Post-treatment of porous titanium dioxide film with plasmonic compact layer as a photoanode for enhanced dye-sensitized solar cells
首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Post-treatment of porous titanium dioxide film with plasmonic compact layer as a photoanode for enhanced dye-sensitized solar cells
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Post-treatment of porous titanium dioxide film with plasmonic compact layer as a photoanode for enhanced dye-sensitized solar cells

机译:具有等离子体致密层多孔二氧化钛薄膜作为增强染料敏化太阳能电池的光电晶片的多孔二氧化钛膜

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AbstractMesoporous TiO2photoanode before dye adsorption was modified with a thin compact layer of plasmonic silver-doped anatase TiO2(cTiO2-Ag) by a simple dip-coating method followed by thermal decomposition. Post-treatment process significantly enhanced the open-circuit photovoltage and short-circuit photocurrent density, resulting in an increase in the photoelectric conversion efficiency (η) of dye-sensitized solar cell (DSSC). Ag modification increased the optical absorption of dye through the localized surface plasmons and improved the interfacial connection between TiO2particles for expediting the electron transport, but at the expense of decreasing dye adsorption. There was no appreciable change in the adsorption amount of dye after the formation of cTiO2-Ag on photoanode. The cTiO2-Ag layer could provide an effective approach to enhancing light harvesting due to the plasmonic effect, bridging the pathways for electron transport, and decreasing the charge recombination at fluorinated tin oxide/electrolyte and/or TiO2/electrolyte interfaces, all of which could result in superior photovoltaic performance of DSSC. Theηvalue of DSSC using photoanode with cTiO2-Ag layer could reach as high as 9.45%, far better than that of DSSC using bare photoanode (6.27%).Graphical abstractDisplay OmittedHighlights?Plasmonic Ag-doped TiO2compact layer bridges gaps between TiO2particles.?Plasmonic Ag nanoparticles enhance light harvesting and electron transport.?Compact layer suppresses the charge recombination and enhances electron transport.?Photoanode with Ag-doped compact layer shows a high cell efficiency of 9.45%.]]>
机译:<![CDATA [ 抽象 mesopors tio 2 photoNode在染料之前用薄致密层的等离子体掺杂的抗酸碱酶TiO 2 (CTIO 2 通过简单的浸涂方法,然后进行热分解。后处理过程显着增强了开路光伏电压和短路光电流密度,导致染料敏化太阳能电池(DSSC)的光电转换效率(η)增加。 AG改性通过局部表面等离子体增加染料的光学吸收,并改善了TiO -AG在PhotoNode上。 CTIO 2> 2 -AG层可以提供一种有效的方法来提高由于等离子体效应引起的光收集,桥接电子传输的途径,并降低电荷重组氟化锡氧化锡/电解质和/或TiO 2 /电解质界面,所有这些都可能导致DSSC的卓越光伏性能。 η使用photoanode使用ctio 2 -ag层可以达到9.45%,更好比DSSC的光秃秃的光电码(6.27%)。 图形摘要 显示省略 突出显示 等离子体AG-DOPED TIO 2 紧凑型层桥梁在TIO 2 粒子。 等离子体Ag纳米粒子增强了光收获和电子传输。 label>? 紧凑型层抑制电荷重组并增强电子传输。 具有AG掺杂的紧凑层的PhotoNode显示出9.45%的高电池效率。 ]]>

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