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Ag@SiO2 Core-shell Nanoparticles Embedded in a TiO2 Mesoporous Layer Substantially Improve the Performance of Perovskite Solar Cells

机译:嵌入TiO2介孔层中的Ag @ SiO2核壳纳米粒子大大提高了钙钛矿太阳能电池的性能

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摘要

In this study, Ag@SiO2 nanoparticles were synthesized by a modified Stöber method for preparing the TiO2 mesoporous layer of carbon counter electrode-based perovskite solar cells (PSCs) without a hole transporting layer. Compared with normal PSCs (without Ag@SiO2 incorporated in the TiO2 mesoporous layer), PSCs with an optimal content of Ag@SiO2 (0.3 wt. % Ag@SiO2-TiO2) show a 19.46% increase in their power conversion efficiency, from 12.23% to 14.61%, which is mainly attributed to the 13.89% enhancement of the short-circuit current density, from 20.23 mA/cm2 to 23.04 mA/cm2. These enhancements mainly contributed to the localized surface Plasmon resonance effect and the strong scattering effect of Ag@SiO2 nanoparticles. However, increasing the Ag@SiO2 concentration in the mesoporous layer past the optimum level cannot further increase the short-circuit current density and incident photon-to-electron conversion efficiency of the devices, which is primarily ascribed to the electron transport pathways being impeded by the insulating silica shells inside the TiO2 network.
机译:在这项研究中,通过改进的Stöber方法合成了Ag @ SiO2纳米颗粒,以制备无空穴传输层的碳对电极基钙钛矿太阳能电池(PSC)的TiO2介孔层。与普通PSCs(在TiO2中孔层中未掺入Ag @ SiO2)相比,具有最佳Ag @ SiO2含量(0.3 wt。%Ag @ SiO2-TiO2)的PSCs的功率转换效率从12.23提高了19.46%。 %至14.61%,这主要归因于短路电流密度从13.23 mA / cm 2 提高到23.04 mA / cm 2 提高了13.89%。这些增强主要有助于局部表面等离子体共振效应和Ag @ SiO2纳米粒子的强散射效应。然而,将介孔层中的Ag @ SiO2浓度提高到最佳水平不能进一步提高器件的短路电流密度和入射光子-电子转换效率,这主要归因于电子传输路径受到阻碍TiO2网络内部的绝缘二氧化硅壳。

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