Skip to content

Opening book details…

Can I read Creation of Polyaniline-coated Polyester Fabrics with Conductive, Electrothermal and Energy-storage Properties via Micro-dissolution Method on EtoBox?

Creation of Polyaniline-coated Polyester Fabrics with Conductive, Electrothermal and Energy-storage Properties via Micro-dissolution Method by Zhao, Zhenyun; Zhou, Jing; Xiao, Hang; Liu, Yiping; Lu, Ming is a Engineering article available to read on EtoBox.

What is Creation of Polyaniline-coated Polyester Fabrics with Conductive, Electrothermal and Energy-storage Properties via Micro-dissolution Method about?

Incorporation of PANI with polyethylene terephthalate (PET) fibers has creates many flexible conductive, electrothermal and energy-storage textiles. The most common method of depositing PANI to PET fibers is in-situ polymerization. However, it usually needs long reaction time and strict conditions, which is unbeneficial to large-scale commercialized process. Herein, a facile and high-efficiency surface micro-dissolution method was proposed to prepare PANI-coated PET fabrics, which is performed at moderate temperature (70 °C) and only needs 15 min of treatment time. Already-made PANI powders were directly used as raw materials, and the phenol/N-methyl pyrrolidone (phenol/NMP) solution worked as the surface micro-dissolution agent. The resulting fabrics show electroconductive (620 Ω/□), electrothermal (from 22.3-30.3 °C within 1 min) and energy storage (438.51 m F cm -2 ) performances. The preparation is easy to perform and of very high efficiency, making it suitable for industrial production of PANI-coated PET fabrics.

Who reads Creation of Polyaniline-coated Polyester Fabrics with Conductive, Electrothermal and Energy-storage Properties via Micro-dissolution Method?

It is typically read by researchers, students, and practitioners in Engineering.

Author
Zhao, Zhenyun; Zhou, Jing; Xiao, Hang; Liu, Yiping; Lu, Ming
Publisher
Elsevier ; Elsevier BV (ISSN 2352-4928)
Published
2020
Language
EN
Field
Engineering (Physical Sciences)

More by Zhao, Zhenyun; Zhou, Jing; Xiao, Hang; Liu, Yiping; Lu, Ming

Browse all works by Zhao, Zhenyun; Zhou, Jing; Xiao, Hang; Liu, Yiping; Lu, Ming