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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Improving the performance of quantum dot sensitized solar cells through CdNiS quantum dots with reduced recombination and enhanced electron lifetime
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Improving the performance of quantum dot sensitized solar cells through CdNiS quantum dots with reduced recombination and enhanced electron lifetime

机译:通过CdNiS量子点提高量子点敏化太阳能电池的性能,同时减少重组并延长电子寿命

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To make quantum dot-sensitized solar cells (QDSSCs) competitive, we investigated the effect of Ni2+ ion incorporation into a CdS layer to create long-lived charge carriers and reduce the electron-hole recombination. The Ni2+ -doped CdS (simplified as CdNiS) QD layer was introduced to a TiO2 surface via the simple successive ionic layer adsorption and reaction (SILAR) method in order to introduce intermediateenergy levels in the QDs. The effects of different Ni2+ concentrations (5, 10, 15, and 20 mM) on the physical, chemical, and photovoltaic properties of the QDSSCs were investigated. The Ni2+ dopant improves the light absorption of the device, accelerates the electron injection kinetics, and reduces the charge recombination, which results in improved charge transfer and collection. The 15% CdNiS cell exhibits the best photovoltaic performance with a power conversion efficiency (eta) of 3.11% (J(SC) = 8.91 mA cm(-2), VOC = 0.643 V, FF = 0.543) under one full sun illumination (AM 1.5 G). These results are among the best achieved for CdS-based QDSSCs. Electrochemical impedance spectroscopy (EIS) and open circuit voltage decay (OCVD) measurements confirm that the Ni2+ dopant can suppress charge recombination, prolong the electron lifetime, and improve the power conversion efficiency of the cells.
机译:为了使量子点敏化太阳能电池(QDSSC)具有竞争力,我们研究了将Ni2 +离子掺入CdS层中以产生长寿命电荷载流子并减少电子-空穴复合的作用。通过简单的连续离子层吸附和反应(SILAR)方法将掺杂Ni2 +的CdS(简化为CdNiS)QD层引入TiO2表面,以在QD中引入中间能级。研究了不同Ni2 +浓度(5、10、15和20 mM)对QDSSCs物理,化学和光伏性质的影响。 Ni2 +掺杂剂改善了器件的光吸收,加快了电子注入动力学,并减少了电荷复合,从而改善了电荷的转移和收集。 15%的CdNiS电池在一次完整的阳光照射下(3.13%(J(SC)= 8.91 mA cm(-2),VOC = 0.643 V,FF = 0.543))表现出最佳的光伏性能。 1.5 G)。这些结果是基于CdS的QDSSC获得的最佳结果之一。电化学阻抗谱(EIS)和开路电压衰减(OCVD)测量证实,Ni2 +掺杂剂可以抑制电荷复合,延长电子寿命,并提高电池的功率转换效率。

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