601; Email£ºmailto://zhuyf@sam.chem.tsinghua.edu.cn 1964Äê11ÔÂ23ÈÕ³öÉúÓÚÖлªÈËÃñ¹²ºÍ¹ú,½ËÕÊ¡,½ÒõÊС£ 1981Ä꿼ÈëÄϾ©´óѧ£¬»¯Ñ§Ïµ¡£×¨ÒµÎªÎïÀí»¯Ñ§£¬Ñо¿·½ÏòΪºÏ³É°±ÖÐα任´ß»¯¼ÁµÄÎü¸½ÐÔÄÜ¡£ 1985Äê´ÓÄϾ©´óѧ±ÏÒµ£¬»ñµÃÀíѧѧʿѧ룬²¢ÓÚͬÄ꿼Èë±±¾©´óѧ£¬»¯Ñ§Ïµ¹¥¶Á˶ʿѧλ¡£¾Í¶ÁÓÚ¹ðÁÕÁÕ½ÌÊÚºÍÌÆÓÐì÷½ÌÊÚ£¬×¨ÒµÎªÎïÀí»¯Ñ§£¬Ñо¿·½ÏòΪ¼Ó ÇâÍѵª´ß»¯¼ÁµÄ¹ÌÌå±íÃæ»¯Ñ§¡£ 1988ÄêÑо¿Éú±ÏÒµ£¬»ñµÃ˶ʿѧλ¡£Í¬Äê½øÈëÇ廪´óѧ£¬»¯Ñ§Ïµ¹¤×÷²¢¹¥¶Á²©Ê¿Ñ§Î»¡£¾Í¶ÁÓÚ²ÜÁ¢ÀñºÍËÎÐÄçù½ÌÊÚ¡£Ñо¿·½ÏòΪ¹ÌÌ屡Ĥ²ÄÁϵıíÃæÓë½çÃæÀ©É¢ ·´Ó¦µÄÑо¿£¬ÓÚ1995Äê»ñµÃÀíѧ²©Ê¿Ñ§Î»¡£ÔÚ´ËÆÚ¼ä£¬¹²ÔÚ¹úÄÚÍâѧÊõ¿¯ÎïÉÏ·¢±íÂÛÎÄ30ÓàÆª¡£´Ó1995Äê10Ôµ½1997Äê3Ô£¬»ñµÃÈÕ±¾Õþ¸®½±Ñ§ ½ð£¬ÔÚ°®æÂ´óѧ»¯Ñ§Ïµ´Óʲ©Ê¿ºóÑо¿¹¤×÷¡£¾Í¶ÁÓÚºÓÒ°²©Ö® (Hiroyuki Kawano)½ÌÊÚ£¬Ö÷Òª´ÓʹÌÌå±íÃæÂ±»¯ÎïµÄÀë×ÓTPDÑо¿¡£ 1997Äê3Ô»عúºó£¬ÔÚÇ廪´óѧ»¯Ñ§Ïµ¼ÌÐø´ÓʱíÃæ»¯Ñ§£¬»·¾³´ß»¯ºÍ±¡Ä¤²ÄÁÏ»¯Ñ§Ñо¿¡£Ñо¿ÖصãÖ÷ÒªÔÚÓÚ £¨1£©Èí»¯Ñ§·¨ÖƱ¸ÄÉÃ׸´ºÏÑõ»¯Î﹦ÄÜ·ÛÌåºÍ±¡Ä¤²ÄÁÏ£» £¨2£©½ð¸Õʯ±íÃæ½ðÊô»¯µÄÑо¿£» £¨3£©¹â´ß»¯ÔÚ»·¾³¾»»¯ÉϵÄÓ¦ÓÃÑо¿£» £¨4£©ÐÂÐÍÆû³µÎ²Æø¾»»¯´ß»¯¼ÁµÄÄ£ÐÍ»¯Ñо¿£» £¨5£©»¯Ñ§Óë»·¾³´«¸ÐÆ÷µÄÑо¿£» £¨6£©ÄÉÃ׽ṹ²ÄÁϵĺϳɼ°ÆäÓ¦ÓÃÑо¿£» £¨7£©´ß»¯È¼ÉÕºÍÑõ»¯ÔÚ¹¤Òµ·ÏÆøºÍ·ÏË®¾»»¯ÉϵÄÓ¦ÓᣠĿǰµÄÑо¿·½Ïò£º £¨1£©±íÃæÓë½çÃæ»¯Ñ§Ñо¿£ºXPSºÍAESµÄÖ¸ÎÆÐÅÏ¢Ñо¿£»±¡Ä¤²ÄÁϵıíÃæÓë½çÃæ»¯Ñ§½á¹¹Ñо¿£» £¨2£©»·¾³´ß»¯¾»»¯Ñо¿£ºÄÉÃ×±¡Ä¤¹â´ß»¯Ñо¿ÒÔ¼°´ß»¯Ñõ»¯Ñо¿¼°ÆäÔÚÊÒÄÚ¿ÕÆø¾»»¯ºÍ¹¤Òµ·ÏÆø¾»»¯ÉϵÄÓ¦Óã» £¨3£©ÄÉÃ׽ṹ¿ØÖƺϳɼ°¹¦Äܱ¡Ä¤£» £¨4£©ÄÉÃײÄÁϵÄÓ¦ÓÃÑо¿¡£ ½üÄêµÄÑо¿¹¤×÷»ñµÃÁË¡°¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ð¡±£¬¡°½ÌÓý²¿ÓÅÐãÇàÄê½Ìʦ×ÊÖú¼Æ»®¡°ºÍ¡±½ÌÓý²¿¿çÊÀ¼ÍÓÅÐãÈ˲Å×ÊÖú¼Æ»®¡°×ÊÖú¡£´ËÍ⣬»¹»ñµÃP&G±¦½à¹ú ¼ÊºÏ×÷»ù½ð£¬±±¾©ÊпÆÎ¯»ù½ðÒÔ¼°ÆóÒµ½çµÄ×ÊÖú£¬Æ½¾ùÿÄêµÄÑо¿¾·Ñ100Íò×óÓÒ¡£Ñо¿¹¤×÷È¡µÃÁ˳¤×ãµÄ½ø²½£¬Ôø»ñµÃ½ÌÓý²¿¿Æ¼¼½ø²½½±¶þµÈ½±ºÍÈýµÈ½±¸÷Ò» ´Î£¬Öйú·ÖÎö²âÊÔлáµÄ¡°CAIA½±¡±Ò»µÈ½±Ò»´ÎºÍ¶þµÈ½±Èý´Î£¬²¢ÔÚ¹úÄÚÍâºËÐÄѧÊõ¿¯ÎïÉÏ·¢±íÁË120ÓàÆªÑо¿ÂÛÎÄ£¨ÆäÖÐSCIÊÕ¼ÂÛÎÄ80ÓàÆª£©£¬ÉêÇë ¹ú¼Ò·¢Ã÷רÀû10Ï²úÒµ»¯¼¼Êõ2ÏѧÊõ¼æÖ°ÓУºÖйú»¯Ñ§»á¡¶»¯Ñ§Ñ§±¨¡·±àί£¬Öйú»·¾³¿ÆÑ§Ñ§»á´óÆø·Ö»áÀíÊ£¬ÖйúÕæ¿Õѧ»áÄÉÃ×Óë±íÃæ×¨ÒµÎ¯Ô±»áίԱ£¬ ±±¾©Ñ̲Ýѧ»áÀíÊÂÒÔ¼°¡¶»¯Ñ§Ñ§±¨¡·£¬¡¶¸ßµÈѧУ»¯Ñ§Ñ§±¨¡·£¬¡¶ÎïÀí»¯Ñ§Ñ§±¨¡·£¬¡¶´ß»¯Ñ§±¨¡·£¬¡¶¿ÆÑ§Í¨±¨¡·µÄÉó¸åÈË¡£ ½üÆÚ·¢±íµÄ²¿·ÖÂÛÎÄĿ¼£º Yongfa Zhu, Jinjun Shi, Zhenyu Zhang, Chao Zhang, Xinrong Zhang £¬¡±Development of a New Gas Sensor Utilizing Chemiluminescence on Nanosized Titanium Dioxide¡± Analytical Chemistry£¬£¨2002£©£¬74(1)£¬120-124 Liu GH, Zhu YF, Zhang XR, Xu BQ,Chemiluminescence determination of chlorinated volatile organic compounds by conversion on nanometer TiO2, ANALYTICAL CHEMISTRY (2002) 74 (24): 6279-6284 Li Zhang£¬Yongfa Zhu, Yu He£¬Wei Li£¬Hongbin Sun, ¡°The sysnthsis of mesoporous TiO2 film on stainless steel substracte¡±, Applied Catalysis B, Environmental£¬(2003)40£¨4£©p287 ¨C 292 Hai Wang,Yongfa Zhu, Ruiqin Tan, Wenqing Yao£¬Poisoning Mechanism of sulfur dioxide for Perovskite La0.9Sr0.1CoO3 Model Catalysts£¬Catal.Letters, £¨2002£©82 (3-4)£º199-204 Jing Shang,Yongfa Zhu,Yaoguo Du,Zili Xu,¡±Comparative Studies on the Deactivation and Regeneration of TiO2 Nanoparticles in Three Photocatalytic Oxidation System:C7H16,SO2 and C7H16-SO2¡±,Journal of SolidState Chemistry, (2002)166,395-399. 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ÀîÐÂÓ µç×ÓÓÊÏ䵨ַ:xyli@dlut.edu.cn ´óÁ¬Àí¹¤´óѧ»·¾³¿ÆÑ§Ó빤³ÌѧԺ, ½ÌÊÚ£¬²©Ê¿Éúµ¼Ê¦ Ñо¿·½Ïò¼°Ñо¿ÁìÓò 1£®»·¾³´ß»¯£¨¹âµç´ß»¯£»Î¢²¨´ß»¯£»µç´ß»¯Ñõ»¯Ó뻹ԣ»¶àÏà´ß»¯µÈ£© 2£®»·¾³Ó¦ÓòÄÁÏ£¨ÄÉÃײÄÁÏ£»¸ßЧÎü¸½²ÄÁÏ£»¸ÄÐÔÉúÎïÌîÁÏµÈ 3£®ÄÉÃײÄÁϱíÃæ»¯Ñ§ÎïÀí¼°Æ×Ñ§ÌØÐÔÑо¿ ´ú±íÐÔÂÛÎÄ (1) Xinyong Li, Xie Quan , Yue Po-Lock., 2004. Synthesis and Photocatalytic Properties of Quantum Confined Titanium Dioxide Nanoparticle., Scripta Materialia, 50£¨4£©: 49-505 (2) Shaogui Yang, Xie Quan, Xinyong Li et al., 2004. Preparation, Characterization and Photoelectrocatalytic Properties of Nanocrystalline Fe2O3/TiO2, ZnO/TiO2, and Fe2O3/ZnO/TiO2 Composite Film Electrodes towards Pentachlorophenol Degradation, Physical Chemistry Chemical Physics, 6, 659-664. (3)Xinyong Li, Guohua Chen, Yue Po-Lock, Charles Kutal., 2003. Photocatalytic oxidation of cyclohexane over TiO2 nanoparticles by molecular oxygen under mild conditions., J. Chem Tech and Biotech , 78, 1246-151 (4)Xinyong Li£¬ Po-Lock Yue£¬ Charles Kutal£¬2003. Synthesis and Photocatalytic Oxidation Properties of