2020
DOI: 10.1016/j.apcatb.2020.118932
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Labile oxygen promotion of the catalytic oxidation of acetone over a robust ternary Mn-based mullite GdMn2O5

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Cited by 64 publications
(54 citation statements)
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“…HT synthesis causes crystal growth at lower temperatures than the CP method, which results in high‐surface‐area materials desirable for heterogeneous catalysis and has been successfully used to prepare mullite oxides. [ 43,44,61–64 ] To synthesize AMn 2 O 5 , the metal salt precursors of A, Mn, and KMnO 4 are mixed in a molar ratio of 5:7:3 in DI water and then a precipitating agent (NaOH or KOH) is added dropwise. The HT treatment is conducted at 180–200 °C for 24–48 h in an autoclave under autogenous pressure.…”
Section: Mullite‐type Oxide Structure Synthesis and Stabilitymentioning
confidence: 99%
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“…HT synthesis causes crystal growth at lower temperatures than the CP method, which results in high‐surface‐area materials desirable for heterogeneous catalysis and has been successfully used to prepare mullite oxides. [ 43,44,61–64 ] To synthesize AMn 2 O 5 , the metal salt precursors of A, Mn, and KMnO 4 are mixed in a molar ratio of 5:7:3 in DI water and then a precipitating agent (NaOH or KOH) is added dropwise. The HT treatment is conducted at 180–200 °C for 24–48 h in an autoclave under autogenous pressure.…”
Section: Mullite‐type Oxide Structure Synthesis and Stabilitymentioning
confidence: 99%
“…The HT treatment is conducted at 180–200 °C for 24–48 h in an autoclave under autogenous pressure. [ 43,44,61–64 ] The mullite oxide catalysts prepared by this method exhibit high specific surface area with narrow particle size distribution and well‐controlled morphologies. For example, Ma et al synthesized SmMn 2 O 5 with different morphologies such as nanorods and nanoparticles by varying the pH and HT reaction time.…”
Section: Mullite‐type Oxide Structure Synthesis and Stabilitymentioning
confidence: 99%
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