详细信息
One-Step/One-Pot Crystallization-Driven Co-Self-Assembly Strategy toward Controlled Preparation of π-Conjugated-Polymer-Containing Three-Dimensional Nanostructures ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:One-Step/One-Pot Crystallization-Driven Co-Self-Assembly Strategy toward Controlled Preparation of π-Conjugated-Polymer-Containing Three-Dimensional Nanostructures
作者:Song, Yunuo[1];Huang, Xiaoyu[1];Lu, Guolin[1];Feng, Chun[2]
机构:[1]Univ Chinese Acad Sci, Chinese Acad Sci, Shanghai Inst Organ Chem, State Key Lab Fluorine & Nitrogen Chem & Adv Mat, Shanghai 200032, Peoples R China;[2]East China Univ Sci & Technol, Sch Mat Sci & Engn, Shanghai Key Lab Adv Polymer Mat, Shanghai 200237, Peoples R China
年份:2025
卷号:58
期号:2
起止页码:1023
外文期刊名:MACROMOLECULES
收录:;EI(收录号:20250317682195);WOS:【SCI-EXPANDED(收录号:WOS:001395275500001)】;
基金:The authors are thankful for financial support from National Natural Science Foundation of China (52122314, U22A20131, 52273008, and 52361165657), Strategic Priority Research Program of Chinese Academy of Sciences (XDB0590000), and Shanghai Scientific and Technological Innovation Project (22ZR1479300, 22JC1401000 and 22ZR1475400). The authors thank Dr. Kun Cui for his assistance with TEM measurements.
语种:英文
外文关键词:Conducting polymers - Conjugated polymers - Cracking (chemical) - Elastomers - Electrodeposition - Enameling - Hard facing - Ionomers - Medical nanotechnology - Metal nanoparticles - Nanofibers - Self assembly - Silicones - Silver nanoparticles
摘要:Three-dimensional (3-D) pi-conjugated-polymer-containing nanostructures of well-controlled composition/dimension exhibit promising applications in fields from nanomedicine to microelectronics. However, it remains a great challenge to easily and efficiently prepare hierarchical 3-D nanostructures in a controlled manner. In this work, we develop a one-step/one-pot strategy to generate flower-like nanostructures containing a core and numerous uniform nanofibers protruding from the central core by crystallization-driven co-self-assembly of OPE9-b-P2VP56 [OPE = oligo(p-phenylene ethynylene); P2VP = poly(2-vinylpyridine); subscript represents the degree of polymerization] and poly(styrene sulfonic acid) (PSS) with a direct heating-cooling protocol. It is disclosed that the hydrogen bonding interactions between pyridyls of P2VP and -SO3H units of PSS not only accelerated the aggregation of OPE9-b-P2VP56 unimers but also led to intermicellar aggregation of initially formed micelles driven by the solvophobic effect of complexes of P2VP/PSS domains upon cooling. Subsequently, unimers continued to deposit from exposed ends of nanofibers to give flower-like nanostructures. By variation of the content of OPE9-b-P2VP56 and mass ratio of PSS to OPE9-b-P2VP56, the length and number of nanofibers protruding from the core can be regulated. More importantly, the ends of protruding nanofibers remained active toward unimer deposition for further micellar elongation to afford flower-like nanostructures with segmented diblock nanofibers. In addition, the surface of protruding nanofibers can be further coated with Ag nanoparticles to give hybrid nanostructures by taking advantage of the coordinating capacity of pyridyls of P2VP chains. Given the excellent applicability of CDSA on diverse pi-conjugated polymers, this work opens a new avenue to create diverse pi-conjugated-polymer-based 3-D nanostructures in a controlled way.
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