期刊文献+

Theoretical Investigations of the Activation of CO2 on the Transition Metal-doped Cu(100) and Cu(111) Surfaces 被引量:2

Theoretical Investigations of the Activation of CO_2 on the Transition Metal-doped Cu(100) and Cu(111) Surfaces
下载PDF
导出
摘要 Periodic density functional theory calculations have been performed to investigate the chemisorption behavior of COz molecule on a series of surface alloys that are built by dispersing individual middle-late transition metal (TM) atoms (TM = Fe, Co, Ni, Ru, Rh, Pd, Ag, Os, lr, Pt, Au) on the Cu(100) and Cu(lll) surfaces. The most stable configurations of CO2 chemisorbed on different TM/Cu surfaces are determined, and the results show that among the late transition metals, Co, Ru, and Os are potentially good dopants to enhance the chemisorption and activation of CO2 on copper surfaces. To obtain a deep understanding of the adsorption property, the bonding characteristics of the adsorption bonds are carefully examined by the crystal orbital Hamilton population technique, which reveals that the TM atom primarily provides d orbitals with z-component, namely dz2, dxz, and dvz orbitals to interact with the adsorbate. Periodic density functional theory calculations have been performed to investigate the chemisorption behavior of COz molecule on a series of surface alloys that are built by dispersing individual middle-late transition metal (TM) atoms (TM = Fe, Co, Ni, Ru, Rh, Pd, Ag, Os, lr, Pt, Au) on the Cu(100) and Cu(lll) surfaces. The most stable configurations of CO2 chemisorbed on different TM/Cu surfaces are determined, and the results show that among the late transition metals, Co, Ru, and Os are potentially good dopants to enhance the chemisorption and activation of CO2 on copper surfaces. To obtain a deep understanding of the adsorption property, the bonding characteristics of the adsorption bonds are carefully examined by the crystal orbital Hamilton population technique, which reveals that the TM atom primarily provides d orbitals with z-component, namely dz2, dxz, and dvz orbitals to interact with the adsorbate.
出处 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2016年第5期669-678,共10页 结构化学(英文)
基金 supported by the National Natural Science Foundation of China(21373048,21203027,and 21371034)
关键词 carbon dioxide chemisorption transition metal surfaces DFT carbon dioxide, chemisorption, transition metal surfaces, DFT
  • 相关文献

参考文献32

  • 1Freund, H. J.; Roberts, M. W. Surface chemistry of carbon dioxide. Surf. Sci. Rep. 1996, 25, 225-273.
  • 2de la Pena O'Shea, V. A.; Gonzalez, S.; Illas, F.; Fierro, J. L. G Evidence for spontaneous CO2 activation on cobalt surfaces. Chem. Phys. Lett. 2008, 454, 262-268.
  • 3Ding, X.; De Rogatis, L.; Vesselli, E.; Baraldi, A.; Comelli, G.; Rosei, R.; Savio, L.; Vattuone, L.; Rocca, M.; Fomasiem, P.; Ancilotto, E; Baldereschi, A.; Peressi, M. Interaction of carbon dioxide with Ni(110): a combined experimental and theoretical study. Phys. Rev. B 2007, 76, 195425-195437.
  • 4Wang, S. (3.; Cao, D. B.; Li, Y. W.; Wang, J. (3.; Jiao, H. J. Chemisorption of CO2 on nickel surfaces. J. Phys. Chem. B 2005, 109, 18956-18963.
  • 5Bartos, B.; Freund, H. J.; Kuhlenbeck, H.; Neumann, M.; Lindner, H.; Mfiller, K. Adsorption and reaction of CO2 and CO2/O CO-adsorption on Ni(110): angle resolved photoemission (ARUPS) and electron energy loss (HREELS) studies. Surf Sci. 1987, 179, 59-89.
  • 6Wang, G C.; Nakamura, J. Structure sensitivity for forward and reverse water-gas shit reactions on copper surfaces: a DFT study. J. Phys. Chem. Lett. 2010, 1, 3053-3057.
  • 7Wang, (3. C.; Ling, J.; Morikawa, Y.; Nakamura, J.; Cai, Z. S.; Pan, Y. M.; Zhao, X. Z. Cluster and periodic DFT calculations of adsorption and activation of CO2 on the Cu(Hkl) surfaces. Surf. Sci. 2004, 570, 205-217.
  • 8Funk, S.; Hokkanen, B.; Wang, J.; Burghaus, U.; Bozzolo, G; G arees, J. E. Adsorption dynamics of CO2 on Cu(110): a molecular beam study. Su. Sci. 2006, 600, 583-590.
  • 9Glezakou, V. A.; Dang, L. X. Spontaneous activation of CO2 and possible corrosion pathways on the low-index iron surface Fe(100). J. Phys. Chem. C 2009, 113, 3691-3696.
  • 10Ge, Q. F.; Neurock M. Adsorption and activation of Co over flat and stepped Co surfaces: a first principles analysis. J. Phys. Chem. B 2006, 110 15368-15380.

同被引文献2

引证文献2

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部