| Literature DB >> 33708399 |
Ziying Liang1, Nan Zheng2, Bo Ni3, Ziwei Lai1, Hui Niu4, Shuailin Zhang5, Yan Cao1.
Abstract
The symmetry of polymer crystals greatly affects the optical, thermal con-ductivity and mechanical properties of the materials. Past studies have shown that the two-dimensional (2D) confined crystallization of polymer nanorods could produce anisotropic structures. However, few researchers have focused on understanding confined nanostructures from the perspective of crystal sym-metry. In this research, we demonstrate the molecular chain self-assembly of tetragonal crystals under cylindrical confinement. We specifically selected poly(4-methyl-1-pentene) (P4MP1) with a 41 or 72 helical conformation (usually crystallizing with a tetragonal lattice) as the model polymer. We found a coherent crystal branching of the tetragonal crystal in the P4MP1 nanorods. The unusual 45°- and 135°-{200} diffractions and the meridional 220 diffraction (from 45°-tilted crystals) have shown a uniform crystal branching between the a 1-axis crystals and the 45°-tilted crystals in the rod long axis, which originates from a structural defect associated with tetragonal symmetry. Surprisingly, this chain packing defect in the tetragonal cell can be controlled to develop along the rod long axis in 2D confinement. © Ziying Liang et al. 2021.Entities:
Keywords: coherent crystal branch; cylindrical confinement; poly(4-methyl-1-pentene); tetragonal crystal
Year: 2021 PMID: 33708399 PMCID: PMC7924242 DOI: 10.1107/S2052252521000774
Source DB: PubMed Journal: IUCrJ ISSN: 2052-2525 Impact factor: 4.769