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Aqueous synthesis of colloidal CdSe_xTe_(1-x) - CdS core-shell nanocrystals and effect of shell formation parameters on the efficiency of corresponding quantum dot sensitized solar cells

机译:胶体CDSE_XTE_(1-X) - CDS核 - 壳纳米晶体的水性合成及壳体形成参数对相应量子点敏化太阳能电池效率的影响

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In this research CdSe0.4Te0.6 NCs were synthesized in aqueous solution through a cheap, simple, and modified hot injection chemical precipitation method. The reflux time was altered in a wide range for the synthesis of these NCs with different size and bandgap energies. Then they were applied as a co-sensitizing layer together with CdS NCs film in the photoanod of quantum dot sensitized solar cells (QDSCs). It was shown that the QDSC with TiO2 NCs/CdSeTe(7 h)/CdS/ZnS photoelectrode demonstrated the maximum power conversion efficiency (PCE) of 4.2% in AM1.5 solar irradiation. The selected CdSeTe NCs prepared in 7 h of the reflux time were utilized in a second growth process to form core-shell CdSeTe-CdS NCs. The shell formation time was widely altered and NCs were applied in the photoanod of corresponding QDSCs. It was demonstrated that the cell with TiO2 NCs/CdSeTe (7 h)-CdS(100 min)/CdS/ZnS photoelectrode revealed the best efficiency of 4.6% in the experiments. This was due to the surface passivation of the sensitizing NCs and better charge collection efficiency.
机译:在本研究中,通过廉价,简单,改进的热注入化学沉淀方法,在水溶液中合成Cdse0.4Te0.6。回流时间在宽范围内改变,用于合成这些NC,具有不同的大小和带隙能量。然后将它们与量子点敏化太阳能电池(QDSCS)的光电膜中的CDS NCS膜一起用作共敏化层。结果表明,具有TiO2 NCS / CDSETE(7H)/ CDS / ZnS光电电极的QDSC证明了AM1.5太阳照射中的最大功率转换效率(PCE)为4.2%。在第二生长过程中使用在回流时间7小时内制备的所选择的CDSET NC,以形成核心壳CDSETE-CDS NCS。壳体形成时间被广泛改变,并且在相应的QDSC的光处理中应用NCS。据证明,具有TiO2 NCS / CDSETE(7小时)-CDS(100分钟)/ CDS / ZnS光电电极的细胞显示实验中最佳效率为4.6%。这是由于敏感性NCS的表面钝化和更好的充电收集效率。

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