Iron Doped Titanium Dioxide¡¡Nanosemiconductor Particles£¬New Journal of Chemistry, 27, 1264 - 1269. (5)Xinyong Li, Charles Kutal, 2003. Synthesis and characterization of superparamagnetic CoxFe3-xO4 nanoparticles, Journals of Alloys & Compounds, 349(1-2): 264-268. (6) Kutal C, Yamaguchi Y, Ding W, Sanderson CT, Li XY, Gamble G, Amster IJ, Harvesting the fields of inorganic and organometallic photochemistry for new photoinitiators, PHOTOINITIATED POLYMERIZATION ACS SYMPOSIUM SERIES, 2003, 847, 332-350. (7) Xinyong Li, Charles Kutal, 2002. Photocatalytic Selective Epoxidation of Styrene by Molecular Oxygen over Highly Dispersed Titanium Dioxide Species on Silica, Journals of Materials Sciences Letters, 21: 1525-1527. (8)Xinyong Li, Charles Kutal., 2002. Preparation and characterization of superparamagnetic nanocrystalline cobalt ferrite materials, Journal of Materials Science Letters , 23: 1881-1883. (9)Sanderson CT, Kutal C, Li XY, Amster IJ, Mize T, Organometallic and inorganic photoinitiators for the anionic polymerization of (methyl)acrylate, 2002. ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 224: 682-INOR Part 1 AUG 18 2002 (10) Su BT, Li XY, Liu XH, 2001. Characterization of Nanocrystalline ZnFe2O4 prepared by using polyvinyl alcohol gel method, INDIAN JOURNAL OF CHEMISTRY A , 40(11): 1207-1209. (11) Kutal C, Yamaguchi Y. W.D, Li XY, Sanderson CT, 2001. Amster IJ, Harvesting the Fields of Inorganic and Organometallic Photochemistry for New Photoinitiators. ABSTR PAP AM CHEM S, 222: 327-338. (12) Kutal C, Johnson MK, Yamaguchi Y, Dhawan IK, Li XY, Ding W, 2000. On the charge-transfer character of the long-wavelength absorption bends in benzoyl-substituted ferrocenes, ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 219: 428-INOR Part 1 MAR 26 (13)F.Sun, M. Wu, W. Li, X.Li, , 1998. Study of¡¡the Relationship between the Optical Surface State Characteristics and Photocatalytic Activities of TiO2 nanoparticles., Chinese Journals of Catalysis, 1998, 19(2), 