In situ IR, Raman, and UV-Vis DRS spectroscopy of supported vanadium oxide catalysts during methanol oxidation

被引:0
|
作者
Loyd J. Burcham
Goutam Deo
Xingtao Gao
Israel E. Wachs
机构
[1] Lehigh University,Zettlemoyer Center for Surface Studies and Department of Chemical Engineering
[2] Bethlehem,Department of Chemical Engineering
[3] Indian Institute of Technology,undefined
来源
Topics in Catalysis | 2000年 / 11-12卷
关键词
in situ spectroscopy; methanol oxidation; oxide catalysts; vanadia; Raman; infrared, UV-Vis;
D O I
暂无
中图分类号
学科分类号
摘要
The application of in situ Raman, IR, and UV-Vis DRS spectroscopies during steady-state methanol oxidation has demonstrated that the molecular structures of surface vanadium oxide species supported on metal oxides are very sensitive to the coordination and H-bonding effects of adsorbed methoxy surface species. Specifically, a decrease in the intensity of spectral bands associated with the fully oxidized surface (V5+) vanadia active phase occurred in all three studied spectroscopies during methanol oxidation. The terminal V = O (∼1030 cm−1) and bridging V–O–V (∼900–940 cm−1) vibrational bands also shifted toward lower frequency, while the in situ UV-Vis DRS spectra exhibited shifts in the surface V5+ LMCT band (>25,000 cm−1) to higher edge energies. The magnitude of these distortions correlates with the concentration of adsorbed methoxy intermediates and is most severe at lower temperatures and higher methanol partial pressures, where the surface methoxy concentrations are greatest. Conversely, spectral changes caused by actual reductions in surface vanadia (V5+) species to reduced phases (V3+/V4+) would have been more severe at higher temperatures. Moreover, the catalyst (vanadia/silica) exhibiting the greatest shift in UV-Vis DRS edge energy did not exhibit any bands from reduced V3+/V4+ phases in the d–d transition region (10,000–30,000 cm−1), even though d–d transitions were detected in vanadia/alumina and vanadia/zirconia catalysts. Therefore, V5+ spectral signals are generally not representative of the percent vanadia reduction during the methanol oxidation redox cycle, although estimates made from the high temperature, low methoxy surface coverage IR spectra suggest that the catalyst surfaces remain mostly oxidized during steady-state methanol oxidation (15–25% vanadia reduction). Finally, adsorbed surface methoxy intermediate species were easily detected with in situ IR spectroscopy during methanol oxidation in the C–H stretching region (2800–3000 cm−1) for all studied catalysts, the vibrations occurring at different frequencies depending on the specific metal oxide upon which they chemisorb. However, methoxy bands were only found in a few cases using in situ Raman spectroscopy due to the sensitivity of the Raman scattering cross-sections to the specific substrate onto which the surface methoxy species are adsorbed.
引用
收藏
页码:85 / 100
页数:15
相关论文
共 50 条
  • [31] STUDY OF PYRIDINE ADSORPTION ON SUPPORTED VANADIUM-ALUMINIUM CATALYSTS BY IR AND UV SPECTROSCOPY
    SPIRIDONOVA, DV
    FOKINA, EA
    SPIRIDONOV, KN
    KRYLOV, OV
    REACTION KINETICS AND CATALYSIS LETTERS, 1977, 7 (01): : 53 - 58
  • [32] Investigating Tattoo Pigments Composition with UV-Vis and FT-IR Spectroscopy supported by Chemometric Modelling
    Singh, Ajay Vikram
    Bansod, Girija
    Schumann, Angelina
    Bierkandt, Frank S.
    Laux, Peter
    Nakhale, Sweta Vijay
    Shelar, Amruta
    Patil, Rajendra
    Luch, Andreas
    CURRENT ANALYTICAL CHEMISTRY, 2024,
  • [33] COLL 466-Solid acidity of supported WO3/ZrO2 catalysts: A combined Raman, IR, UV-Vis and TPSR Operando spectroscopy study
    Ross, E. I.
    Kim, T.
    Knowles, W. V.
    Wong, M. S.
    Wachs, Israel E.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2006, 232
  • [34] UV-vis spectroscopy for monitoring oxidation state changes during electrochemical energy storage
    Zhang, Danzhen
    Gogotsi, Yury
    NATURE ENERGY, 2023, 8 (06) : 565 - 566
  • [35] In situ diffuse reflectance spectroscopic study of supported vanadium oxide catalysts during ethane, n-butane and methanol oxidation reactions.
    Gao, XT
    Wachs, IE
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1999, 217 : U688 - U688
  • [36] Structure of molybdenum oxide supported on silica SBA-15 studied by Raman, UV-Vis and X-ray absorption spectroscopy
    Thielemann, Joerg P.
    Ressler, Thorsten
    Walter, Anke
    Tzolova-Mueller, Genka
    Hess, Christian
    APPLIED CATALYSIS A-GENERAL, 2011, 399 (1-2) : 28 - 34
  • [37] Oxidation of methanol to formaldehyde on supported vanadium oxide catalysts compared to gas phase molecules
    Döbler, J
    Pritzsche, M
    Sauer, J
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2005, 127 (31) : 10861 - 10868
  • [38] Oxidation of methanol to formaldehyde on supported vanadium oxide catalysts compared to gas phase molecules
    Döbler, Jens
    Pritzsche, Marc
    Sauer, Joachim
    Journal of the American Chemical Society, 2005, 127 (31): : 10861 - 10868
  • [39] The role of platinum on the NOx storage and desorption behavior of ceria: an online FT-IR study combined with in situ Raman and UV-vis spectroscopy
    Filtschew, Anastasia
    Beato, Pablo
    Rasmussen, Soren B.
    Hess, Christian
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2021, 23 (03) : 1874 - 1887
  • [40] First In Situ Raman Study of Vanadium Oxide Based SO2 Oxidation Supported Molten Salt Catalysts
    I. Giakoumelou
    R.M. Caraba
    V.I. Parvulescu
    S. Boghosian
    Catalysis Letters, 2002, 78 : 209 - 214