Method for synthesizing high-performance metallic materials in low-temperature liquid phase
A technology of metal materials and low-temperature liquid phase, which is applied in the fields of materials science, engineering technology and chemistry, can solve the problems of low reliability and inability to greatly increase production, and achieve the effect of easy operation and simple process
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Embodiment 1
[0013] atomically dispersed Ag 1 / TiO 2 Preparation of composite materials.
[0014] First, the water / ethanol mixed solution with a volume ratio of 1:9 is configured as antifreeze: 0.02M AgNO 3 Reaction solution A and containing 5.0M N 2 h 5 Titanium dioxide P25 carrier dispersion of OH reducing agent (2.5mg ml -1 ). Next, the above-mentioned solution and dispersion liquid were placed in a low-temperature box, the temperature was lowered to minus 60° C., and the temperature was maintained for 30 minutes. With syringe pump control, 5ml AgNO 3 Reaction solution A with 0.5ml min -1 Add it dropwise to 125mL of the reducing agent-carrier mixed dispersion at a rate of After the mixed liquid was continuously stirred and reacted at minus 60° C. for 2 hours, it was recovered and cleaned by low-temperature vacuum filtration, and dried naturally at room temperature. Atomically dispersed Ag can be obtained 1 / TiO 2 composite material.
Embodiment 2
[0016] atomically dispersed Ag 1 / TiO 2 Preparation of composite materials.
[0017] First, the water / tetrafluorohydrofuran mixed solution with a volume ratio of 1:9 is used as the antifreeze solution: 0.05M AgNO 3 Reaction solution A and containing 5.0M NaBH 4 Titanium dioxide P25 carrier dispersion of reducing agent (5 mg ml -1 ). Next, the above-mentioned solution and dispersion liquid were placed in a low-temperature box, the temperature was lowered to minus 60° C., and the temperature was maintained for 30 minutes. With syringe pump control, 5ml AgNO 3 The reaction solution A was directly mixed with 125 mL of the reducing agent carrier mixed dispersion liquid. After the mixed liquid was continuously stirred and reacted at minus 60° C. for 2 hours, it was recovered and cleaned by low-temperature vacuum filtration, and dried naturally at room temperature. Atomically dispersed Ag can be obtained 1 / TiO 2 composite material.
Embodiment 3
[0019] atomically dispersed Ag 1 / TiO 2 Preparation of composite materials.
[0020] First, the water / ethanol mixed solution with a volume ratio of 1:9 is configured as antifreeze: 0.05M AgNO 3 Reaction solution A and 5mg ml -1 Titanium dioxide P25 carrier dispersion. Next, the above-mentioned solution and dispersion liquid were placed in a low-temperature box, the temperature was lowered to minus 45° C., and the temperature was maintained for 60 minutes. Introduce UV light to irradiate AgNO 3 Solution A, the light time continued for 2h, and the reacted AgNO 3 Solution A was mixed with 125 mL of the vehicle dispersion. After the mixed liquid was continuously stirred and reacted at minus 45° C. for 2 hours, it was recovered and cleaned by low-temperature vacuum filtration, and dried naturally at room temperature. Atomically dispersed Ag can be obtained 1 / TiO 2 composite material.
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