121. (14) F. Sun, M. Wu, W. Li, X.Li, F. Wang, 1998. Relationship between Crystallite Size and Photocatalytic Activity of Titanium Dioxide., Chinese Journals of Catalysis, 19(3), 229-233. (15)M. Wu , W. Li , F. Wang, X. Li, F. Sun, W. Gu, 1998. Photocatalytic Production of Ethylene Glycol from Aqueous Methanol Solution by Nanometer ZnS, Chinese Journals of Catalysis,¡¡19(6), 601-604. (16)Su BT, He YF, Li XY, Lin EH., 1997. Photocatalytic Oxidation of Cyclohexane on Utra-fine TiO2 Particles,¡¡INDIAN JOURNAL OF CHEMISTRY A, 36 (9): 785-788. (17)Xinyong Li, Gongxuan Lu and Shuben Li., 1996. Synthesis and Characterization of Fine ZnFe2O4 Particles by Low Temperature Method, J. Alloys and Compounds, 235: 150-155. (18)Xinyong Li, Gongxuan Lu and Shuben Li.,1996. Preparation and Properties of Strontium Ferrite Ultrafine Powders by Using the PVA Gel Method, Journal of Materials Sciences Letters, 15: 396-398. (19)Enhui Lin, Xinyong Li, Changyan Zhang., 1996. Synthesis and Properties of Catalytic Oxidation of CO over Iron Oxide Ultrafine Powders, Acta. Inorg. Mat ,¡¡11(1): 157-161. (20)Xinyong Li, Enhui Lin, Changyan Zhang and Shuben Li., 1995. Synthesis of Iron Oxide Ultrafine Powders by Laser Induced Vapor-Phase Reaction Method, Journals of Materials Chemistry, 5(11): 1953-1956. (21)Xinyong Li, Enhui Lin, Changyan Zhang, Shuben Li, 1995. Preparation of¡¡?-Fe2O3/Fe2O3 Ultrafine Powders by Laser Vapor Phase Reaction, Journal of Materials Sciences Letters, 14: 1335-1337. (22) Xinyong Li, Liangbo Feng, Gongxuan Lu and Shuben Li, 1995. ¡°Preparation and Characterization of ZnFe2O4 Nanocrystalline and EPR Study on Their Photocatalytic Properties¡±, Chem. J. Chin. Univ, 1995, 16(10), 1495-1499. (23) Znhui Lin, Xinyong Li, Changyan Zhang., 1995. A Study of Laser Induced Solid-Phase Reacton to Produced CaO Ultrafine Powders and Laser Hetereous Catalysis 1-Heptene Reaction, Applied Laser., 15(1), 14-16, 44. (24) H.Fu, G.Lu, X.Li, S.Li, 1995. ¡°Progress in Photocatalytic Reduction of Heavy of