Isotactic Poly(ortho-Fluorostyrene): Synthesis, Mechanism, and Intramolecular F–H Locking Promoted Crystallinity and Solvent Resistance

战术性 结晶度 材料科学 高分子化学 聚苯乙烯 分子内力 取代基 聚合 结晶 位阻效应 聚合物 化学 有机化学 复合材料
作者
Qiyuan Wang,Hai Wang,Zhen Zhang,Dongmei Cui
出处
期刊:Macromolecules [American Chemical Society]
卷期号:58 (17): 9402-9411
标识
DOI:10.1021/acs.macromol.5c01607
摘要

A highly isotactic poly(ortho-fluorostyrene) (iPoFS) was successfully synthesized via coordination polymerization using a 2,2′-sulfur-bridged bis(phenolato) titanium dichloro complex. The resultant iPoFS exhibited a melting point up to 261 °C with exceptional crystallinity and high hydrophobicity and solvent resistance as well as superior mechanical properties (tensile strength of 60.4 MPa) over commercial syndiotactic polystyrene (sPS) and all other polar groups substituted polystyrenes. Isospecific oFS and St copolymers revealed tunable crystallinity and thermal properties depending on oFS/St composition, which containing ≥50 mol % oFS content exhibit melting points exceeding that of iPoFS, although isotactic polystyrene (iPS) sequences have slow crystallization rate and low crystallinity. NMR, DSC, and XRD analyses confirmed the isotactic configuration and crystalline nature of these (co)polymers. DFT calculations indicated that the fluorine substituent of oFS does not participate directly in the polymerization process but stabilizes the 31 helical conformation of iPoFS through intramolecular F–H interaction, thereby contributing enhanced crystallization and remarkable resistance to organic solvents. These findings demonstrate that the steric bulky ligand is crucial to isospecific selectivity and to prevent polar group coordination, while the intramolecular superinteraction endows polymer materials with unprecedented physical and mechanical performances.
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