Patch constrained porous carrier catalytic material and preparation method and applications thereof
A porous carrier, catalytic material technology, applied in chemical instruments and methods, physical/chemical process catalysts, organic compound/hydride/coordination complex catalysts, etc., can solve aging, loss of catalytic activity of precious metals, loss of precious metal nanoparticles and other problems, to achieve high stability, good catalytic activity, and the effect of being conducive to stability
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Embodiment 1
[0039] Dissolve hyperbranched polyethyleneimine (PEI, 0.43g, 10mmol aminohydrogen) in methanol (5mL), pass nitrogen to deoxygenate for 10 minutes, add trifluoroacetic acid (0.057g, 0.5mmol), sulfide (0.00625 g, 0.1 mmol), sealed under nitrogen, and stirred overnight to obtain mercapto-modified PEI.
[0040] Take the aqueous solution (83mL) containing chloroauric acid (0.83mmol) and heat it to 85°C with nitrogen, and quickly add the above-mentioned mercapto-modified PEI with a syringe under vigorous stirring, and continue to react at 85°C for 6-12 hours to obtain purple-red to a black solution. Adjust the pH to 12, add sodium chloride to nearly saturation, add chloroform to extract the colored part.
[0041]The above-mentioned chloroform solution and glycerol ether-capped polystyrene (PS, 6.75g, molecular weight 4500, 0.15mmol, synthesis method refer to literature Wan DC, Yuan JJ, Pu HT.Macromolecules 2009,42,1533) were mixed to form a solution, at room temperature The reacti...
Embodiment 2
[0043] The chloroauric acid in Example 1 was replaced by an equimolar amount of silver nitrate, and the rest was the same as in Example 1 to prepare nanocomposite particles Ag-PEI@PS.
Embodiment 3
[0045] The chloroauric acid in embodiment 1 is replaced with the potassium chloroplatinate of equimolar amount, but the reduction reaction of potassium chloroplatinate is carried out with sodium borohydride aqueous solution (12 equivalents of platinum ion) as reducing agent at room temperature, all the other are the same Example 1, preparing nanocomposite particles Pt-PEI@PS.
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