Solar cell including aluminum-based solar energy conversion material
When a solar wavelength conversion material (solar spectral wavelength converter) produced based on a low-cost aluminum material having an ultraviolet ray absorption spectrum and a visible light emitting spectrum is positioned between a solar cell and an encapsulant of the front surface of the solar cell on which solar light is incident, photocurrent conversion efficiency of the solar cell may be improved by inducing a down-conversion effect and an anti-reflective coating effect at the same time, thereby increasing light-generated current.
1. A solar cell comprising a luminescent aluminum hydroxide in an interface between an encapsulant of a front surface of the solar cell on which solar light is incident and the solar cell,
wherein the aluminum hydroxide is generated by a thermal decomposition synthesis method from a single aluminum precursor,
wherein photocurrent conversion efficiency is improved, and
wherein the thermal decomposition synthesis method of the luminescent aluminum hydroxide comprises injecting an impurity selected from the group consisting of carbonyl radical, oxalic acid, phosphoric acid, and sulfuric acid.
2. The solar cell of claim 1 , wherein a maximum absorption wavelength of the luminescent aluminum hydroxide is formed between 300 nm and 450 nm, and a maximum emission wavelength of the luminescent aluminum hydroxide is formed between 450 nm and 1,100 nm.
3. The solar cell of claim 1 , wherein the luminescent aluminum hydroxide is coated on the front surface of the solar cell.
4. The solar cell of claim 1 , wherein the luminescent aluminum hydroxide is coated on a surface of the encapsulant which is adhered to the front surface of the solar cell.
5. The solar cell of claim 1 , wherein the luminescent aluminum hydroxide is positioned between the solar cell and the encapsulant by inserting a manufactured film between the encapsulant which is adhered to the front surface of the solar cell and the front surface of the solar cell,
wherein the manufactured film has a thickness of 100 μm or less and is prepared by dispersing the luminescent aluminum hydroxide into a light transmitting resin comprising the encapsulant.
6. The solar cell of claim 3 , wherein the coating method is a spray coating method.
7. The solar cell of claim 3 , wherein the coating method is a screen printing method.
8. The solar cell of claim 5 , wherein the encapsulant is formed of any one selected from the group consisting of ethylene vinyl acetate (EVA), polyolefin elastomer (POE), cross-linked polyolefin, thermoplastic polyurethane (TPU), polyvinyl butyral (PVB), silicone, silicone/polyurethane hybrid, and ionomer.
9. The solar cell of claim 1 , wherein the luminescent aluminum hydroxide has a particle size of 10 μm or less.
10. The solar cell of claim 1 , wherein the aluminum precursor is any one selected from the group consisting of aluminum monoacetate, aluminum triacetate, aluminum diacetate, aluminum triethylaluminum, trimethylaluminum, aluminum alkoxide, diethylaluminum chloride, aluminum sulfate, aluminum cyanide, aluminum nitrite, aluminum carbonate, aluminum sulfite, aluminum hydroxide, aluminum oxide, aluminum chlorate, aluminum sulfide, aluminum chromate, aluminum trichloride, aluminum perchlorate, aluminum nitrate, aluminum permanganate, aluminum hydrogen carbonate, aluminum phosphate, aluminum oxalate, aluminum hydrogen phosphate, aluminum thiosulfate, aluminum chlorite, aluminum hydrogen sulfate, aluminum dichromate, aluminum bromide, aluminum hypochlorite, aluminum chloride hexahydrate, aluminum dihydrogen phosphate, aluminum phosphite, aluminum potassium sulfate dodecahydrate, aluminum bromate, aluminum nitride, and derivatives thereof.
11. The solar cell of claim 1 , wherein the luminescent aluminum hydroxide comprises one or more structures selected from the group consisting of Al(OH) 3 , AlOOH, 5Al 2 O 3 ·2H 2 O, and Al 2 O 3 .
12. The solar cell of claim 4 , wherein the coating method is a spray coating method.
13. The solar cell of claim 4 , wherein the coating method is a screen printing method.