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Organophosphates as Solvents for Electrolytes in Electrochemical Devices

机译:有机磷酸酯作为电化学装置中电解质的溶剂

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摘要

A homologous series of fire-retardant oligoalkyleneoxy-phosphates was synthesized for evaluation as liquid or gel-type electrolyte media for dye-sensitized solar cells (DSSCs) and secondary lithium batteries. Unoptimized DSSC electrolyte formulations for DSSCs achieved ionic conductivities as high as 5.71 X 10~(-3) S·cm~(-1) and DSSC test-cell efficiencies up to 3.6% as well as V_(oc), J_(sc), and ff up to 0.81 V, 8.03 mA·cm~(-2), and 0.69, respectively. Poly(bis-(2-(2-methoxyethoxy)ethoxy)phosphazene)-based Li~+-conducting gel electrolytes plasticized with the best performing phosphate had conductivities as high as 9.9 X 10~(-4) S·cm~(-1) at 30 °C. All the liquids have boiling points higher than 197 °C. The results show that the viscosity, glass transition temperatures, and conductivity of the phosphates are dependent mainly on the length of the longest alkyleneoxy chain.
机译:合成了一系列阻燃的低聚环氧烷氧基磷酸酯,作为染料敏化太阳能电池(DSSC)和二次锂电池的液体或凝胶型电解质介质进行评估。未优化的用于DSSC的DSSC电解质配方的离子电导率高达5.71 X 10〜(-3)S·cm〜(-1),DSSC测试电池效率高达3.6%,V_(oc),J_(sc)和ff分别达到0.81 V,8.03 mA·cm〜(-2)和0.69。用性能最佳的磷酸盐增塑的聚(双-(2-(2-(2-甲氧基乙氧基)乙氧基)磷腈)基的Li〜+导电凝胶电解质的电导率高达9.9 X 10〜(-4)S·cm〜(- 1)在30°C下。所有液体的沸点均高于197°C。结果表明,磷酸盐的粘度,玻璃化转变温度和电导率主要取决于最长的亚烷氧基链的长度。

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