Solid electrolyte for dye sensitization solar battery based on ion crystal
A technology of solar cells and solid electrolytes, applied in the field of dye-sensitized solar cells, can solve problems such as leakage stability, achieve high stability, high battery performance and photoelectric conversion efficiency, and increase the effect of light scattering phenomenon
Inactive Publication Date: 2013-10-23
SUZHOU UNIV
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[0006] The object of the present invention is to provide a solid electrolyte for dye-sensitized solar cells based on ionic crystals, which overcomes the problems of leakage and poor stability of common electrolytes, and improves the photoelectric conversion efficiency of the battery
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Embodiment 1-5
[0018] Table 1 shows the composition ratio of solid electrolytes for dye-sensitized solar cells based on ionic crystals in Examples 1-5.
[0019] Table 1 Composition and ratio of solid electrolytes for dye-sensitized solar cells based on ionic crystals in Examples 1-5
[0020] Types and contents of ionic crystals Elemental iodine (I 2 )content Additive type and content Example 1 0.07g 0.015g MBI 0.015g Example 2 0.09g 0.005g TBP0.005g Example 3 0.08g 0.01g NBB 0.01g Example 4 0.08g 0.015g NBB0.005g Example 5 0.085g 0.005g NBB 0.01g
[0021] Where MBI means methylbenzimidazole, NBB means butylbenzimidazole, and TBP means tert-butylpyridine.
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The invention relates to solid electrolyte for a dye sensitization solar battery based on ion crystal. The solid electrolyte comprises the following components by weight percent: 70 to 90 percent of ion crystal, 5 to 15 percent of elemental iodine and 5 to 15 percent of additives, wherein the chemical structural formula of the ion crystal is as follows, s is an integer of 1 to 12, and q is an integer of 0 to 5. The electrolyte is solid, so that the leakage problem in the application process can be effectively overcome, and the high stability of the dye sensitization solar battery can be maintained; and meanwhile, cyan biphenylyl groups are introduced in the ion crystal, so that the light scattering phenomenon can be increased, and high battery performance and photoelectric conversion efficiency can be maintained.
Description
technical field [0001] The invention belongs to the field of dye-sensitized solar cells, and in particular relates to a solid electrolyte based on ion crystals. Background technique [0002] As the core component of dye-sensitized solar cells, the electrolyte mainly plays the role of transporting redox pairs, and its performance directly affects the efficiency of solar cells. [0003] Common electrolytes for dye-sensitized solar cells are liquid, quasi-solid, and solid. Among them, liquid electrolytes mostly contain organic solvents such as acetonitrile and methoxypropionitrile, which have the disadvantages of easy leakage, volatility, difficult packaging, high toxicity, and poor stability; quasi-solid electrolytes contain a small amount of ethylene carbonate, propylene carbonate, Solvents such as ionic liquids also have the problems of easy leakage and difficult packaging. Long-term use has leakage problems, which will cause a decline in battery stability. This has a decis...
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IPC IPC(8): H01G9/20H01G9/028
CPCY02E10/542
Inventor 赵杰丛姗邹贵付易庆华高敏达周阳曹梦瑜
Owner SUZHOU UNIV