Metals¡±, Photograph Sci & Photochem, 13(4), 325. (25) ZHANG CY, LI XY, WANG XF, et al. 1993. LASER-PLASMA INDUCED GAS-PHASE GRANULATION OF METALS, OXIDES, AND CARBIDES ,¡¡ABSTR PAP AM CHEM S, 206: 52-IEC Part 1 AUG 22 (26)gyan Zhang, Xinyong Li, Yuehua Guo, Xuefeng Wang and Enhui Lin, 1993. ¡°Laser Plasma Induced Gas Phase Granulation of Metals, Oxides, and Carbides and Their Photocatalytic Ptroperties¡±, Abstracts of Papers, Part 1, 206th ACS National Meeting, 0-8412-2620-2, American Chemical Society, Chicago, August 22-23 (27)ZHANG CY, LI XY, WANG XF, et al. 1993. PLASMA INDUCED GAS-PHASE GRANULATION OF METALS, OXIDES, AND CARBIDES, ABSTR PAP AM CHEM S, 206: 7-IEC Part 1 AUG 22 ÀÕñ ÄУ¬½ÌÊÚ£¬²©Ê¿Éúµ¼Ê¦¡£1977Äê7Ô±ÏÒµÓÚÏÃÃÅ´óѧÎïÀíϵ¡£1977Äê8ÔÂÖÁ1980Äê8ÔÂÔÚÏÃÃÅ´óѧÎïÀíϵÈν̡£1980Äê9ÔÂÖÁ1983Äê11ÔÂÏà ÃÅ´óѧÎïÀíϵ°ëµ¼ÌåÎïÀíÓëÆ÷¼þרҵÑо¿Éú±ÏÒµ£¬»ñÀíѧ˶ʿѧλ¡£1983Äê11ÔÂÖÁ½ñÔÚ¸£ÖÝ´óѧÈν̡£×÷ΪÏîÄ¿¸ºÔðÈËÏȺó³Ðµ£¹ýÊ¡¡¢²¿¼¶¶àÏî¿ÆÑÐÏîÄ¿¡£ 1983ÄêÒÔǰ´ÓÊ¢ó-V×廯ºÏÎï·¢¹âÐÔÄܵÄÑо¿£¨ÖпÆÔº¿ÆÑ§»ù½ðÏîÄ¿ÒÑÍê³É£©£¬1984ÄêÒÔÀ´Ò»Ö±´Óʰ뵼ÌåÎïÀí¡¢¹âµçÒõ¼«¡¢¹âµç²ÄÁÏ¡¢°ëµ¼ÌåÆ÷¼þµÈÑÐ ¾¿¹¤×÷¡£½ü¼¸ÄêÀ´£¬Ö÷Òª¿ªÕ¹ÄÉÃײÄÁϺͰ뵼Ìå¹â´ß»¯µÄÑо¿¡£Ö÷ÒªÑо¿ÄÚÈݰüÀ¨:¢Å "Ö±½ÓÎüÊտɼû¹âµÄÐÂÐ͹â´ß»¯¼ÁµÄÖÆ±¸¼°Æä·´Ó¦»úÀí£¨03-05£©"£¬ ¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÏîÄ¿£¬ÏîÄ¿¸ºÔð£»(2)"¶à¿×¹èÖÐÁ¿×ÓÄÉÃ×ÍÅ´Ø×é×°²ÄÁϵÄÑо¿¡´00-02¡µ"£¬ÏîÄ¿¸ºÔ𣬸£½¨Ê¡×ÔÈ»¿ÆÑ§»ù½ðÏîÄ¿£»(3)"¶à¿×¹èµÄµç Ö·¢¹â¼°Æäµç×ÓÌØÐÔ¡´96-98¡µ"£¬ÏîÄ¿¸ºÔ𣬸£½¨Ê¡×ÔÈ»¿ÆÑ§»ù½ðÏîÄ¿£»£¨4£©"¶à¿×¹èµÄÑо¿¡´93-95¡µ"£¬ÏîÄ¿¸ºÔ𣬸£½¨Ê¡×ÔÈ»¿ÆÑ§»ù½ðÏîÄ¿£»×÷ ΪÖ÷Òª¹Ç¸ÉÑо¿ÈËÔ±²Î¼ÓÓɸ¶ÏÍÖǽÌÊÚÖ÷³ÖµÄ¿ÆÑÐÏîÄ¿ÓÐ:¹ú¼ÒÖØ´ó¿Æ¼¼¹¥¹ØÏîÄ¿¡¢¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÖØµãÏîÄ¿¡¢¹ú¼Ò×ÔÈ»¿ÆÑ§»ù½ðÏîÄ¿ºÍ¸£½¨Ê¡×ÔÈ»¿ÆÑ§»ù½ðÖØµã ÏîÄ¿µÈ¡£ÆäÖйú¼ÒÖØ´ó¿Æ¼¼¹¥¹ØÏîÄ¿£¨¹â´ß»¯¹¦ÄܲÄÁϼ°ÏµÁвúÆ·²úÒµ»¯Ç°ÆÚ¹Ø¼ü¼¼ÊõÑо¿£©Í¨¹ý¹ú¼Ò¼ÆÎ¯Î¯Íи£½¨Ê¡¼ÆÎ¯×éÖ¯¹ú¼ÒÑéÊպͼø¶¨£»"¹ÌÌ峬ǿËáÐÍ¸ß Ð§¹â´ß»¯¼ÁºÍ¶à¹¦Äܹâ´ß»¯¿ÕÆø¾»»¯Æ÷"Á½Ïî³É¹û¾Ó¹ú¼ÊÁìÏÈˮƽ£¬"¹â´ß»¯×ÔÇå½à²£Á§ºÍÌÕ´É" ³É¹û´ïµ½¹ú¼ÊÏȽøË®Æ½¡£ÆäÖÐ"¹ÌÌ峬ǿËáÐ͸ßЧ¹â´ß»¯¼ÁµÄÑо¿ÓëÖÐÊÔÉú²ú¼¼Êõ¿ª·¢"»ñ2002Ä긣½¨Ê¡¿ÆÑ§¼¼ÊõÒ»µÈ½±£¬"¹ÌÌ峬ǿËá¹â´ß»¯¼ÁµÄÑÐÖÆ¼°ÆäÔÚ ¿ÕÆø¾»»¯Æ÷ÖеĹ¤ÒµÓ¦ÓÃ"»ñÖйúʯÓÍÓ뻯¹¤Ð»á¿Æ¼¼½ø²½Ò»µÈ½±¡£ ÔÚ¹úÄÚÍâÖØÒªÑ§Êõ¿¯Îï·¢±í50ÓàÆªÑ§ÊõÂÛÎIJ¢ÉêÇëÁËÒ¼ÏîרÀû¡£ÔÚ¶à¿×¹è¼°Æä×é×°ÄÉÃײÄÁϵÄϵÁÐÑо¿ÖУ¬ÑÐÖÆ³ö¾ßÓйúÄÚÏȽøË®Æ½µÄ¹â·üÆ÷¼þºÍʪÃôÆ÷¼þ£»ÀûÓÃÄÉÃ××é×°¼¼ÊõºÏ³ÉµÄ¹â´ß»¯¼Á£¬ÂÊÏÈÀûÓÃ΢²¨³¡Öú¹â´ß»¯¼¼Êõ£¬ÏÔÖøµØÌá¸ßÁ˹â´ß»¯Ñõ»¯µÄÁ¿×ÓЧÂÊ¡£ Àî ·¼ °Ø Àî·¼°Ø£¬Ñо¿Ô±£¬»·¾³»¯Ñ§×¨Òµ²©Ê¿£¬²©Ê¿Éúµ¼Ê¦¡£¹ã¶«Ê¡Éú̬»·¾³ÓëÍÁÈÀÑо¿Ëù¸±Ëù³¤¡£µÚÊ®½ìÈ«¹úÇàÄêÁªºÏ»áίԱ¡£ÖйúÍÁÈÀѧ»áÍÁÈÀ»·¾³×¨ÒµÎ¯Ô±»áίԱ£¬ÖÐ ¹ú»·¾³Ñ§»á¸ß¼¶»áÔ±¡£Ñо¿·½ÏòΪ£ºÎÛȾ¿ØÖÆ»¯Ñ§¡£½üÎåÄêÄÚÖ÷³Ö¹ú¼Ò»ù½ð3Ï¹ã¶«Ê¡Öصã»ù½ð2Ï¹ã¶«Ê¡»ù½ðÏîÄ¿3Ï¹ã¶«Ê¡¹¥¹ØÏîÄ¿4Ïî¡£¹²·¢±íÂÛÎĽü 80ƪ£¬ÆäÖб»SCIÊÕ¼ÂÛÎÄ41ƪ£¬±»EIÊÕ¼ÂÛÎÄ23ƪ£¬ÂÛÎÄSCIËûÒý300¶à´Î¡£ÉêÇëרÀû8Ï»ñµÃרÀû4Ïî¡£(ÁªÏµ·½Ê½£º cefbli£Àsoil.gd.cn£© ÉêÇëµÄרÀû Àî·¼°Ø¡¢ÁõͬÐñ¡£ÒÔ¹¤ÒµÆ«îÑËáΪÔÁÏÖÆ±¸¸ß»îÐÔ¶þÑõ»¯îÑÈܽºµÄ·½·¨£¬ÉêÇëºÅ£º200510037505¡¡(JP2006-128386) Àî·¼°Ø¡¢ÁõͬÐñ¡£The Method for Producing High-Active Hydrosol by Using Metatitanate as Precursor (USA No.16319B); Àî·¼°Ø¡¢ÁõͬÐñ¡£Ò»Öֿɼû¹âÃô»¯µÄÈñîÑ¿óÐͶþÑõ»¯îÑÈܽºÖƱ¸·½·¨£¬ÉêÇëºÅ£º200410077615 Àî·¼°Ø¡£¾ßÓпɼû¹â»îÐԵĹâ´ß»¯É±¾úũҩ¼°ÆäÓÃ;£¬ÉêÇëºÅ£º02114732 Àî·¼°Ø¡¢ºî÷·¼¡£Ò»ÖÖ¾ßÓйâ´ß»¯×é¼þµÄÊÒÄÚ¿ÕÆø¾»»¯Æ÷£¬×¨ÀûºÅ£º01258706.0¡£ Ö÷Òª´ú±íÐÔÂÛÎÄ F. B. Li, X. Z. Li, M. F. Hou, K. W. Cheah, W. C. H. Choy. Enhanced photocatalytic activity of Ce3+-TiO2 for 2-mercaptobenzothiazole degradation in aqueous suspension for odor control. Appl. Catal. A: Gen. 2005, 285, 181-189. F. B. Li, X. Z. Li and M. F. Hou. Photocatalytic degradation of 2-mercaptobenzothiazole in aqueous La3+¨CTiO2 suspension for odor control, Appl. Catal. B: Environ. 2004, 48, 185-194. F. B. Li, X. Z. Li C. H. Ao, M. F. Hou, S. C. Lee. Photocatalytic Conversion of NO using TiO2-NH3 Catalysts in Ambient Air Environment. Appl. Catal. B: Environ. 2004. 54, 275-283. F. B. Li, X. Z. Li C. H. Ao, S. C. Lee, M. F. Hou. Enhanced Photocatalytic Degradation of VOCs Using Ln-TiO2 Catalysts for Indoor Air Purification. Chemosphere, 2005, 59, 787-800. Li F.B. and Li X.Z. Photocatalytic properties of gold/gold ion-modified titanium dioxide for wastewater treatment, Appl. Catal. A., 2002, 228(1-2), 15-27. Li F.B and Li X.Z. The enhancement of photodegradation efficiency using Pt-TiO2 catalyst, Chemosphere£¬2002, 48 (10): 1103-1111. X. Z. Li, F. B. Li. Study of Au/Au3+-TiO2 Photo-catalysts Toward Visible Photo-Oxidation for Water and Wastewater Treatment. Environt. Sci. & Technol. 