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Scattering and plasmonic synergetic enhancement of the performance of dye-sensitized solar cells by double-shell SiO2@Au@TiO2 microspheres

机译:双壳SiO2染料敏化太阳能电池性能的散射和等离子体协同增强@ Au @ TiO2微球的性能

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摘要

The Au nanoparticle. sandwich double spheric-shells of SiO2@Au@TiO2 (SAT) microspheres are synthesized. The significant influence of the SAT microspheres on the properties of. dye-sensitized solar cells (DSSCs) is investigated. Studies indicate that the introduction of. SAT. markedly enhanced the light scattering and capture ability of DSSCs. and thus. photogenerated electrons.. DSSCs doped with 2.25 wt%. SAT exhibit a. maximum short circuit current density of 17.0 mA cm(-2) and photoelectric conversion efficiency of 7.14%, which are. remarkably higher than those of. conventional DSSCs at 15.7% and 21.2%, respectively. The marked enhancement in the performance of the optimal DSSCs can be attributed to the synergetic complementary effect of the enhanced light scattering of the microspheres and to the localized surface plasmon resonance of the Au nanoparticles in the SAT, and. is. a novel promising way of. enhancing the performance of DSSCs.
机译:Au纳米粒子。 合成SiO2 @ Au @ Au @ TiO2(SAT)微球的夹层双球壳。 SAT微球对大豆性质的显着影响。 研究了染料敏化太阳能电池(DSSC)。 研究表明引入。 坐了。 显着提高了DSSC的光散射和捕获能力。 因此。 光生电子。DSSCs掺杂2.25wt%。 SAT展览A. 最大短路电流密度为17.0 mA cm(-2),光电转换效率为7.14%,即。 非常高于那些。 常规DSSC分别为15.7%和21.2%。 最佳DSSCs性能的显着增强可归因于微球的增强光散射的协同互补效果,以及饱和Au纳米颗粒的局部表面等离子体共振。 是。 一种新颖的有希望的方式。 增强DSSC的性能。

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