van der Poll Lara M, van Silfhout Niels, Nespoli Jasmeen, van der Meer Maartje, Boekhoff Reinder K, Bannenberg Lars J, Smets Arno H M, Savenije Tom J
Department of Chemical Engineering, Delft University of Technology, Van der Maasweg 9, Delft, 2629 HZ, The Netherlands.
Department of Electrical Sustainable Energy, Delft University of Technology, Mekelweg 4, Delft, 2628 CD, The Netherlands.
Small Methods. 2025 Apr;9(4):e2401246. doi: 10.1002/smtd.202401246. Epub 2024 Dec 6.
To boost the efficiency of perovskite solar cells beyond the limit of a single-junction cell, tandem cells are employed, requiring low bandgap materials. This is realized by partially substituting lead(II) (Pb) with tin(II) (Sn) in the perovskite structure. In this work, a scalable method is presented to produce formamidinium lead tin iodide (FAPbSnI) films by sequential thermal evaporation (sTE) of PbSnI, which is an alloy of SnI and PbI, and FAI, in vacuum. Annealing at 200 °C yields a highly oriented and crystalline layer comprising grains over 1 µm on average. Photoconductance measurements reveal carrier lifetimes exceeding 2 µs and mobilities ≈100 cm/(Vs). Structural analysis confirms that, while interdiffusion is abundant even at room temperature, the complete conversion requires high temperatures. Although the incorporation of Cs into the A-site of the perovskite increases the grain size, charge carrier dynamics are reduced. A comparison between the sTE films and spin-coated samples of the same composition demonstrates the superior photoconductance of the sTE films, without the need for any additives. Overall, this study showcases the potential of sTE for producing high-quality low band gap (LBG) perovskite materials.
为了提高钙钛矿太阳能电池的效率,使其超越单结电池的极限,人们采用了串联电池,这需要低带隙材料。这是通过在钙钛矿结构中用锡(II)(Sn)部分替代铅(II)(Pb)来实现的。在这项工作中,提出了一种可扩展的方法,通过在真空中依次热蒸发PbSnI(SnI和PbI的合金)和FAI来制备甲脒铅锡碘化物(FAPbSnI)薄膜。在200°C退火可得到一个高度取向且结晶的层,其平均晶粒尺寸超过1μm。光电导测量表明载流子寿命超过2μs,迁移率约为100cm/(Vs)。结构分析证实,即使在室温下也存在大量的相互扩散,但完全转化需要高温。尽管将铯掺入钙钛矿的A位会增加晶粒尺寸,但电荷载流子动力学却降低了。对相同组成的顺序热蒸发薄膜和旋涂样品进行比较表明,顺序热蒸发薄膜具有优异的光电导性能,无需任何添加剂。总体而言,这项研究展示了顺序热蒸发在制备高质量低带隙(LBG)钙钛矿材料方面的潜力。