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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Broadband light confinement using a hierarchically structured TiO2 multi-layer for dye-sensitized solar cells
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Broadband light confinement using a hierarchically structured TiO2 multi-layer for dye-sensitized solar cells

机译:使用分层结构的TiO2多层薄膜进行宽带光限制,用于染料敏化太阳能电池

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摘要

Herein, we present a simple strategy for broadband light confinement without sacrificing dye-loading capacity by suitably combining multi-layer architecture with hierarchically structured TiO2. For this purpose, three distinct TiO2 hierarchical nanomaterials were exploited to simultaneously realize high internal surface area and a graded series of optical properties (in terms of reflectance and transmittance). The present hierarchically structured multi-layer showed a remarkable improvement in the overall efficiency for dye-sensitized solar cells (DSCs): a maximum of 11.43% at 1 Sun (12.16% at 1/8 Sun) versus 8.15% at 1 Sun (8.26% at 1/8 Sun) for the reference cell made of a nanocrystalline TiO2 single-layer. This notable result is attributed to the synergetic effects of the enhanced broadband light confinement, dye-loading, and charge-collection efficiency.
机译:在本文中,我们通过将多层结构与分层结构的TiO2适当组合,提出了一种在不牺牲染料负载能力的情况下实现宽带光限制的简单策略。为此,开发了三种不同的TiO2分层纳米材料,以同时实现高内表面积和一系列渐变的光学性能(在反射率和透射率方面)。当前的分层结构多层结构显着提高了染料敏化太阳能电池(DSC)的整体效率:1个太阳最高(11.16%,1/8太阳)最高11.43%,而1个太阳最高(8.16)(8.16)纳米晶TiO2单层制成的参比池的百分比(在1/8 Sun时为%)。该显着结果归因于宽带光限制,染料加载和电荷收集效率增强的协同效应。

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