Abstract
Abstract
With hybrid DFT calculations applied to periodic models of the bulk MoVNbTeO M1 catalyst, we examined how [TeO]2+ species in the hexagonal channels of this material stabilize nearby reduced metal centers. In particular, an S2(Mo) site, with adjacent [TeO]2+ moieties at both sides, is calculated to be reduced to Mo5+. The modeling study presented offers insight into how the redox behavior of V and Mo centers, a crucial aspect of the M1 catalyst for the selective partial oxidation of small hydrocarbons, may be fine-tuned via TeO moieties at various distances from the metal centers.
Graphic Abstract
TeO moieties in hexagonal channels, adjacent on either side of an S2(Mo) center, stabilize a gap state at the Mo center, facilitating its reduction to Mo5+.
Funder
Science and Engineering Research Council
TU Wien
Publisher
Springer Science and Business Media LLC
Subject
General Chemistry,Catalysis
Reference63 articles.
1. Ren T, Patel M, Blok K (2006) Energy 31:425–451
2. Amghizar I, Vandewalle LA, Van Geem KM, Marin GB (2017) Engineering 3:171–178
3. Hatano M, Kayo A (1991) Catalytic conversion of alkanes to nitriles, and a catalyst therefor, U.S. Patent 5049692
4. Grasselli RK, Burrington JD, Buttrey DJ, Desanto P, Lugmair CG, Volpe AF, Weingand T (2003) Top Catal 23:5–22
5. Grasselli RK (1999) Catal Today 49:141–153
Cited by
6 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献