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微调聚(3,4-乙撑二氧噻吩)(PEDOT)链的构象可在用于高效稳定有机光伏的PEDOT:聚(苯乙烯磺酸盐)(PSS)夹层中同时提高电导率、功函数、透光率和防水性。

Fine-Tuning Conformation of PEDOT Chains Enables Simultaneously Enhanced Conductivity, Work Function, Transmittance, and Waterproofness in PEDOT:PSS Interlayer for Highly Efficient and Stable Organic Photovoltaics.

作者信息

Zhang Jingyao, Dong Yunqiao, Xie Jiefeng, Li Zhenye

机构信息

College of Mechanical Engineering, University of South China, Hengyang, 421001, P. R. China.

出版信息

Small. 2025 Jan;21(3):e2407256. doi: 10.1002/smll.202407256. Epub 2024 Nov 18.

Abstract

Poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) is widely utilized as the hole transport layer (HTL) inorganic photovoltaics (OPVs) because of its low-temperature solution processing peculiarity, high optical transmittance, and excellent mechanical flexibility. However, the core-shell structure of PSS coated PEDOT results in relatively low conductivity, work function, transmittance and waterproofness of PEDOT:PSS interlayer, limiting the photovoltaic performance and stability of OPVs. Here, the conformation of PEDOT chains are regulated from helical benzoyl to linear quinone structure via incorporation of 2D CdPSLiHdopant into the conventional PEDOT:PSS interlayer, promoting an interpenetrating network structure in PEDOT:PSS interlayer and forming an efficient hole transport channel from active layer to ITO electrode. Such features significantly improve the electrical conductivity, work function, and transmittance of PEDOT:PSS interlayer. In consequence, the maximum power conversion efficiency (PCE) of D18:L8-BO, PBDB-T:ITIC, as well as PTzBI-dF:L8-BO based OPVs ameliorated from 18.37%, 8.94%, and 15.80% to 19.26%, 10.00%, and 16.83%, respectively. The application of CdPSLiH doping PEDOT:PSS strategy demonstrates great potential for the development of strongly conductive, large-work-function, highly transparent, and excellent-waterproof PEDOT:PSS interlayer toward highly efficient and stable OPVs.

摘要

聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)因其低温溶液加工特性、高光学透过率和出色的机械柔韧性,被广泛用作有机光伏(OPV)的空穴传输层(HTL)。然而,PSS包覆的PEDOT的核壳结构导致PEDOT:PSS中间层的电导率、功函数、透过率和防水性相对较低,限制了OPV的光伏性能和稳定性。在此,通过将二维CdPSLiH掺杂剂引入传统的PEDOT:PSS中间层,PEDOT链的构象从螺旋苯甲酰结构调节为线性醌结构,促进了PEDOT:PSS中间层中互穿网络结构的形成,并形成了从活性层到ITO电极的高效空穴传输通道。这些特性显著提高了PEDOT:PSS中间层的电导率、功函数和透过率。因此,基于D18:L8-BO、PBDB-T:ITIC以及PTzBI-dF:L8-BO的OPV的最大功率转换效率(PCE)分别从18.37%、8.94%和15.80%提高到了19.26%、10.00%和16.83%。CdPSLiH掺杂PEDOT:PSS策略的应用展示了开发具有高导电性、大工作函数、高透明度和优异防水性的PEDOT:PSS中间层以实现高效稳定OPV的巨大潜力。

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