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Geometrical implication of ion transporters employing an ellipsoidal hollow structure in pseudo-solid electrolytes

机译:几何意义的离子转运蛋白采用椭圆中空结构pseudo-solid电解质

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摘要

We demonstrate facilitated ion transport in oligomer electrolytes by introducing TiO2 hollow particles of ellipsoidal and spherical shapes. It was found that the TiO2 hollow particles of ellipsoidal shape are much more effective in constructing ionic diffusion paths for the Grotthuss mechanism, resulting in highly enhanced diffusion coefficients of ions such as I- and I-3(-) in oligomer electrolytes. Compared to the hollow spheres of the TiO2 component, the ellipsoidal hollow particles of the TiO2 component provide 11% larger ionic diffusion coefficients, because of their geometry with a relatively small diffusion resistance. Since the facilitated ion transport can render fast redox reactions at both photo and counter electrodes, the solid state dye-sensitized solar cells employing oligomer electrolytes based on the TiO2 hollow ellipsoids exhibit highly improved photovoltaic performances including highly improved energy-conversion efficiency without destabilizing the cell.
机译:我们证明了离子运输低聚物电解质通过引入二氧化钛空心椭球形和球形粒子的形状。发现二氧化钛空心粒子的椭球形状更有效构建离子扩散路径的Grotthuss机制,导致高度增强的我和离子的扩散系数等我在低聚物电解质(-)。二氧化钛组件的空心球体,椭圆形中空二氧化钛的颗粒组件提供大11%离子扩散因为他们的几何系数,相对较小的扩散阻力。促进离子运输可以呈现快速的氧化还原反应在照片和反电极,色素增感太阳能电池固态采用低聚物电解质基于二氧化钛空心椭圆体展览高度改善光伏性能包括高度提高能量转换效率不不稳定细胞。

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