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Analyses of structurally modified quasi-solid-state electrolytes using electrochemical impedance spectroscopy for dye-sensitized solar cells

机译:使用电化学阻抗谱分析染料敏化太阳能电池的结构修饰的准固态电解质

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摘要

Electrochemical properties of structurally modified quasi-solid-state electrolytes were examined using porous substrates (PSs). The PS was prepared into two categories by a phase inversion method with a brominated poly(phenylene oxide) (BPPO): the sponge and finger types. Effects of the humidification and cosolvent compositions on the morphology of the PS were analyzed by scanning electron microscopy. In all cases of the PSs, a higher V_(OC) was observed of about 0.1 V than that of a liquid electrolyte owing to a suppressed back electron charge transfer. In addition, the PS prepared by the polymer solution of 1: 4: 1 (BPPO: N-methyl-2-pyrrolidone: butyl alcohol) with the humidification process showed better photovoltaic properties in terms of the current density and conversion efficiency owing to the appropriate combinations of pore size, tortuosity, and interconnectivity. Effects of the pore structures were intensively examined using electrochemical impedance spectroscopy. The impedance results revealed that large pores at the surface layers are advantageous for a lower R_S and R_(TiO2). Meanwhile, the straight inner structure is beneficial for the facile I~-/I _3 ~- diffusion, thus lowering R_(Pt).
机译:使用多孔基材(PSs)检查了结构改性的准固态电解质的电化学性能。通过使用溴化聚苯醚(BPPO)的相转化法将PS分为两类:海绵型和指型。通过扫描电子显微镜分析加湿和助溶剂组成对PS形态的影响。在所有PS的情况下,由于抑制了反向电子电荷转移,所以观察到的V_(OC)比液体电解质的V_(OC)高约0.1V。另外,通过加湿工艺由1:4:1的聚合物溶液(BPPO:N-甲基-2-吡咯烷酮:丁醇)制备的PS由于电流密度和转化效率的原因,具有更好的光电性能。孔径,曲折度和互连性的适当组合。孔结构的影响使用电化学阻抗谱进行了深入研究。阻抗结果表明,表层的大孔有利于降低R_S和R_(TiO2)。同时,笔直的内部结构有利于容易的I〜-/ I_3〜-扩散,从而降低了R_(Pt)。

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