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通过“焊接”柔性透明电极实现柔性有机太阳能电池的超高机械柔韧性和超过15%的效率。

Realizing Ultrahigh Mechanical Flexibility and >15% Efficiency of Flexible Organic Solar Cells via a "Welding" Flexible Transparent Electrode.

作者信息

Chen Xiaobin, Xu Guiying, Zeng Guang, Gu Hongwei, Chen Haiyang, Xu Haitao, Yao Huifeng, Li Yaowen, Hou Jianhui, Li Yongfang

机构信息

Laboratory of Advanced Optoelectronic Materials, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou, 215123, China.

College of Materials Science and Engineering, Nanchang Hangkong University, 696 Fenghe Avenue, Nanchang, 330063, China.

出版信息

Adv Mater. 2020 Apr;32(14):e1908478. doi: 10.1002/adma.201908478. Epub 2020 Feb 26.

DOI:10.1002/adma.201908478
PMID:32103580
Abstract

The power conversion efficiencies (PCEs) of flexible organic solar cells (OSCs) still lag behind those of rigid devices and their mechanical stability is unable to meet the needs of flexible electronics at present due to the lack of a high-performance flexible transparent electrode (FTE). Here, a so-called "welding" concept is proposed to design an FTE with tight binding of the upper electrode and the underlying substrate. The upper electrode consisting of solution-processed Al-doped ZnO (AZO) and silver nanowire (AgNW) network is well welded by utilizing the capillary force effect and secondary growth of AZO, leading to a reduction of the AgNWs junction site resistance. Meanwhile, the poly(ethylene terephthalate) is modified by embedding the AgNWs, which are then used to link with the AgNWs in the upper hybrid electrode, thus enhancing the adhesion of the electrode to the substrate. By this welding strategy, critical bottleneck issues relating to the FTEs in terms of optoelectronic and mechanical properties are comprehensively addressed. The single-junction flexible OSCs based on this welded FTE show a high performance, achieving a record high PCE of 15.21%. In addition, the PCEs of the flexible OSCs are less influenced by the device area and display robust bending durability even under extreme test conditions.

摘要

柔性有机太阳能电池(OSC)的功率转换效率(PCE)仍落后于刚性器件,并且由于缺乏高性能的柔性透明电极(FTE),其机械稳定性目前无法满足柔性电子学的需求。在此,提出了一种所谓的“焊接”概念来设计一种上电极与底层基板紧密结合的FTE。由溶液处理的铝掺杂氧化锌(AZO)和银纳米线(AgNW)网络组成的上电极通过利用AZO的毛细力效应和二次生长实现了良好的焊接,从而降低了AgNWs的结位点电阻。同时,通过嵌入AgNWs对聚对苯二甲酸乙二酯进行改性,然后将其用于与上层混合电极中的AgNWs连接,从而增强电极与基板的附着力。通过这种焊接策略,全面解决了与FTE在光电和机械性能方面相关的关键瓶颈问题。基于这种焊接FTE的单结柔性OSC表现出高性能,实现了创纪录的15.21%的高PCE。此外,柔性OSC的PCE受器件面积的影响较小,即使在极端测试条件下也显示出强大的弯曲耐久性。

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