Wang Jie, Peng Ruixiang, Gao Jing, Li Dandan, Xie Lin, Song Wei, Zhang Xiaoli, Fu Yaqin, Ge Ziyi
School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, Zhejiang, China.
Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, P. R. China.
ACS Appl Mater Interfaces. 2021 Sep 29;13(38):45789-45797. doi: 10.1021/acsami.1c11139. Epub 2021 Sep 15.
Metal carbide TiCT as a new two-dimensional material with excellent metallic conductivity, good water solubility, and superior transmittance in the visible light range shows great potential for applications in optoelectronic devices. Herein, TiCT/PEDOT:PSS composite films were fabricated by a simple solution process and employed as an anode interfacial layer in organic solar cells. By introducing the TiCT/PEDOT:PSS composite interface into the devices, the highest power conversion efficiency (PCE) of 17.26% was achieved while using PM6:Y6 as the active layer, with a high short-circuit current () of 26.52 mA/cm and a fill factor of up to 0.76. The PCE is much higher than 15.89% for the pure PEDOT:PSS interfacial layer-based device without doping. The dramatically improved performance was attributed to the increased conductivity of the TiCT/PEDOT:PSS composite interface and the increased charge extraction and collection efficiency of the devices. This work presents an effective method to prepare the TiCT/PEDOT:PSS composite interface and high-performance organic solar cells.
金属碳化物TiCT作为一种新型二维材料,具有优异的金属导电性、良好的水溶性以及在可见光范围内的卓越透光率,在光电器件应用方面展现出巨大潜力。在此,通过简单的溶液法制备了TiCT/PEDOT:PSS复合薄膜,并将其用作有机太阳能电池的阳极界面层。通过在器件中引入TiCT/PEDOT:PSS复合界面,以PM6:Y6作为活性层时,实现了17.26%的最高功率转换效率(PCE),短路电流()高达26.52 mA/cm²,填充因子高达0.76。该PCE远高于未掺杂的基于纯PEDOT:PSS界面层器件的15.89%。性能的显著提升归因于TiCT/PEDOT:PSS复合界面电导率的增加以及器件电荷提取和收集效率的提高。这项工作提出了一种制备TiCT/PEDOT:PSS复合界面和高性能有机太阳能电池的有效方法。