A method for preparing nano-gold arrays with catalytic properties by rigid cross-linking
A catalytic performance, nano-gold technology, applied in the field of nano-gold arrays, can solve the problem of few reports on the application of two-dimensional nano-gold arrays
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Embodiment 1
[0034] (1) Preparation of nano-gold solution: add 10 mL of deionized water to a 50 mL volumetric flask, shake, then add 50 μL of tetrachloroauric acid solution with a concentration of 50 mmol / L and 200 μL of sodium borohydride solution with a concentration of 50 mmol / L, and shake , in a water bath for 5 minutes, add 10 g of acetone and shake well, then add 10 g of n-hexane and 0.1 μL of dodecanethiol, and let stand to react for 30 minutes.
[0035] (2) Self-assembly and thermal annealing of the gold nanoarray array: 100 μL of toluene was added dropwise on the Teflon tape, and the gold nanometer array solution mixed with toluene was uniformly dispersed on the droplet. After the hexane-toluene solution was evaporated in the atmosphere, an orderly and regularly stacked gold nano-array appeared. Nano-gold serial vacuum oven heating for 3 hours (70Pa pressure 80 ℃), cooling at room temperature.
[0036] (3) Reaction of nano-gold arrays with rigid cross-linking agent: Nitrogen gas ...
Embodiment 2
[0039] (1) Preparation of nano-gold solution: add 10 mL of deionized water to a 50 mL volumetric flask, shake, then add 50 μL of tetrachloroauric acid solution with a concentration of 50 mmol / L and 200 μL of sodium borohydride solution with a concentration of 50 mmol / L, and shake , water bath for 5 minutes, add 1 g of acetone and shake well, then add 1 g of n-hexane and 0.01 μL of dodecanethiol, and let stand for reaction for 30 minutes.
[0040] (2) Self-assembly and thermal annealing of the gold nanoarray array: 100 μL of toluene was added dropwise on the Teflon tape, and the gold nanometer array solution mixed with toluene was uniformly dispersed on the droplet. After the hexane-toluene solution was evaporated in the atmosphere, an orderly and regularly stacked gold nano-array appeared. Nano-gold serial vacuum oven heating for 3 hours (70Pa pressure 80 ℃), cooling at room temperature.
[0041] (3) Reaction of nano-gold arrays with rigid cross-linking agent: Nitrogen gas was ...
Embodiment 3
[0044] (1) Preparation of nano-gold solution: add 10 mL of deionized water to a 50 mL volumetric flask, shake, then add 50 μL of tetrachloroauric acid solution with a concentration of 50 mmol / L and 200 μL of sodium borohydride solution with a concentration of 50 mmol / L, and shake , in a water bath for 5 minutes, add 100 g of acetone and shake well, then add 100 g of n-hexane and 1 μL of dodecanethiol, and let stand to react for 30 minutes.
[0045] (2) Self-assembly and thermal annealing of the gold nanoarray array: 100 μL of toluene was added dropwise on the Teflon tape, and the gold nanometer array solution mixed with toluene was uniformly dispersed on the droplet. After the hexane-toluene solution was evaporated in the atmosphere, an orderly and regularly stacked gold nano-array appeared. Nano-gold serial vacuum oven heating for 3 hours (70Pa pressure 80 ℃), cooling at room temperature.
[0046] (3) Reaction of the nano-gold array with the rigid cross-linking agent: Nitrog...
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