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Photo-Patternable, High-Speed Electrospun Ultrafine Fibers Fabricated by Intrinsically Negative Photosensitive Polyimide

Authors :
Yan-Jiang Jia
Xin-xin Zhi
Yan Zhang
Jin-gang Liu
Yuan-cheng An
Jiashen Li
Lin Qi
Source :
Qi, L, Jia, Y, An, Y, Zhi, X, Zhang, Y, Liu, J & Li, J 2021, ' Photo-Patternable, High-Speed Electrospun Ultrafine Fibers Fabricated by Intrinsically Negative Photosensitive Polyimide ', ACS Omega, vol. 6, no. 28, pp. 18458-18464 . https://doi.org/10.1021/acsomega.1c02535, ACS Omega, ACS Omega, Vol 6, Iss 28, Pp 18458-18464 (2021)
Publication Year :
2021

Abstract

This work describes polyimide (PI) ultrafine fibrous membranes (UFMs) with aligned fibrous structures, fabricated via the high-speed electrospinning procedure. Organo-soluble intrinsically photosensitive PI is utilized as the fiber-forming agent. The effects of different rotating speeds on the fiber morphology and properties are studied. The aligned UFMs possess hydrophobicity, favorable optical properties, and improved deformation durability. The extension strength of the UFMs reinforces obviously with the increased rotating speed and reaches the maximum of 9.18 MPa at 2500 rpm. In addition, due to the photo-cross-link nature of the PI resin, the UFMs present lithography capability, which can obtain micro-sized patterns on aluminum substrates, and even part of the fibrous structure was retained after development. This work shows promise in manufacturing fiber-based photolithographic hierarchical structures on flexible substrates, which exhibit potential in achieving multiple functions on fiber-based electronic devices.

Details

Language :
English
Database :
OpenAIRE
Journal :
Qi, L, Jia, Y, An, Y, Zhi, X, Zhang, Y, Liu, J & Li, J 2021, ' Photo-Patternable, High-Speed Electrospun Ultrafine Fibers Fabricated by Intrinsically Negative Photosensitive Polyimide ', ACS Omega, vol. 6, no. 28, pp. 18458-18464 . https://doi.org/10.1021/acsomega.1c02535, ACS Omega, ACS Omega, Vol 6, Iss 28, Pp 18458-18464 (2021)
Accession number :
edsair.doi.dedup.....2c80da1c390e2668359832c1974a2a83
Full Text :
https://doi.org/10.1021/acsomega.1c02535