Preparation method and application of carbon quantum dot/metal organic skeleton catalyst
A metal-organic framework, carbon quantum dot technology, applied in organic compound/hydride/coordination complex catalysts, physical/chemical process catalysts, catalytic reactions, etc., can solve problems such as low activity, and achieve a simple synthesis process, Highly maneuverable, easy-to-adjust effects
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[0024] Example 1:
[0025] (1) Preparation of carbon quantum dots:
[0026] Add 500 mL of deionized water to a 500 mL beaker, put two graphene electrodes into the above beaker with a distance of 7 cm, and apply 30V direct current. After two weeks of electrolysis, the clear and colorless water becomes a black aqueous solution. After filtering the black aqueous solution with filter paper, it was centrifuged at a speed of 20,000 rpm for one hour, and the supernatant was taken. The supernatant is dried by rotary evaporation to obtain the required carbon quantum dots.
[0027] (2) Preparation of aqueous solution of carbon quantum dots:
[0028] Take 25 mg of carbon quantum dots and add 5 mL of water to obtain a 0.5 mg / mL solution.
[0029] (3) Catalyst NH 2 -Preparation of MIL-88(Fe):
[0030] 0.32 g of surfactant F127 was dissolved in 26.7 mL of deionized water, and 3.3 mL of 0.4 M ferric chloride aqueous solution was added to the above solution, and stirred for 1.5 hours. Then 0.6 mL of ...
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[0034] Example 2:
[0035] NH 2 -MIL-88(Fe) catalyst photocatalytic reduction of CO 2 Performance evaluation: take 10mg NH 2 -MIL-88(Fe) catalyst is uniformly dispersed on the quartz filter membrane, placed in a solid-gas photocatalytic reaction device, and 2mL of a mixture of acetonitrile and triethanolamine (the volume ratio of acetonitrile to triethanolamine is 4:1) Vacuum and charge CO 2 After that, the reaction was allowed to equilibrate in a dark environment for 1 hour. Subsequently, the reaction device was placed under a 300W visible light lamp, and the CO concentration was measured every two hours.
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[0036] Example 3:
[0037] Carbon quantum dot / NH 2 -MIL-88(Fe) photocatalytic reduction of CO 2 Performance evaluation: take 10mg carbon quantum dots / NH 2 -MIL-88(Fe) catalyst is uniformly dispersed on the quartz filter membrane, placed in a solid-gas photocatalytic reaction device, and 2mL of a mixture of acetonitrile and triethanolamine (the volume ratio of acetonitrile to triethanolamine is 4:1) Vacuum and charge CO 2 After that, the reaction was allowed to equilibrate in a dark environment for 1 hour. Subsequently, the reaction device was placed under a 300W visible light lamp, and the CO concentration was measured every two hours.
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