A hybrid perovskite material with pressure calorie effect and its application
A perovskite material and perovskite technology, applied in the direction of heat exchange materials, chemical instruments and methods, etc., can solve the problems of difficult composition control, limited application, poor water solubility, etc., and achieve expanded application prospects and good water solubility , the effect of easy ingredients
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Embodiment 1
[0033] Embodiment 1 of the present invention provides a hybrid perovskite material [(CH 3 ) 2 NH 2 ][Mg(HCOO) 3 ], through high pressure differential thermal analysis equipment, DSC and variable temperature powder X-ray diffraction methods to study the structure and phase transition of materials, and to evaluate the calorie effect of materials through Maxwell's equations; to reveal the impact of the crystal structure of materials on calorie Effect; Preliminary evaluation of the cooling efficiency of the material in the device.
[0034] Use the hydrothermal method to design and synthesize the material. First, the weighed N'N dimethylformamide (DMF) and water (H 2 O) join in the beaker of 25ml, then weigh the magnesium chloride hexahydrate (MgCl 2 ·6H 2 O) Add it to the above solution for ultrasonication and stirring. After it is stirred evenly, add it to a 25ml polytetrafluoroethylene liner and seal it with an autoclave. React for 3 days in a constant temperature drying ov...
Embodiment 2
[0051] Hybrid perovskite materials [(CH 3 ) 2 NH 2 ][Mg(HCOO) 3 ] Applied to air conditioners, the hybrid perovskite is put into the compressor as a refrigerant, and the pressure is applied to the hybrid perovskite refrigerant through the piston, and the hybrid perovskite refrigerant becomes a high-temperature solid under pressure, and the hybrid After the perovskite refrigerant becomes a high-temperature solid, the compressor transfers the heat of the hybrid perovskite refrigerant to the condenser, so that the hybrid perovskite refrigerant releases excess heat and the temperature returns to the initial state, removing the pressure At this time, the temperature of the hybrid perovskite refrigerant drops sharply, and the hybrid perovskite refrigerant returns to its initial state to absorb the heat of the surrounding environment to reduce the air temperature, and achieve the purpose of refrigeration through continuous circulation.
Embodiment 3
[0053] Hybrid perovskite materials [(CH 3 ) 2 NH 2 ][Mg(HCOO) 3 ] applied to refrigerators, put the hybrid perovskite as a refrigerant into the compressor, apply pressure to the hybrid perovskite refrigerant through the piston, and the hybrid perovskite refrigerant becomes a high-temperature solid under pressure, and the hybrid After the perovskite refrigerant becomes a high-temperature solid, the compressor transfers the heat of the hybrid perovskite refrigerant to the condenser, so that the hybrid perovskite refrigerant releases excess heat and the temperature returns to the initial state, removing the pressure At this time, the temperature of the hybrid perovskite refrigerant drops sharply, and the hybrid perovskite refrigerant returns to the initial state to absorb the heat of the surrounding environment and reduce the air temperature. Through continuous circulation, the internal temperature of the refrigerator is reduced, thereby achieving the purpose of refrigeration. ...
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