Xu Lin-Yong, Wang Wei, Yang Xinrong, Wang Shanshan, Shao Yiming, Chen Mingxia, Sun Rui, Min Jie
The Institute for Advanced Studies, Wuhan University, Wuhan, 430072, China.
Nat Commun. 2024 Feb 10;15(1):1248. doi: 10.1038/s41467-024-45510-w.
Polymerization degree plays a vital role in material properties. Previous methodologies of molecular weight control generally cannot suppress or alleviate batch-to-batch variations in device performance, especially in polymer solar cells. Herein, we develop an in-situ photoluminescence system in tandem with a set of analysis and processing procedures to track and estimate the polymerization degree of organic photovoltaic materials. To support the development of this protocol, we introduce polymer acceptor PYT constructed by near-infrared Y-series small molecule acceptors via Stille polymerization, and shed light on the correlations between molecular weight, spectral parameters, and device efficiencies that enable the design of the optical setup and confirm its feasibility. The universality is verified in PYT derivatives with stereoregularity and fluoro-substitution as well as benzo[1,2-b:4,5-b']dithiophene-based polymers. Overall, our result provides a tool to tailor suitable conjugated oligomers applied to polymer solar cells and other organic electronics for industrial scalability and desired cost reduction.
聚合度在材料性能中起着至关重要的作用。以往控制分子量的方法通常无法抑制或减轻器件性能的批次间差异,尤其是在聚合物太阳能电池中。在此,我们开发了一种原位光致发光系统,并结合一套分析和处理程序,以跟踪和估计有机光伏材料的聚合度。为支持该方案的开发,我们引入了通过Stille聚合由近红外Y系列小分子受体构建的聚合物受体PYT,并阐明了分子量、光谱参数和器件效率之间的相关性,这些相关性有助于光学装置设计并确认其可行性。在具有立构规整性和氟取代的PYT衍生物以及基于苯并[1,2-b:4,5-b']二噻吩的聚合物中验证了其通用性。总体而言,我们的结果提供了一种工具,可定制适用于聚合物太阳能电池和其他有机电子产品的共轭低聚物,以实现工业规模生产和所需的成本降低。