Jin Jianghao, Wang Qiao, Shen Wenfei, Belfiore Laurence A, Tang Jianguo
Institute of Hybrid Materials, National Center of International Joint Research for Hybrid Materials Technology, National Base of International Science & Technology Cooperation on Hybrid Materials, College of Materials Science and Engineering, Qingdao University, 308 Ningxia Road, Qingdao 266071, China.
ACS Appl Mater Interfaces. 2024 Mar 27;16(12):15121-15132. doi: 10.1021/acsami.4c00411. Epub 2024 Mar 19.
Acquiring the ideal blend morphology of the active layer to optimize charge separation and collection is a constant goal of polymer solar cells (PSCs). In this paper, the ternary strategy and the sequential deposition process were combined to make sufficient use of the solar spectrum, optimize the energy-level structure, regulate the vertical phase separation morphology, and ultimately enhance the power conversion efficiency (PCE) and stability of the PSCs. Specifically, the donor and acceptor illustrated a gradient-blended distribution in the sequential deposition-processed films, thus resulting in facilitated carrier characteristics in the gradient-blended devices. Consequently, the PSCs based on D18-Cl/Y6:ZY-4Cl have achieved a device efficiency of over 18% with the synergetic improvement of open-circuit voltage (), short-circuit current density (), and fill factor (FF). Therefore, this work reveals a facile approach to fabricating PSCs with improved performance and stability.
获得活性层的理想混合形态以优化电荷分离和收集是聚合物太阳能电池(PSC)的一个长期目标。本文将三元策略与顺序沉积工艺相结合,以充分利用太阳光谱,优化能级结构,调节垂直相分离形态,并最终提高PSC的功率转换效率(PCE)和稳定性。具体而言,供体和受体在顺序沉积处理的薄膜中呈现出梯度混合分布,从而在梯度混合器件中产生了有利的载流子特性。因此,基于D18-Cl/Y6:ZY-4Cl的PSC在开路电压()、短路电流密度()和填充因子(FF)的协同提高下,实现了超过18%的器件效率。因此,这项工作揭示了一种制造具有改进性能和稳定性的PSC的简便方法。