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溶液处理碳电极助力全印刷卷对卷钙钛矿光伏。

All-Printed Roll-to-Roll Perovskite Photovoltaics Enabled by Solution-Processed Carbon Electrode.

机构信息

SPECIFIC IKC, Faculty of Science and Engineering, Swansea University, Fabian Way, Swansea, SA1 8EN, UK.

AIM, Faculty of Science and Engineering, Swansea University, Fabian Way, Swansea, SA1 8EN, UK.

出版信息

Adv Mater. 2023 Apr;35(16):e2208561. doi: 10.1002/adma.202208561. Epub 2023 Mar 14.

Abstract

Perovskite photovoltaics have shown great promise in device efficiency but also the promise of scalability through solution-processed manufacture. Efforts to scale perovskites have been taken through printable mesoporous scaffolds and slot die coating of flexible substrates roll-to-roll (R2R). However, to date there has been no demonstration of entirely R2R-coated devices due to the lack of a compatible solution-processable back electrode; instead, high-value evaporated metal contacts are employed as a post process. Here, in this study, the combination of a low-temperature device structure and R2R-compatible solution formulations is employed to make a fully R2R printable device architecture overcoming interlayer incompatibilities and recombination losses. Therefore, the n-i-p device structure of SnO /perovskite/poly(3,4-ethylenedioxythiophene)/carbon is employed to form an ohmic contact between a p-type semiconductor and printable carbon electrode. In particular, the results show that the small-scale device efficiencies of 13-14% are achieved, matching the device performance of evaporated gold electrodes. Also, this entirely R2R-coated perovskite prototype represents a game changer, reaching over 10% (10.8) stabilized power conversion efficiency with unencapsulated long-term stability retaining 84% of its original efficiency over 1000 h under 70% RH and 25 °C.

摘要

钙钛矿型光伏在器件效率方面表现出了巨大的潜力,同时也有望通过溶液处理制造实现规模化。为了实现钙钛矿的规模化,人们已经通过可打印的介孔支架和柔性基底的狭缝涂布进行了卷对卷(R2R)的研究。然而,迄今为止,由于缺乏兼容的溶液可处理背电极,还没有完全通过 R2R 涂布的器件的演示;相反,采用高价值的蒸发金属接触作为后处理。在这里,在这项研究中,采用低温器件结构和 R2R 兼容的溶液配方相结合,制造出完全 R2R 可打印的器件结构,克服了层间不兼容性和复合损耗。因此,采用 SnO2/perovskite/poly(3,4-ethylenedioxythiophene)/carbon 的 n-i-p 器件结构,在 p 型半导体和可打印碳电极之间形成欧姆接触。特别是,结果表明,实现了 13-14%的小尺寸器件效率,与蒸发金电极的器件性能相匹配。此外,这个完全通过 R2R 涂布的钙钛矿原型代表了一个游戏规则的改变者,在未封装的情况下,其稳定的功率转换效率超过 10%(10.8),长期稳定性保留了其原始效率的 84%,在 70%相对湿度和 25°C 下超过 1000 小时。

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