Palladium-nickel-titanium ethylene glycol coordination polymer heterogeneous catalyst as well as preparation method and application thereof
A technology of heterogeneous catalysts and coordination polymers, applied in the direction of organic compound/hydride/coordination complex catalysts, carbon-based compound preparation, organic compound preparation, etc., can solve the problem of poor stability of heterogeneous palladium catalysts, Low recycling rate and other issues, to achieve huge industrial application value, low cost, and the effect of stabilizing palladium nanoparticles
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Embodiment 1
[0032] (1) the palladium acetate of weighing 0.01mol and nickel acetate tetrahydrate of 0.01mol are dissolved in the ethylene glycol (EG) solution of 60ml;
[0033] (2) Slowly add 0.02 mol of tetrabutyl titanate to the above solution (1) dropwise, and stir for 10 h at a speed of 600 r / min, the color of the solution is yellow;
[0034] (3) After the reaction, the reactants were taken out and washed with ethanol to obtain a yellow object, which was dried in a blast drying oven at 60° C., and the color changed from yellow to gray, and a micron-sized rod-shaped palladium-nickel-titanium glycol compound was obtained. bit polymer heterogeneous catalyst;
[0035] The micro-morphology of the palladium-nickel-titanium glycol coordination polymer is as attached figure 1 , whose XRD characterization is as figure 2 , it can be seen that the synthesized palladium-nickel-titanium glycol coordination polymer structure has a length of 0.8-1.1 μm and a diameter of 100-120 nm. The material h...
Embodiment 2
[0040] (1) Weighing 0.005mol of palladium acetate and 0.01mol of nickel acetate tetrahydrate are dissolved in the ethylene glycol (EG) solution of 60ml;
[0041] (2) Slowly add 0.015 mol of tetrabutyl titanate to the above solution (1) dropwise, and stir for 10 h at a speed of 600 r / min, the color of the solution is yellow;
[0042] (3) After the reaction, the reactants were taken out and washed with ethanol to obtain a yellow object, which was dried in a blast drying oven at 60° C., and the color changed from yellow to gray, and a micron-sized rod-shaped palladium-nickel-titanium glycol compound was obtained. bit polymer heterogeneous catalyst;
[0043] The microscopic appearance of this example is the same as that of Example 1, but the length of the synthesized palladium-nickel-titanium glycol coordination polymer is between 1.8-2 μm, and the diameter is between 100-120 nm. The material has a rod-like structure and is solid. Cylindrical.
Embodiment 3
[0045] (1) Weighing 0.002mol of palladium acetate and 0.01mol of nickel acetate tetrahydrate are dissolved in 60ml of ethylene glycol (EG) solution;
[0046] (2) Slowly add 0.012 mol of tetrabutyl titanate to the above solution (1) dropwise, and stir for 10 h at a speed of 600 r / min, the color of the solution is yellow;
[0047] (3) After the reaction, the reactants were taken out and washed with ethanol to obtain a yellow object, which was dried in a blast drying oven at 60° C., and the color changed from yellow to gray, and a micron-sized rod-shaped palladium-nickel-titanium glycol compound was obtained. bit polymer heterogeneous catalyst;
[0048] The microscopic appearance of this example is the same as that of Example 1, but the synthesized palladium-nickel-titanium glycol coordination polymer is between 3 and 5 μm, and its diameter is between 100 and 120 nm. The material is rod-shaped, solid, and cylindrical shape.
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