Preparation method of photothermal conversion phase-change energy storage composite material
A light-to-heat conversion and phase-change energy storage technology, which is applied in the direction of heat exchange materials, microsphere preparation, chemical instruments and methods, etc., can solve the problems of insignificant thermal conductivity of microcapsules and low thermal conductivity of zinc oxide, etc. Achieve the effects of simple preparation method, low cost and improved speed
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Embodiment 1
[0039] (1) Mix carboxylated carbon nanotubes (0.05g), sliced paraffin (0.4g) and oleylamine (0.4g), and stir continuously for 5 minutes at a stirring speed of 600 rpm at 57°C to obtain a uniform oil phase liquid.
[0040] (2) Dissolve copper formate tetrahydrate (0.8g) and glucose (1.6g) in deionized water (40g), stir manually for 10min to form a uniform solution, and then add dropwise to the oil phase in step (1) , stirring continuously for 5 minutes at a stirring speed of 600 rpm, gradually forming an emulsion to obtain a reaction mixture.
[0041] (3) Pour the reaction mixture obtained in step (2) into the polytetrafluoroethylene liner of a 100ml autoclave, put it into a constant temperature oven at 120°C, react for 6 hours, and centrifuge, wash, and After drying, paraffin wax@Cu-Cu2O / CNTs phase change energy storage microcapsules can be obtained.
[0042] figure 2 It is the SEM photo of the product obtained in this embodiment. As can be seen from the figure, the micr...
Embodiment 2
[0044] (1) Mix carboxylated carbon nanotubes (0.07g), sliced paraffin (3.0g) and oleylamine (1.6g), and stir continuously for 20 minutes at a stirring speed of 800 rpm at 70°C to obtain a uniform oil phase liquid.
[0045] (2) Dissolve copper formate tetrahydrate (3.0g) and glucose (6.0g) in deionized water (80g), stir manually for 10min to form a uniform solution, and then add dropwise to the oil phase in step (1) , stirring continuously for 30 minutes at a stirring speed of 1000 rpm, gradually forming an emulsion to obtain a reaction mixture.
[0046] (3) Pour the emulsion into the polytetrafluoroethylene liner of the high-pressure reactor, put it in a constant temperature oven at 150°C, and react for 24 hours. After the reacted emulsion is centrifuged, washed, and dried, paraffin wax can be obtained. Cu-Cu 2 O / CNTs phase change energy storage microcapsules.
[0047] image 3 It is the SEM photo of the product obtained in this embodiment. As can be seen from the figure...
Embodiment 3
[0049] (1) Mix carboxylated carbon nanotubes (0.1g), sliced paraffin (1.6g) and oleylamine (1.6g), and stir continuously for 10 minutes at 80°C at a stirring speed of 1000 rpm to obtain a uniform oil phase liquid.
[0050] (2) Dissolve copper formate tetrahydrate (0.8g) and glucose (1.6g) in deionized water (80g), stir manually for 10min to form a uniform solution, and then add dropwise to the oil phase in step (1) , stirring continuously for 30 minutes at a stirring speed of 1000 rpm, gradually forming an emulsion to obtain a reaction mixture.
[0051] (3) Pour the emulsion into the polytetrafluoroethylene liner of the autoclave, put it in a constant temperature oven at 120°C, and react for 12 hours. After the reacted emulsion is centrifuged, washed, and dried, paraffin wax can be obtained. Cu-Cu 2 O / CNTs phase change energy storage microcapsules.
[0052] Figure 4 It is the SEM photograph of the product obtained in this example. It can be seen from the figure that the...
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