4.6 Review

Recent Advances in MXene/Polyaniline-Based Composites for Electrochemical Devices and Electromagnetic Interference Shielding Applications

Journal

ACS OMEGA
Volume 6, Issue 35, Pages 22468-22477

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsomega.1c02996

Keywords

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Funding

  1. National Natural Science Foundation of China [51803043]
  2. Science Foundation of Hangzhou Dianzi University [KYS205618119]

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This mini-review discusses the preparation methods and recent developments of MXene/polyaniline-based composites for their applications in electrochemical devices and electromagnetic interference shielding. The synergistic effects and hierarchical structures in these composites enhance their physical and chemical properties, showing great potential in sustainable electrochemical properties and electromagnetic wave protections.
Due to serious global warming and environmental issues, the demand for clean and sustainable energy storage devices is significantly increased. Often accompanied by rapid growth of portable electronic vehicles and devices, massive electromagnetic wave pollution becomes unavoidable. To mitigate the above two issues, this mini-review summaries preparation methods and recent developments of MXene/polyaniline-based composites for their applications in electrochemical devices and electromagnetic interference shielding. Based on excellent synergistic effects between single compounds and designed hierarchical structures, MXene/polyaniline-based composites usually exhibit enhanced physical and chemical properties, showing great potentials in sustainable electrochemical properties and electromagnetic wave protections for human health as well as normal operation of precise electronic devices.

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