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Up-scaling perovskite solar cell manufacturing from sheet-to-sheet to roll-to-roll: challenges and solutions

机译:从片对片到卷对卷的钙钛矿太阳能电池制造升级:挑战和解决方案

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Organometallic halide perovskite solar cells (PSCs) are extremely promising novel materials for thin-film photovoltaics, exhibiting efficiencies over 22% on glass and over 17% on foil. First, a sheet-to-sheet (S2S) production of PSCs and modules on 152×152 mm~2 substrates was established, using a combination of sputtering, e-beam evaporation, slot die coating and thermal evaporation (average PCE of 14.6 ± 1.3 % over 64 devices, more than 10% initial PCE on modules). Later the steps towards a roll-to-roll production will be investigated, starting from the optimization of the stack to make it compatible with a faster production at low temperature. A water based SnO_x nanoparticles dispersion was used as solution processable ETL, and the deposition process was scaled-up from spin coating to R2R slot die coating on a 300 mm wide roll of PET/ITO. R2R production is often carried out in ambient atmosphere and involve the use of large volumes of materials, thus a first point is the development of a green solvent and precursor system for the perovskite layer to prevent the emission of toxic compound in the environment. The first results on device fabrication are encouraging, which allow partial R2R manufacturing of flexible PSC (R2R coating of SnO_x and perovskite, S2S for Spiro-OMeTAD and gold) with stabilized PCE of 12.6%, a remarkable value for these novel devices. This result can be considered an important milestone towards the production of efficient, low cost, lightweight, flexible PSC on large area.
机译:有机金属卤化物钙钛矿太阳能电池(PSC)是极有希望的新型薄膜光伏材料,在玻璃上的效率超过22%,在箔上的效率超过17%。首先,结合溅射,电子束蒸发,狭缝模头涂布和热蒸发(平均PCE为14.6±在64个设备上占1.3%,在模块上的初始PCE占10%以上。稍后将研究卷对卷生产的步骤,从优化烟囱以使其兼容低温下更快的生产开始。将水基SnO_x纳米颗粒分散体用作可溶液处理的ETL,并在300 mm宽的PET / ITO卷上将沉积过程从旋涂扩大到R2R狭缝模具涂层。 R2R的生产通常在环境气氛中进行,涉及大量材料的使用,因此首要的一点是开发钙钛矿层的绿色溶剂和前体体系,以防止环境中有毒化合物的排放。器件制造的第一个结果令人鼓舞,它允许部分R2R制造柔性PSC(SnO_x和钙钛矿的R2R涂层,用于Spiro-OMeTAD的S2S和金)和稳定的PCE为12.6%,这对于这些新型器件而言具有显着价值。这一结果可以被认为是在大面积生产高效,低成本,轻便,灵活的PSC的重要里程碑。

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