表面发光垂直有机半导体纳米刷

IF 15.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Journal of the American Chemical Society Pub Date : 2025-02-17 DOI:10.1021/jacs.4c16540
Lei Yang, Congqi Li, Na An, Jinhua Gao, Yanan Wei, Jiawei Qiao, Junpeng Dai, Na Yu, Yan Sun, Qijie Lin, Xin Zhang, Jianqi Zhang, Zheng Tang, Xiaotao Hao, Guanghao Lu, Zhixiang Wei, Ian Manners, Yongbo Kuang, Hui Huang, Antonio Facchetti, Huibin Qiu
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引用次数: 0

摘要

聚合物自组装为构建定义良好的纳米结构提供了重要途径。然而,将聚合物组装成垂直定向的纳米结构仍然具有挑战性。在这里,我们使用了一种种子诱导约束自组装策略,在导电衬底上构建了基于聚芴的聚合物垂直排列的半导体纳米刷。机制研究表明,固定在基质上的种子启动了纳米刷的垂直生长,超临界干燥和刚性带电电晕共同有助于保持纳米刷的垂直结构。该工艺使纳米刷的电荷迁移率比它们的大块薄膜高约40倍。因此,使用纳米刷作为电子传递层(ETL)的倒置有机太阳能电池,由于ETL纹理的增加和ETL活性层界面有利于电子的提取,其功率转换效率达到了创纪录的18.51%。此外,我们的方法还使纳米刷在纳米多孔光阳极(钒酸铋)上均匀生长,用于光电化学水分解,改善催化剂分布和电子转移。我们的工作提出了一种可行的方法来制造具有挑战性的垂直聚合物纳米结构,从而释放了共轭聚合物在光电应用中的巨大潜力。
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Surface-Emanated Vertical Organic Semiconducting Nanobrushes
Polymer self-assembly offers an important route to construct well-defined nanostructures. However, it remains challenging to assemble polymers into vertically oriented nanostructures. Here, we use a seed-induced confinement self-assembly strategy to construct vertically aligned semiconducting nanobrushes from polyfluorene-based polymers on conductive substrates. Mechanism studies elucidate that the immobilized seeds on the substrate initiate the vertical growth of nanobrushes, and supercritical drying as well as the rigid charged coronas collectively contribute to retaining the vertical architecture. This process enables nanobrushes with ∼40× higher charge mobilities than their bulk film counterparts. Thus, inverted organic solar cells using the nanobrushes as the electron transporting layer (ETL) exhibit a record power conversion efficiency of 18.51% as a result of increased ETL texturing and the ETL-active layer interface favoring electron extraction. Moreover, our approach also enables the uniform growth of nanobrushes on a nanoporous photoanode (bismuth vanadate) for photoelectrochemical water splitting, improving catalyst distribution and electron transfer. Our work presents a feasible approach to fabricating challenging vertical polymer nanostructures, thereby unlocking the tremendous potential of conjugated polymers in optoelectronic applications.
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来源期刊
CiteScore
24.40
自引率
6.00%
发文量
2398
审稿时长
1.6 months
期刊介绍: The flagship journal of the American Chemical Society, known as the Journal of the American Chemical Society (JACS), has been a prestigious publication since its establishment in 1879. It holds a preeminent position in the field of chemistry and related interdisciplinary sciences. JACS is committed to disseminating cutting-edge research papers, covering a wide range of topics, and encompasses approximately 19,000 pages of Articles, Communications, and Perspectives annually. With a weekly publication frequency, JACS plays a vital role in advancing the field of chemistry by providing essential research.
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