State Key Laboratory on Integrated Optoelectronics, College of Electronic Science and Engineering , Jilin University , 2699 Qianjin Street , Changchun 130012 , People's Republic of China.
Department of Chemistry, Physics, and Atmospheric Sciences , Jackson State University , Jackson , Mississippi 39217 , United States.
ACS Appl Mater Interfaces. 2019 Mar 27;11(12):11481-11487. doi: 10.1021/acsami.9b00528. Epub 2019 Mar 18.
Organic-inorganic lead halide perovskite solar cells (PSCs) exhibit spectacular changes in the photovoltaic area, but they still face the challenges of full spectral utilization and photostability under continuous light irradiation. The ultraviolet (UV) part in sunlight could induce oxygen vacancy in the mesoporous TiO (m-TiO) layer, resulting in the degradation of perovskite photoactive films and the rapidly decreased device performance. In this work, we demonstrate that an effective luminescent downconversion material, Eu(TTA)(Phen)MAA (ETPM), can be used as an interfacial modifier between the m-TiO layer and the perovskite photoactive layer to improve the power conversion efficiency (PCE) from 17.00 to 19.07%. The improved device performance can be ascribed to the effective utilization of incident UV light and reduced carrier recombination. Meanwhile, the conversion of the UV light by ETPM could inhibit the stability loss of the device under irradiation. As a result, the modified PSCs can maintain 86% of their initial value under continuous light soaking for 100 h, higher than that of 40% for the control device. This work indicates that the introduction of the luminescent downconversion material ETPM can successfully improve the PCE and photostability of PSCs.
有机-无机卤化铅钙钛矿太阳能电池 (PSCs) 在光伏领域表现出显著的变化,但它们仍然面临全光谱利用和连续光照下的光稳定性挑战。太阳光中的紫外线 (UV) 部分会在介孔 TiO(m-TiO) 层中诱导氧空位,导致钙钛矿光活性薄膜降解和器件性能迅速下降。在这项工作中,我们证明了一种有效的发光下转换材料 Eu(TTA)(Phen)MAA (ETPM),可以用作 m-TiO 层和钙钛矿光活性层之间的界面修饰剂,将功率转换效率 (PCE) 从 17.00 提高到 19.07%。改进后的器件性能可归因于有效利用入射的紫外光和减少载流子复合。同时,ETPM 将紫外光转化为能量,抑制了器件在照射下的稳定性损失。因此,改性后的 PSCs 在连续光浸泡 100 小时后仍能保持初始值的 86%,高于对照器件的 40%。这项工作表明,引入发光下转换材料 ETPM 可以成功提高 PSCs 的 PCE 和光稳定性。