2001, 35, 2381-2387. X. Z. Li, F. B. Li, C.L.Yang and W.K.Ge. Photo-catalytic activity of WOX-TiO2 under Visible Light Irradiation. J. Photochem. & Photobio. A: Chem. 2001, 141 (2-3), 209-217. X. Z. Li, F. B. Li, C. M. Fan and Y. P. Sun. Photo-electro-catalytic degradation of humic acid in aqueous solution using a Ti/TiO2 photo-electrode. Water Research. 2002, 36 (9): 2215-2224. Áõƽ ÐԱ𣺠ÄРѧÊõר³¤£º ¹â´ß»¯²ÄÁÏÓëÓ¦ÓÃÑо¿ ¹¤×÷µ¥Î»£º ¸£ÖÝ´óѧ µç»°£º 0591-3731234-8501 ´«Õ棺 0591-3773729 E-mail£ºLiuping8501@hotmail.com Óʱࣺ 350002 ÁªÏµµØÖ·£º ¸£½¨Ê¡¸£ÖÝÊÐ212ÐÅÏä ´ú±íÖø×÷£º £¨1£©¡¶¹â´ß»¯¹¦ÄܲÄÁϼ°ÏµÁвúÆ·²úÒµ»¯Ç°ÆÚ¹Ø¼ü¼¼ÊõÑо¿ÏîÄ¿×ܽᱨ¸æ¡·£¨¹ú¼Ò¼ÆÎ¯ÖØ´ó¿Æ¼¼¹¥¹ØÏîÄ¿£¬³É¹ûÒÑ»ñÖйúʯÓͺͻ¯Ñ§¹¤ÒµÐ»á¿Æ¼¼½ø²½½±Ò»µÈ½±¡¢¸£½¨Ê¡¿ÆÑ§¼¼Êõ½±Ò»µÈ½±£© ´ú±íÂÛÎÄ£º £¨1£© Formation of Nanocrystalline Titanium Dioxide in Perfluorinated Ionomer Membrane, Langmuir , 18(26), 10398-10401, (2002). £¨2£© Hot-Fluid Annealing for Crystalline Titanium Dioxide Nanoparticles in Stable Suspension£¬ 2002£¬ J. Am. Chem. Soc., 124(38), 11514-11518,(2002). £¨3£© TiO2/ SnO2¸´ºÏ¹â´ß»¯¼ÁµÄñîºÏЧӦ£¬ÎïÀí»¯Ñ§Ñ§±¨£¬17£¨3£©£¬265-269,(2001). £¨4£© ¹â´ß»¯¿¹ÎíĤ²ÄÁϵÄÖÆ±¸¼°ÆäÇ×Ë®ÐÔÑо¿£¬¸ßµÈѧУ»¯Ñ§Ñ§±¨£¬21£¨3£©£¬462-465 £¨2000£©£® £¨5£© ²ôÔÓTiO2¹â´ß»¯Ä¤²ÄÁϵÄÖÆ±¸¼°ÆäÃð¾ú»úÀíÑо¿£¬´ß»¯Ñ§±¨£¬20£¨3£©£¬325-328, (1999). °²Ì«³É ÄУ¬Ñо¿Ô±£¬²©Ê¿Éúµ¼Ê¦ °ì¹«µç»°£º 020-85291501£¬E-mail:antc99@gig.ac.cn orantc99@163.com 1972Äê7ÔÂÉú£¬ÏÖÈι㶫ʡ»·¾³×ÊÔ´ÀûÓÃÓë±£»¤ÖصãʵÑéÊÒ¸±Ö÷ÈΡ£1996ÄêÎ÷±±Ê¦·¶´óѧ»¯Ñ§Ó뻯ѧ¹¤³ÌѧԺ±ÏÒµ£¬2002ÄêÓÚÖÐɽ´óѧ»¯Ñ§Ó뻯ѧ¹¤³Ì ѧԺ»ñµÃ²©Ê¿Ñ§Î»¡£±ÏÒµºóµ½Öйú¿ÆÑ§Ôº¹ãÖݵØÇò»¯Ñ§Ñо¿ËùÓлúµØÇò»¯Ñ§¹ú¼ÒÖØµãʵÑéÊÒ¹¤×÷ ![]() ![]() ![]() ![]() ![]() |

