Kumar Anjan, Sayyed M I, Taki Anmar Ghanim, Valverde Vanessa, Hernández Eduardo
Department of Electronics and Communication Engineering, GLA University Mathura-281406 India.
Department of Physics, Faculty of Science, Isra University Amman 11622 Jordan.
Nanoscale Adv. 2023 Dec 7;6(2):548-558. doi: 10.1039/d3na00757j. eCollection 2024 Jan 16.
Improving the role of electron-transport layers (ETLs) in carbon-based perovskite solar cells (CPSCs) is a promising method to increase their photovoltaic efficiency. Herein, we employed rGO sheets decorated with ZrO nanoparticles to increase the electron transport capability of mesoporous TiO ETLs. We found that the rGO/ZrO dopant enhanced the conductivity of the ETL, reducing the charge-transfer resistance at the ETL/perovskite interface and reducing charge recombination in the corresponding CPSCs. Notably, this dopant did not effectively change the transparency of ETLs, while increasing the light-harvesting ability of their own top perovskite layer by improving the crystallinity of the perovskite layer. The rGO/ZrO-containing ETLs produced a champion efficiency of 15.21%, while devices with a net ETL recorded a maximum efficiency of 11.88%. In addition, the modified devices showed a higher stability behavior against ambient air than the net devices, which was linked to the passivated grain boundaries of the modified perovskite layers along with the improved hydrophobicity.
提高电子传输层(ETL)在碳基钙钛矿太阳能电池(CPSC)中的作用是提高其光伏效率的一种很有前景的方法。在此,我们采用了用ZrO纳米颗粒修饰的rGO片材来提高介孔TiO ETL的电子传输能力。我们发现rGO/ZrO掺杂剂提高了ETL的电导率,降低了ETL/钙钛矿界面处的电荷转移电阻,并减少了相应CPSC中的电荷复合。值得注意的是,这种掺杂剂并没有有效地改变ETL的透明度,同时通过提高钙钛矿层的结晶度提高了其顶部钙钛矿层的光捕获能力。含rGO/ZrO的ETL产生了15.21%的最佳效率,而使用纯ETL的器件记录的最大效率为11.88%。此外,与纯器件相比,改性器件对环境空气表现出更高的稳定性,这与改性钙钛矿层的钝化晶界以及改善的疏水性有关。