共聚物
材料科学
共轭体系
结晶
聚合物
聚合
纳米结构
自组装
四苯乙烯
纳米技术
聚合度
制作
聚乙炔
超分子化学
高分子化学
化学工程
荧光
化学
结晶学
晶体结构
复合材料
光学
物理
医学
替代医学
病理
工程类
聚集诱导发射
作者
In-Ho Choi,Sung-Yun Kang,Sanghee Yang,Namkyu Yun,Tae‐Lim Choi
出处
期刊:Macromolecules
[American Chemical Society]
日期:2022-04-20
卷期号:55 (9): 3484-3492
被引量:9
标识
DOI:10.1021/acs.macromol.2c00400
摘要
Precise control of the width and length of one-dimensional (1D) semiconducting nanostructures is a topic of attention owing to the potential applications of such nanostructures in optoelectronics. However, regulating both the length and width of the 1D nanostructures using conjugated polymers or block copolymers is a significant challenge. To solve this problem, we synthesized a unique conjugated polyacetylene homopolymer via living cyclopolymerization, which spontaneously formed 1D nanoribbons via in situ nanoparticlization. Interestingly, their widths could be controlled from 11 to 42 nm, which is directly proportional to their degree of polymerization. Furthermore, a self-seeding technique via crystallization-driven self-assembly (CDSA) was adopted to control the length of the nanoribbons up to 2.3 μm with narrow distributions. Interestingly, adding a block copolymer unimer to these nanoribbons produced triblock comicelles by the living CDSA mechanism. The nanoribbons were visualized directly by super-resolution optical fluorescence microscopy. The proposed approach allows us to tune the length and width of 1D nanoribbons up to a certain degree.
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