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???????????????????Fujishima??? Akira Fujishima ??????, b. March 10, 1942) is a Japanese chemist, professor emeritus, University of Tokyo He is known for his significant contributions in discovery and research of photocatalytic and superhydrophilic properties of titanium dioxide. In 1967, while working on his Ph.D. under the supervision of professor Kenichi Honda, he discovered the photocatalytic water decomposition (water photolysis) in the process in the TiO2 surface later called Honda-Fujishima effect. Discovery of self-cleaning properties of TiO2 by the group under his supervision have brought revolution in ceramic, glass, and other industries (see e.g., self-cleaning glass). Biography Akira Fujishima was born in Tokyo. In 1966 he earned B. A. (Engineering), Faculty of Engineering, Yokohama National University, in 1971 he earned Ph.D. (Engineering), Graduate School of Engineering, University of Tokyo. [edit] Professional activity 1971 Assistant Professor, Kanagawa University 1975 Assistant Professor, Faculty of Engineering, The University of Tokyo 1978 Associate Professor, Faculty of Engineering, The University of Tokyo 1986 Professor, Faculty of Engineering, The University of Tokyo 1989 Executive Director, Chemical Society of Japan 1995 Professor, Graduate School of Engineering, The University of Tokyo 1998 Chief of the optical science group at Kanagawa Academy of Science and Technology Research, *1998 President, Japanese Photochemistry Association 1999 Editor-in-Chief, Editorial Panel of Photochem. Photobio. C(Photochemistry Review) 2001 Vice President, Chemical Society of Japan, 2002 Research Supervisor, Development of Advanced Nanostructured Materials for Energy Conversion and Storage, Japan Science and Technology Agency (JST) 2003 President, Electrochemical Society of Japan 2003 Chairman, Kanagawa Academy of Science and Technology 2003 Professor emeritus, University of Tokyo Awards 1983 Asahi Prize 1998 Inoue Harushige Award 2000 Chemical Society of Japan Award 2003 Heinz Gerischer Award of the Electrochemical Society[2] 2004 Japan Prize |
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