Method for preparing supported palladium catalyst by using different precursors through photochemistry method
A palladium catalyst and photochemical technology, which is applied in the field of preparing supported palladium catalysts, can solve the problems of affecting the performance of the catalyst, the inability to add components, and single properties, and achieve the effects of short cycle, small metal particles, and good load dispersion
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Embodiment 1
[0024] The method of using different precursor photochemical methods to prepare supported palladium catalysts, the specific steps are as follows:
[0025] (1) First, soak 250mg of carbon nanotubes (with a diameter of 20-40nm) in 100ml of acetone and stir for 3.5 hours, wash with double distilled water, and filter with 80ml, 1.0mol / L NaOH solution and continue to stir for 2 hours, then use Washing with double distilled water and suction filtration; the soaked carbon nanotubes were washed with 1mol / LNH 4 The F solution was stirred for 6 hours, then washed with twice distilled water, suction filtered, and vacuum-dried at a constant temperature of 60°C in a vacuum drying oven for 12 hours; 4 F modified carbon nanotubes;
[0026] (2) Preparation of Pd precursor: with 55mgPdCl 2 As raw material, dissolve in excess NaCl solution (50ml, concentration 2mol / L), dilute to 100ml with deionized water to obtain Na 2 PdCl 4 Precursor (solution concentration is 3mmol / L);
[0027] (3) Pre...
Embodiment 2
[0029] The method of using different precursor photochemical methods to prepare supported palladium catalysts, the specific steps are as follows:
[0030] (1) First, soak 250mg of carbon nanotubes (with a diameter of 40-60nm) in 50ml of acetone and stir for 4 hours, wash with twice distilled water, filter with suction, soak in 80ml, 1.0mol / L NaOH solution and continue to stir for 4 hours, then use two Sub-distilled water cleaning, suction filtration; soaked carbon nanotubes with 1mol / LNH 4 The F solution was stirred for 6 hours, then washed with twice distilled water, suction filtered, and vacuum-dried at a constant temperature of 60°C in a vacuum drying oven for 12 hours; 4 F modified carbon nanotubes;
[0031] (2) Preparation of Pd precursor: with 55mgPdCl 2 As a raw material, dissolve in excess ammonia water (20ml, concentration 14mol / L), dilute to 100ml with deionized water to obtain (NH) 2 PdCl 4 Precursor (solution concentration is 3mmol / L);
[0032] (3) Preparation...
Embodiment 4
[0040] The method of using different precursor photochemical methods to prepare supported palladium catalysts, the specific steps are as follows:
[0041] (1) First, soak 250mg of carbon nanotubes (with a diameter of 40-60nm) in 50ml of acetone and stir for 4 hours, wash with twice distilled water, filter with suction, soak in 80ml, 1.0mol / L NaOH solution and continue to stir for 4 hours, then use two Sub-distilled water cleaning, suction filtration; soaked carbon nanotubes with 1mol / LNH 4 The F solution was stirred for 6 hours, then washed with twice distilled water, suction filtered, and vacuum-dried at a constant temperature of 60°C in a vacuum drying oven for 12 hours; 4 F modified carbon nanotubes;
[0042] (2) Preparation of Pd precursor: with 55mgPdCl 2 As a raw material, dissolve in excess ammonia water (20ml, concentration 14mol / L), dilute to 100ml with deionized water to obtain (NH) 2 PdCl 4 Precursor (solution concentration is 3mmol / L);
[0043] (3) Preparation...
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