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Light Down-Converter Based on Luminescent Nanofibers from the Blending of Conjugated Rod-Coil Block Copolymers and Perovskite through Electrospinning.


ABSTRACT: We demonstrated a novel strategy for the preparation of light down-converter by combining rod-coil block copolymers with perovskite quantum dots (QDs) through electrospinning. Reports have shown that polymer deformability can be enhanced by incorporating a soft segment and controlled by varying the rod/coil ratio. Therefore, we first synthesized the rod-coil block copolymer through the click reaction of polyfluorene (PF) and poly(n-butyl acrylate) (PBA). Next, the CsPbBr3@PF8k-b-PBA12k composite fibers were fabricated by blending perovskite through electrospinning. Optical spectral evidence demonstrated the success of the strategy, as light down-converters were prepared through the controlled variance of QD/polymer ratios to achieve tunable color and stretchability. This result reveals the potential of using rod-coil block copolymers to fabricate color-tunable perovskite light down-converters.

SUBMITTER: Jiang DH 

PROVIDER: S-EPMC7023616 | biostudies-literature | 2020 Jan

REPOSITORIES: biostudies-literature

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Light Down-Converter Based on Luminescent Nanofibers from the Blending of Conjugated Rod-Coil Block Copolymers and Perovskite through Electrospinning.

Jiang Dai-Hua DH   Kobayashi Saburo S   Jao Chih-Chun CC   Mato Yoshinobu Y   Isono Takuya T   Fang Yu-Han YH   Lin Chun-Che CC   Satoh Toshifumi T   Tung Shih-Huang SH   Kuo Chi-Ching CC  

Polymers 20200103 1


We demonstrated a novel strategy for the preparation of light down-converter by combining rod-coil block copolymers with perovskite quantum dots (QDs) through electrospinning. Reports have shown that polymer deformability can be enhanced by incorporating a soft segment and controlled by varying the rod/coil ratio. Therefore, we first synthesized the rod-coil block copolymer through the click reaction of polyfluorene (PF) and poly(<i>n</i>-butyl acrylate) (PBA). Next, the CsPbBr<sub>3</sub>@PF<su  ...[more]

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