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在块状正交晶系Mo-V-O相上,表面碲、铌和锑的氧化物在丙烷氧化制丙烯酸反应中的作用。

Roles of surface Te, Nb, and Sb oxides in propane oxidation to acrylic acid over bulk orthorhombic Mo-V-O phase.

作者信息

Guliants Vadim V, Bhandari Rishabh, Swaminathan Balasubramanian, Vasudevan Vijay K, Brongersma Hidde H, Knoester Arie, Gaffney Anne M, Han Scott

机构信息

Department of Chemical and Material Engineering, University of Cincinnati, Cincinnati, Ohio 45221-0012, USA.

出版信息

J Phys Chem B. 2005 Dec 22;109(50):24046-55. doi: 10.1021/jp054641y.

Abstract

The outermost surfaces and subsurface layers of the orthorhombic (M1) Mo-V-O catalysts promoted with Te, Nb, and Sb oxide species at submonolayer surface coverage were examined by low-energy ion scattering (LEIS). This study indicated that the Nb oxide species was preferentially located at the topmost surface, while the subsurface Te and Sb concentrations declined gradually into the bulk. Although the original Mo-V-O catalyst was essentially unselective in propane oxidation to acrylic acid, significant improvement in the selectivity to acrylic acid was observed when Te, Nb, and Sb oxides were present as the surface species at submonolayer coverage. These findings further suggested that the formation of the surface V-O-M bonds (M = Nb, Te, or Sb) was highly beneficial for both the activity and selectivity of the orthorhombic Mo-V-O catalysts in propane oxidation to acrylic acid. The highest selectivity was observed when both Nb and Te (or Sb) oxide species were present at the surface. The selectivity trends established for the surface-promoted Mo-V-O catalyst parallel those found previously for the corresponding bulk Mo-V-M-O catalysts. These results further indicated that the introduction of surface metal oxide species is a highly promising method to prepare well-defined model catalysts for studies of the structure-activity/selectivity relationships as well as optimize the catalytic performance of the bulk mixed Mo-V-M-O catalysts for selective (amm)oxidation of propane.

摘要

采用低能离子散射(LEIS)对在亚单层表面覆盖度下用碲、铌和锑的氧化物物种促进的正交晶系(M1)Mo-V-O催化剂的最外表面和次表层进行了研究。该研究表明,铌的氧化物物种优先位于最表层,而次表层的碲和锑浓度向体相逐渐降低。尽管原始的Mo-V-O催化剂在丙烷氧化制丙烯酸反应中基本没有选择性,但当碲、铌和锑的氧化物以亚单层覆盖度作为表面物种存在时,观察到对丙烯酸的选择性有显著提高。这些发现进一步表明,表面V-O-M键(M = Nb、Te或Sb)的形成对正交晶系Mo-V-O催化剂在丙烷氧化制丙烯酸反应中的活性和选择性都非常有利。当表面同时存在铌和碲(或锑)的氧化物物种时,观察到最高的选择性。表面促进的Mo-V-O催化剂所建立的选择性趋势与先前在相应的体相Mo-V-M-O催化剂中发现的趋势相似。这些结果进一步表明,引入表面金属氧化物物种是制备明确的模型催化剂以研究结构-活性/选择性关系以及优化体相混合Mo-V-M-O催化剂用于丙烷选择性(氨)氧化催化性能的一种非常有前景的方法。

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