Formate Adsorption onto Thin Films of Rutile TiO2 Nanorods and Nanowires

被引:12
作者
Berger, Thomas
Delgado, Jose M.
Lana-Villarreal, Teresa
Rodes, Antonio
Gomez, Roberto [1 ]
机构
[1] Univ Alicante, Dept Quim Fis, E-03080 Alacant, Spain
基金
奥地利科学基金会;
关键词
D O I
10.1021/la8021326
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We evaluate the applicability of silicon prisms to infrared (IR) spectroscopic investigations of the oxide/electrolyte interface in the attenuated total reflection (ATR) configuration. Using formic acid as a probe adsorbate, a comparison is done between a rutile nanowire film supported on Si and a rutile nanorod film supported on ZnSe. The nanowires were 2 nm in diameter and were deposited directly on Si by chemical bath deposition, whereas the nanorods were deposited on ZnSe by solution casting of an aqueous dispersion prepared from a commercial powder. The lower penetration depth of the evanescent wave for silicon was compensated by a higher internal surface area of the corresponding nanowire film. Advantageously, much higher solution concentrations can be used in the case of the Si prism without a significant contribution of solution species to the IR spectrum. Furthermore, the high chemical stability of Si opens up the possibility of performing experiments in highly acidic aqueous solutions. Upon formate adsorption at pH 3.5, a pair of intense IR bands was observed in the wavenumber range where antisymmetric v(as)(COO) vibrations are expected, namely at 1537 and 1592 cm(-1) on nanorod films and at 1544 and 1586 cm(-1) on nanowire films. The relative band intensities are different for nanorod and nanowire films. While the bands at 1537/1544 cm(-1) are assigned to formate adsorbed on the (110) face, forming the bridging bidentate (mu) structure, those at 1592/1586 cm(-1) are tentatively attributed to formate adsorbed at low coordination adsorption sites at the nanocrystal edges. Bands corresponding to the carboxylate symmetric stretching and the HCO deformation were also observed.
引用
收藏
页码:14035 / 14041
页数:7
相关论文
共 26 条
[1]   FT-IR-ATR as a tool to probe photocatalytic interfaces [J].
Araujo, PZ ;
Mendive, CB ;
Rodenas, LAG ;
Morando, PJ ;
Regazzoni, AE ;
Blesa, MA ;
Bahnemann, D .
COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2005, 265 (1-3) :73-80
[2]   Thin films of rutile quantum-size nanowires as electrodes:: Photoelectrochemical studies [J].
Berger, Thomas ;
Lana-Villarreal, Teresa ;
Monllor-Satoca, Damian ;
Gomez, Roberto .
JOURNAL OF PHYSICAL CHEMISTRY C, 2008, 112 (40) :15920-15928
[3]   The electrochemistry of transparent quantum size rutile nanowire thin films prepared by one-step low temperature chemical bath deposition [J].
Berger, Thomas ;
Lana-Villarreal, Teresa ;
Monllor-Satoca, Damian ;
Gomez, Roberto .
CHEMICAL PHYSICS LETTERS, 2007, 447 (1-3) :91-95
[4]   An electrochemical study on the nature of trap states in nanocrystalline rutile thin films [J].
Berger, Thomas ;
Lana-Villarreal, Teresa ;
Monllor-Satoca, Damian ;
Gomez, Roberto .
JOURNAL OF PHYSICAL CHEMISTRY C, 2007, 111 (27) :9936-9942
[5]   Titanium dioxide nanomaterials: Synthesis, properties, modifications, and applications [J].
Chen, Xiaobo ;
Mao, Samuel S. .
CHEMICAL REVIEWS, 2007, 107 (07) :2891-2959
[6]   Formate, an active intermediate for direct oxidation of methanol on Pt electrode [J].
Chen, YX ;
Miki, A ;
Ye, S ;
Sakai, H ;
Osawa, M .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2003, 125 (13) :3680-3681
[7]   In situ FTIR studies of the photo-electrochemical behaviour of thermal TiO2 films as a function of temperature [J].
Christensen, PA ;
Eameaim, J ;
Hamnett, A .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 1999, 1 (23) :5315-5321
[8]   Infrared spectroscopy of the TiO2/aqueous solution interface [J].
Connor, PA ;
Dobson, KD ;
McQuillan, AJ .
LANGMUIR, 1999, 15 (07) :2402-2408
[9]   The surface science of titanium dioxide [J].
Diebold, U .
SURFACE SCIENCE REPORTS, 2003, 48 (5-8) :53-229
[10]   Photoassisted decomposition of malonic acid on TiO2 studied by in situ attenuated total reflection infrared spectroscopy [J].
Dolamic, Igor ;
Buergi, Thomas .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (30) :14898-14904