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大面积有机太阳能电池:材料要求、模块化设计和印刷方法。

Large-Area Organic Solar Cells: Material Requirements, Modular Designs, and Printing Methods.

机构信息

CAS Key Laboratory of Nanosystem and Hierarchical Fabrication, CAS Center for Excellence in Nanoscience, National Center for Nanoscience and Technology, Beijing, 100190, P. R. China.

Department of Chemistry, Tsinghua University, Beijing, 100084, P. R. China.

出版信息

Adv Mater. 2019 Nov;31(45):e1805089. doi: 10.1002/adma.201805089. Epub 2018 Dec 3.

Abstract

The printing of large-area organic solar cells (OSCs) has become a frontier for organic electronics and is also regarded as a critical step in their industrial applications. With the rapid progress in the field of OSCs, the highest power conversion efficiency (PCE) for small-area devices is approaching 15%, whereas the PCE for large-area devices has also surpassed 10% in a single cell with an area of ≈1 cm . Here, the progress of this fast developing area is reviewed, mainly focusing on: 1) material requirements (materials that are able to form efficient thick active layer films for large-area printing); 2) modular designs (effective designs that can suppress electrical, geometric, optical, and additional losses, leading to a reduction in the PCE of the devices, as a consequence of substrate area expansion); and 3) printing methods (various scalable fabrication techniques that are employed for large-area fabrication, including knife coating, slot-die coating, screen printing, inkjet printing, gravure printing, flexographic printing, pad printing, and brush coating). By combining thick-film material systems with efficient modular designs exhibiting low-efficiency losses and employing the right printing methods, the fabrication of large-area OSCs will be successfully realized in the near future.

摘要

大面积有机太阳能电池(OSC)的印刷已成为有机电子学的前沿领域,也被视为其工业应用的关键步骤。随着 OSC 领域的快速发展,小面积器件的最高功率转换效率(PCE)已接近 15%,而大面积器件的 PCE 也已超过 10%,其单个电池面积约为 1cm²。本文主要综述了这一快速发展领域的研究进展,重点关注:1)材料要求(能够形成高效厚活性层薄膜的材料,适用于大面积印刷);2)模块设计(有效设计,可抑制电气、几何、光学和附加损耗,从而降低器件的 PCE,这是由于衬底面积扩大所致);3)印刷方法(各种可用于大面积制造的可扩展制造技术,包括刀涂法、狭缝涂布法、丝网印刷、喷墨印刷、凹版印刷、柔版印刷、移印和刷涂)。通过将厚膜材料系统与具有低效率损耗的高效模块设计相结合,并采用适当的印刷方法,有望在不久的将来成功制备大面积 OSC。

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