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首页> 外文期刊>Bulletin of the Korean Chemical Society >Anchoring Cadmium Chalcogenide Quantum Dots (QDs) onto Stable Oxide Semiconductors for QD Sensitized Solar Cells
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Anchoring Cadmium Chalcogenide Quantum Dots (QDs) onto Stable Oxide Semiconductors for QD Sensitized Solar Cells

机译:将硫化硫镉量子点(QD)固定在用于QD敏化太阳能电池的稳定氧化物半导体上

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摘要

Anchoring quantum dots (QDs) onto thermodynamically stable, large band gap oxide semiconductors is a very important strategy to enhance their quantum yields for solar energy conversion in both visible and near-IR regions. We describe a general procedure for anchoring a few chalcogenide QDs onto the titanium oxide layer. To anchor the colloidal QDs onto a mesoporous TiO2 layer, linker molecules containing both carboxylate and thiol functional groups were initially attached to TiO2 layers and subsequently used to capture dispersed QDs with the thiol group. Employing the procedure, we exploited cadmium selenide (CdSe) and cadmium telluride (CdTe) quantum dots (QDs) as inorganic sensitizers for a large band gap TiO2 layer of dye-sensitized solar cells (DSSCs). Their attachment was confirmed by naked eyes, absorption spectra, and photovoltaic effects. A few QD-TiO2 systems thus obtained have been characterized for photoelectrochemical solar energy conversion.
机译:将量子点(QD)固定在热力学稳定的大带隙氧化物半导体上是提高可见光和近红外区域太阳能转换的量子产率的非常重要的策略。我们描述了将一些硫族化物QD锚定在氧化钛层上的一般步骤。为了将胶体QD固定在介孔TiO2层上,首先将同时包含羧酸盐和硫醇官能团的连接分子连接到TiO2层,然后用于捕获具有硫醇基的分散QD。利用该程序,我们利用硒化镉(CdSe)和碲化镉(CdTe)量子点(QDs)作为无机敏化剂,用于染料敏化太阳能电池(DSSC)的大带隙TiO2层。通过肉眼,吸收光谱和光伏效应证实了它们的附着。如此获得的一些QD-TiO2系统已被表征用于光电化学太阳能转换。

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