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Enhanced conversion efficiency in perovskite solar cells by effectively utilizing near infrared light

机译:增强在钙钛矿的太阳能转换效率细胞通过有效地利用近红外光

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摘要

Up-conversion beta-NaYF4:Yb3+, Tm3+/NaYF4 core-shell nanoparticles (NYF NPs) with a high luminous intensity in the visible light region were synthesized by a hydrothermal reaction process. Photocurrent densities of the mesoscopic perovskite solar cells fabricated by incorporating up-conversion NYF NPs into the electron transporting layer are effectively enhanced. The effects of the thicknesses of the electron transporting layer and the weight ratio of up-conversion NYF NPs/TiO2 on the power conversion efficiency (PCE) of the as-fabricated devices were also investigated. The results indicate that the PCE of the optimized device achieves 16.9%, which is 20% higher than that of the device without introducing NYF NPs, and the steady-state PCE of the as-fabricated devices is close to its transient-state PCE. The up-conversion effect of NYF NPs is conducive to higher device performance rather than the nanoparticles as scattering centers to increase possible light absorption of the perovskite film or the electronic effect of the NaYF4 shell surface. These results can be further confirmed by finite-difference time-domain simulation. Photoluminescence results suggest that the multiphonon-assistance can accelerate the non-radiative recombination process at a lower temperature. Incorporating NYF NPs into the electron transporting layer opens a new approach to a promising family of electron transporting materials for mesoscopic perovskite solar cells.
机译:上变频beta-NaYF4: Yb3 +, Tm3 + / NaYF4核壳纳米粒子(NYF NPs)高发光强度在可见光区域由水热合成反应的过程。钙钛矿生产的太阳能电池将上变频NYF NPs进入电子传输层是有效的增强。电子传输层和重量比的上变频NYF NPs /二氧化钛的权力转换效率(PCE)纯属捏造设备也被调查。表明优化设备的PCE达到16.9%,高出20%该设备不引入NYF NPs,稳态PCE纯属捏造的设备接近其瞬态PCE。上变频NYF NPs有利于的效果设备性能而不是更高纳米粒子散射中心增加可能的光吸收的钙钛矿的电影或NaYF4壳层的电子效应表面。通过有限差分时域仿真。光致发光的研究结果表明,multiphonon-assistance可以加快无辐射复合过程较低温度。电子传输层打开一个新方法一个有前途的家庭电子运输介观钙钛矿材料的太阳能电池。

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