4.8 Article

Selective Alkane Oxidation by Manganese Oxide: Site Isolation of MnOx Chains at the Surface of MnWO4 Nanorods

期刊

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
卷 55, 期 12, 页码 4092-4096

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201510201

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heterogeneous catalysis; hydrothermal synthesis; insitu Raman spectroscopy; manganese tungstate; oxidative dehydrogenation

资金

  1. Berlin International Graduate School of Natural Sciences and Engineering (BIG NSE)

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The electronic and structural properties of vanadium-containing phases govern the formation of isolated active sites at the surface of these catalysts for selective alkane oxidation. This concept is not restricted to vanadium oxide. The deliberate use of hydrothermal techniques can turn the typical combustion catalyst manganese oxide into a selective catalyst for oxidative propane dehydrogenation. Nanostructured, crystalline MnWO4 serves as the support that stabilizes a defect-rich MnOx surface phase. Oxygen defects can be reversibly replenished and depleted at the reaction temperature. Terminating MnOx zigzag chains on the (010) crystal planes are suspected to bear structurally site-isolated oxygen defects that account for the unexpectedly good performance of the catalyst in propane activation.

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