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Updated: May 12, 2025

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Published on: February 7, 2017
Co-Assembly-Driven Chiral Induction of Well-Defined Polyfluorene-block-Poly(phenyl isocyanide) and Its Enhanced
Hui Zou1, Shuyang Zhao1, Chaofan Han1
1Department of Polymer Science and Engineering, School of Chemistry and Chemical Engineering, and Anhui Province Key Laboratory of Value-Added Catalytic Conversion and Reaction Engineering, Hefei University of Technology, Hefei, Anhui 230009, P. R. China.
Abstract:
Chiral induction of polyfluorene (PF)-containing block copolymers plays a crucial role in the development of advanced functional materials; however, research in this area remains scarce. In this contribution, PFO-b-PPI diblock copolymers comprising blocks of poly(9,9-dioctylfluorene) (PFO) and poly(phenyl isocyanide) (PPI) were readily synthesized in one pot by combining chain-growth Suzuki cross-coupling polymerization of a modified 9,9-dioctylfluorene monomer with Pd(II)-catalyzed polymerization of a phenyl isocyanide monomer bearing a pentafluorophenyl ester substitute. The obtained PFO-b-PPI possessed a controlled molar mass (Mn) and narrow dispersity (Mw/Mn, Đ). Meanwhile, optically active supramolecular assemblies could be formed via coassembly of PFO-b-PPI with a chiral binaphthyl-based inducer in the film state after thermal annealing treatment, and the chirality of the supramolecular assemblies was influenced by the temperature of thermal annealing treatment, the weight ratio of the PFO-b-PPI copolymer to the chiral inducer, and the thickness of the film. Further investigations revealed that optically active supramolecular assemblies exhibited the morphology of single-handed helical nanofibers, and the helical sense of the nanofibers depended on the configuration of the binaphthyl-based inducer. Moreover, the supramolecular assemblies of helical nanofibers possessed excellent circularly polarized luminescence (CPL) performance with a glum as high as 0.11.
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