材料科学
纳米技术
涂层
三元运算
制作
热稳定性
聚合物
计算机科学
化学工程
工程类
医学
病理
复合材料
程序设计语言
替代医学
作者
Qingqing Bai,Qiming Liang,Qian Liu,Bin Liu,Xugang Guo,Li Niu,Huiliang Sun
出处
期刊:Authorea - Authorea
日期:2023-07-03
标识
DOI:10.22541/au.168837443.31224705/v1
摘要
All-Polymer solar cells (all-PSCs) have attracted considerable attention due to their inherent advantages over other types of organic solar cells, including superior optical and thermal stability, as well as exceptional mechanical durability. Recently, all-PSCs have experi-enced remarkable advancements in device performance thanks to the invention of polymerized small-molecule acceptors (PSMAs) since 2017. Among these PSMAs, PY-IT has garnered immense interest from the scientific community due to its exceptional perfor-mance in all-PSCs. In this review, we presented the design principles of PY-IT and discussed the various strategies employed in device engineering for PY-IT-based all-PSCs. These strategies include additive and interface engineering, layer-by-layer processing methods, meniscus-assisted coating methods, and ternary strategy. Furthermore, this review highlighted several novel polymeric donor materials that are paired with PY-IT to achieve efficient all-PSCs. Lastly, we summarized the inspiring strategies for further advancing all-PSCs based on PY-IT. These strategies aim to enhance the overall performance and stability of all-PSCs by exploring new materials, optimizing device architectures, and improving fabrication techniques. By leveraging these approaches, we anticipate significant progress in the development of all-PSCs and their potential as a viable renewable energy source.
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