A kind of copper-iron-zinc-tin-sulfur micron single crystal particle and its preparation method and its application in the preparation of solar cells
A copper-iron-zinc-tin-sulfur, solar cell technology, applied in circuits, photovoltaic power generation, electrical components, etc., can solve problems such as difficulty in growing large-sized single crystal particles, difficulty in preparation and performance optimization of high-efficiency thin-film cells, and improve utilization high efficiency, easy industrial production, and the effect of eliminating crystal plane edges and corners
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Embodiment 1
[0035] Weigh the reaction raw materials 10mmol CuS, 1.5mmol FeS, 3.5mmol ZnS, 5mmol SnS and flux 50mmol CsI, mix and grind thoroughly to make it evenly mixed; put the mixed sample into a quartz bottle, and use a vacuum pump unit to evacuate to 10~10 2Pa (can also be protected with an inert gas), so as to eliminate the influence of air on the molten salt reaction, seal the quartz bottle with an oxyhydrogen flame; place the sealed quartz bottle with the mixed sample in a common heating furnace and heat it from normal temperature to 800 Keep the temperature at ℃ for 72h, then cool down to 600℃, take out the quartz bottle and quickly cool it down to room temperature (put it in water); finally take out the sample in the quartz bottle, wash it with ultrasonic water several times to remove the flux CsI, and then place the sample in a drying oven at 80℃ After drying for 2 hours, black particles with crystalline luster on the surface were obtained, and finally the obtained sample was s...
Embodiment 2
[0038] Weigh the reaction raw materials 10mmol Cu, 3.5mmol FeS, 1.5mmol Zn, 5mmol Sn, 18mmol S and flux 60mmol CsCl, mix and grind thoroughly to make it evenly mixed; put the mixed sample into a quartz bottle, and use a vacuum pump unit Vacuum up to 10~10 2 Pa (can also be protected with inert gas), so as to eliminate the influence of air on the molten salt reaction, seal the quartz bottle with an oxyhydrogen flame; place the sealed quartz bottle with mixed samples in a common heating furnace and heat it from normal temperature to 750 Keep at ℃ for 72 hours, then cool down to 600℃, take out the quartz bottle and quickly cool it down to room temperature (put in water); finally take out the sample in the quartz bottle, wash it with ultrasonic water several times to remove the flux CsCl, and then put the sample in a drying oven at 80℃ After drying for 2 hours, black particles with crystalline luster on the surface were obtained, and finally the obtained sample was sieved to obtai...
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