High-resolution cryo-electron microscopy structure of block copolymer nanofibres with a crystalline core

被引:0
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作者
Jia Tian
Song-Hai Xie
Ufuk Borucu
Shixing Lei
Yifan Zhang
Ian Manners
机构
[1] University of Victoria,Department of Chemistry
[2] University of Chinese Academy of Sciences,Key Laboratory of Synthetic and Self
[3] Chinese Academy of Sciences,Assembly Chemistry for Organic Functional Molecules, Center for Excellence in Molecular Synthesis, Shanghai Institute of Organic Chemistry
[4] Fudan University,Department of Chemistry
[5] University of Bristol,GW4 Facility for High
[6] University of Victoria,Resolution Electron Cryo
来源
Nature Materials | 2023年 / 22卷
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摘要
Seeded growth of crystallizable block copolymers and π-stacking molecular amphiphiles in solution using living crystallization-driven self-assembly is an emerging route to fabricate uniform one-dimensional and two-dimensional core–shell micellar nanoparticles of controlled size with a range of potential applications. Although experimental evidence indicates that the crystalline core of these nanomaterials is highly ordered, a direct observation of their crystal lattice has not been successful. Here we report the high-resolution cryo-transmission electron microscopy studies of vitrified solutions of nanofibres made from a crystalline core of poly(ferrocenyldimethylsilane) (PFS) and a corona of polysiloxane grafted with 4-vinylpyridine groups. These studies show that poly(ferrocenyldimethylsilane) chains pack in an 8-nm-diameter core lattice with two-dimensional pseudo-hexagonal symmetry that is coated by a 27 nm 4-vinylpyridine corona with a 3.5 nm distance between each 4-vinylpyridine strand. We combine this structural information with a molecular modelling analysis to propose a detailed molecular model for solvated poly(ferrocenyldimethylsilane)-b-4-vinylpyridine nanofibres.
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页码:786 / 792
页数:6
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