Flexible water-resistant bamboo-like perovskite-embedded polymer nano/microfibers exhibiting Fabry–Pérot lasing

Author:

Cheng Hsin-Ming1ORCID,Pang You-Jia1,Lin Chia-Kai1ORCID,Wu Sheng-Chan1,You Bo-Zhu2,Chen Jung-Yao134ORCID,Hsu Hsu-Cheng134ORCID

Affiliation:

1. Department of Photonics, National Cheng Kung University 1 , Tainan 70101, Taiwan

2. Department of Chemical Engineering, National Chung Cheng University 2 , Chiayi 62102, Taiwan

3. Program on Key Materials, Academy of Innovative Semiconductor and Sustainable Manufacturing, National Cheng Kung University 3 , Tainan 70101, Taiwan

4. Meta-nano Photonics Center, National Cheng Kung University 4 , Tainan 70101, Taiwan

Abstract

Methylammonium lead bromide perovskite (MAPbBr3)-embedded nano- and micro-fibers are successfully fabricated by using the uniaxial electrospinning technique. Through the study of solidification and coordination between perovskite with hybrid polymers, polymethyl methacrylate, and polyacrylonitrile, the bamboo-like perovskite-embedded polymer nano/microfibers are unpredictably formed. Encapsulated in polymer, the passive perovskite-embedded polymer fibers exhibit a long-term fluorescence performance when simultaneously exposed to both water immersion and short-wavelength laser irradiation. Notably, due to the efficient gain media, the perovskite-rich region of the electrospun fiber can act as an optical microcavity. Multi-mode and single-mode lasing behaviors can be achieved via different cavity lengths. The mechanism of a microlaser within this perovskite fiber is confirmed through a Fabry–Pérot cavity, which provides an opportunity for optical components in lasers.

Funder

National Science and Technology Council

Publisher

AIP Publishing

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