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Graphene-Based Electron Transport Layers in Perovskite Solar Cells: A Step-Up for an Efficient Carrier Collection

机译:钙钛矿太阳能电池中基于石墨烯的电子传输层:高效载流子收集的升级

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摘要

The electron transport layer (ETL) plays a fundamental role in perovskite solar cells. Recently, graphene-based ETLs have been proved to be good candidate for scalable fabrication processes and to achieve higher carrier injection with respect to most commonly used ETLs. Here, the effects of different graphene-based ETLs in sensitized methylammonium lead iodide (MAPI) solar cells are experimentally studied. By means of time-integrated and picosecond time-resolved photoluminescence techniques, the carrier recombination dynamics in MAPI films embedded in different ETLs is investigated. Using graphene doped mesoporous TiO2 (G+mTiO(2)) with the addition of a lithium-neutralized graphene oxide (GO-Li) interlayer as ETL, it is found find that the carrier collection efficiency is increased by about a factor two with respect to standard mTiO(2). Taking advantage of the absorption coefficient dispersion, the MAPI layer morphology is probed, along the thickness, finding that the MAPI embedded in the ETL composed by G+mTiO(2) plus GO-Li brings to a very good crystalline quality of the MAPI layer with a trap density about one order of magnitude lower than that found with the other ETLs. In addition, this ETL freezes MAPI at the tetragonal phase, regardless of the temperature. Graphene-based ETLs can open the way to significant improvement of perovskite solar cells.
机译:电子传输层(ETL)在钙钛矿太阳能电池中起着基本作用。最近,基于石墨烯的ETL已被证明是可扩展制造工艺的最佳候选者,并且相对于最常用的ETL,它可以实现更高的载流子注入。在这里,实验研究了不同的基于石墨烯的ETL对敏化甲基铵碘化铅(MAPI)太阳能电池的影响。通过时间积分和皮秒时间分辨光致发光技术,研究了嵌入不同ETL的MAPI薄膜中的载流子复合动力学。使用石墨烯掺杂的介孔TiO2(G + mTiO(2))并添加锂中和的氧化石墨烯(GO-Li)中间层作为ETL,发现载流子收集效率相对于载流子增加了大约两倍到标准的mTiO(2)。利用吸收系数分散,沿着厚度探测MAPI层的形态,发现嵌入在由G + mTiO(2)和GO-Li组成的ETL中的MAPI带来了MAPI层非常好的结晶质量陷阱密度比其他ETL低约一个数量级。此外,无论温度如何,此ETL都将MAPI冻结在四方相。基于石墨烯的ETL可以为钙钛矿型太阳能电池的显着改进开辟道路。

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