有机太阳能电池
能量转换效率
材料科学
化学工程
相(物质)
分子间力
纳米技术
光伏系统
光活性层
聚合物
形态学(生物学)
材料设计
电荷(物理)
混合太阳能电池
分子间相互作用
化学
太阳能电池
科技与社会
作者
Siqi Wu,Honghui Xu,Hao Wang,Xingting Liu,Lijun Tu,Wenbin Zhang,Yu Chen,Xin Song,Yongqiang Shi
摘要
Solid additives have emerged as a widely adopted strategy in organic solar cells (OSCs) due to their efficacy in modulating the film morphology and regulating the aggregation behavior of the photoactive layer, which is crucial for achieving high power conversion efficiencies (PCEs). However, the chemical structure of these solid additives fundamentally dictates their performance. Herein, we designed two isomeric solid additives, syn-dithieno[2,3-b:3',2'-e]pyrazine (syn-DTPy) and anti-dithieno[2,3-b:2',3'-e]pyrazine (anti-DTPy), to enhance OSCs' performance. When incorporated into the D18:L8-BO system, anti-DTPy establishes directional intermolecular interactions that optimize phase separation and charge transport pathways. This approach enabled OSCs to achieve a remarkable PCE of 20.5%, with a high fill factor (FF) of 81.9%, ranking among the highest reported values. This study reveals a distinct isomer-dependent conformational effect for morphology control, providing profound insights into structure-property relationships and guiding the design of advanced solid additives.
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