High electrolyte uptake of MXene integrated membrane separators for Zn-ion batteries

Author:

Likitaporn Chutiwat,Okhawilai Manunya,Kasemsiri Pornnapa,Qin Jiaqian,Potiyaraj Pranut,Uyama Hiroshi

Abstract

AbstractThe recent development of separators with high flexibility, high electrolyte uptake, and ionic conductivity for batteries have gained considerable attention. However, studies on composite separators with the aforementioned properties for aqueous electrolytes in Zn-ion batteries are limited. In this research, a polyacrylonitrile (PAN)/bio-based polyurethane (PU)/Ti3C2Tx MXene composite membrane was fabricated using an electrospinning technique. Ti3C2 MXene was embedded in fibers and formed a spindle-like structure. With Ti3C2Tx MXene, the electrolyte uptake and ionic conductivity reached the superior values of 2214% and 3.35 × 10−3 S cm−1, respectively. The composite membrane presented an excellent charge–discharge stability when assembled in a Zn//Zn symmetrical battery. Moreover, the developed separator exhibited a high flexibility and no dimensional and structural changes after heat treatment, which resulted in the high-performance separator for the Zn-ion battery. Overall, the PAN/bio-based PU/Ti3C2Tx MXene composite membrane can be potentially used as a high-performance separator for Zn-ion batteries.

Funder

Second Century Fund (C2F), Chulalongkorn University

National Research Council of Thailand

the NSRF via the Program Management Unit for Human Resources & Institutional Development, Research and Innovation

Thailand Science Research and Innovation Fund Chulalongkorn University

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

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