2016
DOI: 10.1039/c5cc10124g
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Ordered mesoporous CoMOx (M = Al or Zr) mixed oxides for Fischer–Tropsch synthesis

Abstract: A superior structural stability of the ordered mesoporous CoMOx synthesized by using the KIT-6 template was observed under Fischer-Tropsch reaction conditions. The enhanced stability was attributed to a strong interaction of the irreducible metal oxides with the mesoporous Co3O4 by forming Co3O4-ZrO2 (or Co3O4-Al2O3), which resulted in showing a stable activity.

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Cited by 25 publications
(35 citation statements)
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(54 reference statements)
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“…N 2 physical adsorption analysis were applied to further study the porosity features of HMSs. The nitrogen adsorption–desorption isotherm of the HMSs (Figure d) exhibited a type‐IV isotherm with an obvious H1 hysteresis loop, suggesting a typical mesoporous structure on the basis of the IUPAC . The BET surface area, pore volume and mean pore size of the HMSs is 149.46 m 2 g −1 , 0.259 cm 3 g −1 and 4.95 nm, respectively.…”
Section: Resultsmentioning
confidence: 95%
“…N 2 physical adsorption analysis were applied to further study the porosity features of HMSs. The nitrogen adsorption–desorption isotherm of the HMSs (Figure d) exhibited a type‐IV isotherm with an obvious H1 hysteresis loop, suggesting a typical mesoporous structure on the basis of the IUPAC . The BET surface area, pore volume and mean pore size of the HMSs is 149.46 m 2 g −1 , 0.259 cm 3 g −1 and 4.95 nm, respectively.…”
Section: Resultsmentioning
confidence: 95%
“…A regular mesopore size of 5 nm on all the fresh P/m-CoAl was originated from the wall thickness of the hard-template of KIT-6, and a small peak intensity appeared at~14 nm in size was mainly attributed to the inter-particular pores, which was attributed to the partially disintegrated structures of the m-CoAl. [13][14][15][16][17]26] The significantly reduced surface area and pore volume as well as slightly increased average pore diameter on the fresh P/m-CoAl at a higher phosphorous content could be possibly attributed to the preferential deposition of phosphorous species on the outer surfaces of the m-CoAl, which can form the much denser SiO 2like AlPO 4 phases. [19][20][21][22][23][24] The ordered mesoporous structures of the P/m-CoAl were also verified by a small-angle X-ray scattering (SAXS) analysis, and the SAXS peaks are displayed in supplementary Figure S2.…”
Section: Bulk and Surface Properties Of P/m-coal Catalystsmentioning
confidence: 99%
“…However, the direct applications of those ordered mesoporous transition metal oxides were so difficult for FTS reaction because of their intrinsically unstable structures by an easy phase transformation from cobalt oxides to metallic states. [6,[12][13][14] Based on our previous works, [14][15][16][17][18] the highly ordered mesoporous metal oxides structures were successfully preserved under a reductive FTS reaction condition by introducing irreducible metal oxide pillaring materials such as alumina or zirconia or by preparing binary mixed metal oxides incorporated with those irreducible metal oxides. These structural stabilities were mainly attributed to the partial formation of thermally stable spinel-type metal aluminates at an optimal molar ratio of M/Co = 0.25 (M = Al or Zr).…”
Section: Introductionmentioning
confidence: 99%
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