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Research Article

Liquid-metals-induced formation of MXene/polyacrylamide composite organohydrogels for wearable flexible electronics

Minying Wu1Bin Chen1Xueliang Fan1Tong Ye1Yuanyuan Fang1Qian Zhang1Fangzhou Zhou1Yajun Wang2( )Yi Tang1( )
Department of Chemistry, Fudan University, Shanghai 200433, China
College of Chemistry & Materials Engineering, Wenzhou University, Wenzhou 325027, China
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Abstract

Organohydrogels have demonstrated superior environmental adaptability and frost resistance compared to conventional hydrogels, thereby prompting considerable interests in the development and design of innovative organohydrogels. Herein, we report an effective one-pot method for fabricating MXene/polyacrylamide (MXene/PAM) composite organohydrogel (MAOH) by employing Ga liquid metals (Ga LMs) as a highly reactive component in the induced free radical polymerization reaction, without the need for additional heating or cross-linking agents. This synthetic protocol addresses the time-consuming and organic solvent waste concerns associated with traditional solvent displacement methods for organohydrogel preparation. The incorporation of MXene not only highly enhances the conductivity but also confers improved mechanical properties of MAOH. The MAOH exhibits excellent environmental adaptability (> 7 d), sustained moisture retention, remarkable self-healing capabilities, and outstanding mechanical properties under low temperatures (−20 °C). It demonstrates exceptional performance in micro-motion monitoring, rapid response time (125 ms), superior stretchability, and a broad range of strains (0.3%–600%). Therefore, the designed MAOH has great potential for applications in diverse fields such as prosthetics, electronic skin, human–machine interaction, and smart terminals.

Graphical Abstract

An innovative one-pot method was presented for fabricating MXene/polyacrylamide (MXene/PAM) hybrid organohydrogel (MAOH) employing Ga liquid metals as a catalyst for free radical polymerization of acrylamide. The MAOH shows fast response time (125 ms) and a wide strain range (0.3%–600%), making it highly promising for applications in fields such as artificial skin, human–machine interaction, and flexible robots.

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Nano Research
Pages 1913-1922

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Cite this article:
Wu M, Chen B, Fan X, et al. Liquid-metals-induced formation of MXene/polyacrylamide composite organohydrogels for wearable flexible electronics. Nano Research, 2024, 17(3): 1913-1922. https://doi.org/10.1007/s12274-023-6010-6
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Received: 26 May 2023
Revised: 12 July 2023
Accepted: 15 July 2023
Published: 19 August 2023
© Tsinghua University Press 2023