He Zhiwei, Xie Hangming, Wu Hanqing, Chen Jiahao, Ma Shiyu, Duan Xing, Chen Aqing, Kong Zhe
Center for Advanced Optoelectronic Materials, Key Laboratory of Novel Materials for Sensor of Zhejiang Province, College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.
School of Electronics Information, Hangzhou Dianzi University, Hangzhou 310018, China.
ACS Omega. 2021 Aug 25;6(35):22468-22477. doi: 10.1021/acsomega.1c02996. eCollection 2021 Sep 7.
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.
由于严重的全球变暖和环境问题,对清洁且可持续的储能设备的需求显著增加。便携式电子车辆和设备的快速增长常常伴随着大量不可避免的电磁波污染。为了缓解上述两个问题,本综述总结了用于电化学装置和电磁干扰屏蔽的基于MXene/聚苯胺的复合材料的制备方法和最新进展。基于单一化合物之间优异的协同效应和设计的分级结构,基于MXene/聚苯胺的复合材料通常表现出增强的物理和化学性质,在可持续电化学性能以及对人类健康和精密电子设备正常运行的电磁波防护方面显示出巨大潜力。