Preparation method of novel colored BIPV (building integrated photovoltaics)
A color and new technology, applied in the field of preparation of new color BIPV, can solve the problems of excessive power loss of photovoltaic modules, large power loss of photovoltaic modules, and large light absorption of film materials, so as to reduce the loss of photoelectric conversion efficiency. , the reduction of photoelectric conversion efficiency loss, the effect of simple and flexible process
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Embodiment 1
[0027] Taking the cadmium telluride (CdTc) thin film solar BIPV product as an example, its typical structure includes front glass, PVB, power generation glass, PVB, and back glass arranged in sequence from top to bottom. The front glass is the outermost layer of the BIPV product. Its appearance color can determine the building facade color and overall appearance effect. The preparation method of colored front panel glass includes the following steps:
[0028] 1. Coating multi-layer optical film on the glass surface: control visible light transmittance at 30%~90%, reflectivity at 70%~10%, absorption rate 3 N 4 , SnO 2 , AZO, ITO, TiO 2, Ti3O 5, Ti2O3, Nb 2 O 5 , ZrO 2 , one or more of AlN, L-type low refractive index material Al 2 O 3, SiO 2 , one or more of MgF, the optical thin film material is composed of a high refractive index material H and a low refractive index material L, and the quantitative expression of the film structure is (H+L) n +H, that is, on the g...
Embodiment 2
[0038] Taking the cadmium telluride (CdTc) thin film solar BIPV product as an example, its typical structure includes front glass, PVB, power generation glass, PVB, and back glass arranged in sequence from top to bottom. The front glass is the outermost layer of the BIPV product. Its appearance color can determine the building facade color and overall appearance effect. The preparation method of colored front panel glass includes the following steps:
[0039]1. Coating multi-layer optical film on the glass surface: control visible light transmittance at 30%~90%, reflectivity at 70%~10%, absorption rate 3 N 4 , SnO 2 , AZO, ITO, TiO 2, Ti3O 5, Ti2O3, Nb 2 O 5 , ZrO 2 , one or more of AlN, L-type low refractive index material Al 2 O 3, SiO 2 , one or more of MgF, the optical thin film material is composed of a high refractive index material H and a low refractive index material L, and the quantitative expression of the film structure is (H+L) n +H, that is, on the gl...
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