Kinetics of the photocatalytic water-splitting reaction on TiO2 and Pt/TiO2 studied by time-resolved infrared absorption spectroscopy

被引:127
作者
Yamakata, A [1 ]
Ishibashi, T [1 ]
Onishi, H [1 ]
机构
[1] KAST, Surface Chem Lab, Takatsu Ku, Kawasaki, Kanagawa 2130012, Japan
关键词
photocatalyst; water-splitting; infrared absorption; reaction kinetics; titanium oxide;
D O I
10.1016/S1381-1169(03)00021-9
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The present account describes how the water-splitting reaction on TiO2 (P-25) and Pt/TiO2 catalysts is traced by time-resolved infrared (IR) absorption spectroscopy. The ac-coupled amplification of the IR signal allows detection of transient absorbance-change as small as 10(-6) with a time-resolution of 50 ns. The TiO2 or Pt/TiO2 catalyst irradiated by a 355 run UV-pulse at time = 0 presents a transient IR absorption which monotonically increases in intensity with decreasing wavenumber from 3000 to 1000 cm(-1). Photogenerated electrons trapped in shallow mid-gap states are proposed to cause the absorption. The decay kinetics of the electrons traced by monitoring the IR absorbance at 2000 cm(-1) is sensitive to vapor atmospheres. The electrons recombine with the complementary holes along a multi-exponential rate law in the catalysts placed in a vacuum. Dioxygen arriving from the gas-phase captures the electrons at delay time of 10-100 mus following the UV irradiation. In the presence of water vapor, holes in the TiO2 catalyst are captured by an adsorbed reactant (probably hydroxyl species) within 2 mus and the recombination is obstructed thereafter. The excess electrons cannot transfer to another adsorbate to be reduced (probably proton) and hence reduce the catalyst itself. On the Pt/TiO2 catalyst exposed to water, the electron transfer takes place at 10 mus or later, following the hole transfer completed within 2 mus. The hole transfer on Pt/TiO2 is insensitive to the pressure of water vapor whereas the rate of the electron transfer is enhanced with the increasing pressure at 1-10Torr. Transient response of an adsorbate vibration is also observed. The O-H stretching band of an adsorbed hydroxyl species at 3677 cm-1 thermally shifted to the low-wavenumber side, when the TiO2 catalyst is irradiated by the UV-pulse. (C) 2003 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:85 / 94
页数:10
相关论文
共 28 条
[1]   PHOTOCATALYSIS ON NATIVE AND PLATINUM-LOADED TIO2 AND ZNO CATALYSTS-ORIGIN OF DIFFERENT REACTIVITIES ON WET AND DRY METAL-OXIDES [J].
ANPO, M ;
CHIBA, K ;
TOMONARI, M ;
COLUCCIA, S ;
CHE, M ;
FOX, MA .
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1991, 64 (02) :543-551
[2]   Visible-light photocatalysis in nitrogen-doped titanium oxides [J].
Asahi, R ;
Morikawa, T ;
Ohwaki, T ;
Aoki, K ;
Taga, Y .
SCIENCE, 2001, 293 (5528) :269-271
[3]  
*CAT SOC JAP, 1986, DAT STAND CAT CAT SO
[4]   ELECTROCHEMICAL EVIDENCE FOR THE MECHANISM OF THE PRIMARY STAGE OF PHOTOSYNTHESIS [J].
FUJISHIMA, A ;
HONDA, K .
BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 1971, 44 (04) :1148-+
[5]   LIGHT-INDUCED REDOX REACTIONS IN NANOCRYSTALLINE SYSTEMS [J].
HAGFELDT, A ;
GRATZEL, M .
CHEMICAL REVIEWS, 1995, 95 (01) :49-68
[6]   An oxynitride, TaON, as an efficient water oxidation photocatalyst under visible light irradiation (λ ≤ 500 nm) [J].
Hitoki, G ;
Takata, T ;
Kondo, JN ;
Hara, M ;
Kobayashi, H ;
Domen, K .
CHEMICAL COMMUNICATIONS, 2002, (16) :1698-1699
[7]   ENVIRONMENTAL APPLICATIONS OF SEMICONDUCTOR PHOTOCATALYSIS [J].
HOFFMANN, MR ;
MARTIN, ST ;
CHOI, WY ;
BAHNEMANN, DW .
CHEMICAL REVIEWS, 1995, 95 (01) :69-96
[8]   CONSTRUCTION OF A VERSATILE MICROSECOND TIME-RESOLVED INFRARED SPECTROMETER [J].
IWATA, K ;
HAMAGUCHI, H .
APPLIED SPECTROSCOPY, 1990, 44 (09) :1431-1437
[9]   INFRA-RED STUDY OF SURFACE PROPERTIES OF RUTILE - WATER AND SURFACE HYDROXYL SPECIES [J].
JACKSON, P ;
PARFITT, GD .
TRANSACTIONS OF THE FARADAY SOCIETY, 1971, 67 (584) :2469-&
[10]   HYDROGEN PRESSURE-INDUCED OPTICAL-DENSITY CHANGES OF METAL-LOADED TITANIA OBSERVED BY HIGH-PRESSURE INFRARED-SPECTROSCOPY [J].
KOMIYAMA, M ;
IZUMISAWA, M ;
OKAMOTO, T ;
OGINO, Y .
CHEMISTRY LETTERS, 1985, (06) :823-826