Method for catalyzing formic acid dehydrogenation by using PdAu nanosheet catalyst under visible light
A technology for catalyzing formic acid and nanosheets, applied in chemical instruments and methods, physical/chemical process catalysts, metal/metal oxide/metal hydroxide catalysts, etc., can solve problems such as difficult to separate and recycle and limit large-scale application, To achieve the effect of improved catalytic activity
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Embodiment 1
[0025] Catalyst preparation process
[0026] Grind and mix 3g of melamine and 12g of lithium chloride uniformly, roast at 520°C for 7h under nitrogen atmosphere, wash the roasted mixture with water at 20°C for 50h, and dry to obtain g-C3 N 4 Nanosheet; Weigh 1gTi 2 AlC was placed in 30wt% HF solution for 6.0h, filtered, washed and dried to obtain Ti 2 C; 0.1mmolTi 2 C and 2mmol g-C 3 N 4 Nanosheets were placed in 40mL deionized water, and NaHSO was added 3 , adjusted to NaHSO 3 The concentration is 0.03mol / L, the hydrothermal synthesis temperature is 120°C, and the hydrothermal synthesis time is 12h, to obtain (Mxene-TiO 2 ) 1 / 20 @g-C 3 N 4 Nanosheets, weighed 20mmol (Mxene-TiO 2 ) 1 / 20 @g-C 3 N 4 Nanosheets were placed in a solution containing 1mmol palladium chloride and 0.1mmol chloroauric acid, and reduced with 0.05mol / L formaldehyde solution at 10°C for 8h to obtain a catalyst, which was denoted as PdAu 0.1 / (Mxene-TiO 2 ) 1 / 20 @g-C 3 N 4 Nanosheet catal...
Embodiment 2
[0030] Catalyst preparation process
[0031] Grind and mix 3g of melamine and 24g of lithium chloride uniformly, roast at 550°C for 4h under a nitrogen atmosphere, wash the roasted mixture with water at 20°C for 50h, and dry to obtain g-C 3 N 4 Nanosheet; Weigh 1gTi 2 AlC is placed in 50wt% HF solution for 4.0h, filtered, washed and dried to obtain Ti 2 C; 0.1mmolTi 2 C and 3.5 mmol g-C 3 N 4 Nanosheets were placed in 40mL deionized water, and NaHSO was added 3 , adjusted to NaHSO 3 The concentration is 0.05mol / L, the hydrothermal synthesis temperature is 150°C, and the hydrothermal synthesis time is 8h, to obtain (Mxene-TiO 2 ) 1 / 35 @g-C 3 N 4 Nanosheets, weighed 25mmol (Mxene-TiO 2 ) 1 / 35 @g-C 3 N 4 Nanosheets were placed in a solution containing 1mmol palladium chloride and 0.3mmol chloroauric acid, and reduced with 0.09mol / L formaldehyde solution at 10°C for 5h to obtain a catalyst, which was denoted as PdAu 0.3 / (Mxene-TiO 2 ) 1 / 35 @g-C 3 N 4 Nanosheet ...
Embodiment 3
[0035] Catalyst preparation process
[0036] Grind and mix 3g of melamine and 21g of lithium chloride uniformly, roast at 540°C for 6h under a nitrogen atmosphere, wash the roasted mixture with water at 30°C for 43h, and dry to obtain g-C 3 N 4 Nanosheet; Weigh 1gTi 2 AlC was placed in 45wt% HF solution for 4.5h, filtered, washed and dried to obtain Ti 2 C; 0.1mmolTi 2 C and 2.5 mmol g-C 3 N 4 Nanosheets were placed in 40mL deionized water, and NaHSO was added 3 , adjusted to NaHSO 3 The concentration is 0.04mol / L, the hydrothermal synthesis temperature is 140°C, and the hydrothermal synthesis time is 10h, (Mxene-TiO 2 ) 1 / 25 @g-C 3 N 4 Nanosheets, weighed 23mmol (Mxene-TiO 2 ) 1 / 25 @g-C 3 N 4 Nanosheets were placed in a solution containing 1mmol palladium chloride and 0.2mmol chloroauric acid, and reduced with 0.05mol / L formaldehyde solution at 25°C for 6h to obtain a catalyst, which was denoted as PdAu 0.2 / (Mxene-TiO 2 ) 1 / 25 @g-C 3 N 4 Nanosheet catalyst...
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