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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >CdTe based quantum dot sensitized solar cells with efficiency exceeding 7% fabricated from quantum dots prepared in aqueous media
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CdTe based quantum dot sensitized solar cells with efficiency exceeding 7% fabricated from quantum dots prepared in aqueous media

机译:由在水介质中制备的量子点制造的效率超过7%的CdTe基量子点敏化太阳能电池

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摘要

CdTe quantum dots (QDs) with a narrow band gap and high conduction band (CB) edge provide great potential for the fabrication of QD sensitized solar cells (QDSCs). Herein, a convenient aqueous route was adopted to synthesize CdTe core QDs for the construction of type-II core/shell QD sensitizers. First, mercaptopropionic acid (MPA) capped water-soluble CdTe QDs were synthesized in aqueous media. After tethering the CdTe QDs onto a mesoporous TiO2 photoanode, CdTe/CdS and CdTe/CdSexS1-x type-II core/shell QD sensitizers were formed by post-depositing CdS and CdSexS1-x shell materials over the photoanodes via a successive ionic layer adsorption and reaction processes (SILAR), respectively. A wider light harvesting range together with a wider photoelectronic response range was observed in the resultant CdTe/CdS and CdTe/CdSexS1-x core/shell QD based solar cells relative to plain CdTe cells. Simultaneously, suppressed charge recombination processes has also been confirmed by impedance spectroscopy (IS), and open-circuit voltage decay (OCVD) characterizations. Consequently, compared to the plain CdTe QDSCs, the power conversion efficiencies (PCEs) for CdTe/CdS and CdTe/CdSeS were enhanced by 22 and 35%, respectively. With the optimization of CdSexS1-x shell thickness, a PCE of 7.24% under the illumination of one full sun was obtained.
机译:具有窄带隙和高导带(CB)边缘的CdTe量子点(QD)为制造QD敏化太阳能电池(QDSC)提供了巨大的潜力。在本文中,采用方便的水性路线来合成CdTe核心QD,用于构建II型​​核/壳QD敏化剂。首先,在水性介质中合成了巯基丙酸(MPA)封端的水溶性CdTe QD。将CdTe QD束缚到中孔TiO2光电阳极上后,通过将CdS和CdSexS1-x壳层材料通过连续的离子层吸附作用在光阳极上后沉积,形成CdTe / CdS和CdTe / CdSexS1-x II型核/壳QD敏化剂。和反应过程(SILAR)分别。相对于普通CdTe电池,在基于CdTe / CdS和CdTe / CdSexS1-x核/壳QD的太阳能电池中观察到了更宽的光收集范围以及更宽的光电响应范围。同时,阻抗谱(IS)和开路电压衰减(OCVD)表征也证实了抑制的电荷复合过程。因此,与普通CdTe QDSC相比,CdTe / CdS和CdTe / CdSeS的功率转换效率(PCE)分别提高了22%和35%。通过优化CdSexS1-x外壳厚度,在一个充满阳光的照射下,PCE为7.24%。

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