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Efficient planar perovskite solar cells using Schiff base complex as sensitizer for TiO2 and ZnO layers

机译:使用席夫碱配合物作为TiO2和ZnO层的敏化剂的高效平面钙钛矿太阳能电池

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In the current work, our attention is focused on designing a Schiff base complex derived from ninhydrin and glycine ligand (NG) with Co (II) metal (Co-NG) as sensitizer for TiO2 and a ZnO electron transport layers, prepared by sol gel method. The two electrodes and complex are characterized by X-ray diffraction and UV-vis spectroscopy. Furthermore, a Density Functional Theory (DFT) calculation is performed to achieve supplemental insights about the optoelectronic properties of Co-NG complex. As a result, the studied compound exhibits a high molar extinction coefficient equal to $27.5 imes 10^{3} mathrm{M}^{-1}$ cm$^{-1}$. Moreover, to predict the possibility of introducing the modified electron transporting layers (ETLs) in PSC devices, the optical properties is tested and strong interactions between the dye and the ETLs are founded. Accordingly, a good efficiency enhancement to 18.94 % using TiO$_{2} /$Co-NG layer and 16.32 % using ZnO/Co-NG, respectively, is achieved.
机译:在当前的工作中,我们的注意力集中在设计由茚三酮和甘氨酸配体(NG)衍生的Schiff碱配合物上,使用Co(II)金属(Co-NG)作为TiO敏化剂 2 通过溶胶凝胶法制备的ZnO电子传输层。这两个电极和复合物的特征在于X射线衍射和紫外可见光谱。此外,执行密度泛函理论(DFT)计算以获取有关Co-NG配合物的光电特性的补充见解。结果,所研究的化合物显示出高的摩尔消光系数,等于$ 27.5×10 ^ {3} mathrm {M} ^ {-1} $ cm $ ^ {-1} $。此外,为了预测在PSC器件中引入改性电子传输层(ETL)的可能性,测试了光学性能并建立了染料与ETL之间的强相互作用。因此,使用TiO $ _ {2} / $ Co-NG层分别达到了良好的效率提高至18.94%和使用ZnO / Co-NG层达到了16.32%。

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