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Ultrasonic Substrate Vibration-Assisted Drop Casting (SVADC) for the Fabrication of Photovoltaic Solar Cell Arrays and Thin-Film Devices

机译:超声波基板振动辅助滴铸(SVADC),用于制造光伏太阳能电池阵列和薄膜器件

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A simple, low-cost, versatile, and potentially scalable casting method is proposed for the fabrication of micro- and nano-thin films, herein termed as ultrasonic “substrate vibration-assisted drop casting” (SVADC). The impingement of a solution drop onto a substrate in a simple process called drop casting, usually results in spreading of the liquid solution and the formation of a non-uniform thin solid film after solvent evaporation. Our previous and current supporting results, as well as few similar reports by others, confirm that imposing ultrasonic vibration on the substrate can simply convert the uncontrollable drop casting method into a controllable coating technique. Therefore, the SVADC may be used to fabricate an array of emerging thin-film solar cells, such as polymer, perovskite, and quantum-dot solar cells, as well as other small thin-film devices, in a roll-to-roll and automated fabrication process. The preliminary results demonstrate a ten-fold increase in electrical conductivity of PEDOT: PSS made by SVADC compared with the film made by conventional drop casting. Also, simple planar perovskite solar cells made here using SVADC show promising performance with an efficiency of over 3?% for a simple structure without performing process optimization or using expensive materials and treatments.
机译:提出了一种简单,低成本,通用且具有潜在可扩展性的流延方法,用于制造微米和纳米级薄膜,在本文中被称为超声“基板振动辅助滴铸”(SVADC)。在称为滴铸的简单过程中,将溶液滴撞击到基材上通常会导致液体溶液散布并在溶剂蒸发后形成不均匀的固态薄膜。我们以前和当前的支持结果以及其他人的类似报道证实,在基材上施加超声振动可以将不可控的滴铸法简单地转换为可控的涂覆技术。因此,SVADC可用于以卷对卷的方式制造一系列新兴的薄膜太阳能电池,例如聚合物,钙钛矿和量子点太阳能电池,以及其他小型薄膜器件。自动化的制造过程。初步结果表明,与传统滴铸法制成的薄膜相比,SVADC制造的PEDOT:PSS的电导率提高了十倍。而且,这里使用SVADC制成的简单平面钙钛矿太阳能电池表现出令人鼓舞的性能,对于简单的结构,效率超过3%,而无需执行工艺优化或使用昂贵的材料和处理方法。

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