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首页> 外文期刊>RSC Advances >The growth of methylammonium lead iodide perovskites by close space vapor transport
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The growth of methylammonium lead iodide perovskites by close space vapor transport

机译:近空间蒸汽运输甲基铵铅碘化物钙酸盐的生长

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摘要

Vapor deposition processes have shown promise for high-quality perovskite solar cells with potential pathways for scale-up to large area manufacturing. Here, we present a sequential close space vapor transport process to deposit CH _(3) NH _(3) PbI _(3) (MAPI) perovskite thin films by depositing a layer of PbI _(2) then reacting it with CH _(3) NH _(3) I (MAI) vapor. We find that, at T = 100 °C and pressure = 9 torr, a ~225 nm-thick PbI _(2) film requires ≥125 minutes in MAI vapor to form a fully-reacted MAPI film. Raising the temperature to 160 °C increases the rate of reaction, such that MAPI forms within 15 minutes, but with reduced surface coverage. The reaction kinetics can be approximated as roughly first-order with respect to PbI _(2) , though there is evidence for a more complicated functional relation. Perovskite films reacted at 100 °C for 150 minutes were fabricated into solar cells with an SLG/ITO/CdS/MAPI/Spiro-OMeTAD/Au structure, and a device efficiency of 12.1% was achieved. These results validate the close space vapor transport process and serve as an advance toward scaled-up, vapor-phase perovskite manufacturing through continuous vapor transport deposition.
机译:气相沉积过程显示了高质量的钙钛矿太阳能电池具有潜在途径,用于扩大到大面积制造。在这里,我们通过沉积一层PBI _(2)沉积CH _(3)NH _(3)PBI _(3)(MAPI)钙钛矿薄膜,然后用CH _反应(3)NH _(3)I(MAI)蒸气。我们发现,在T = 100°C和压力= 9托时,〜225nm厚的PBI _(2)膜在MAI蒸汽中需要≥125分钟,以形成完全反应的MAPI膜。将温度升至160℃增加反应速率,使得MAPI在15分钟内形成,但表面覆盖率降低。反应动力学可以与PBI _(2)相对于PBI _(2)大致大致一致,尽管存在更复杂的功能关系的证据。在100℃反应150分钟的钙钛矿薄膜在具有SLG / ITO / CDS / MAPI / Spiro-Ometad / Au结构的太阳能电池中制造150分钟,实现了12.1%的装置效率。这些结果验证了通过连续蒸汽传输沉积的紧密空间蒸汽运输过程,并用作朝向缩放的蒸汽相钙钛矿制造的前进。

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