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Composite Aerogel with Oriented Structure of Polyimide@ Polypyrrole /mxene for Effective Shielding Against Electromagnetic Waves and Insulation

Colloids and Surfaces A: Physicochemical and Engineering Aspects(2024)

Shannxi Key laboratory of Macromolecular Science and Technology

Cited 0|Views23
Abstract
Although the rapid evolution of electromagnetic wave technology make much progress to society, but has also caused electromagnetic pollution, which poses risks to health, information security, and disrupts communication and device operation. The development of new Electromagnetic Interference (EMI) shielding materials, especially those that are lightweight, easy to process and high shielding efficiency, has become the key to overcoming this challenge. In this study, MXene nanosheets with few layers were fabricated by chemical etching with lithium fluoride (LiF) and hydrochloric acid (HCl). Subsequently, the unidirectional freeze-drying method and vacuum-assisted impregnation method were applied to fabricate Polyimide@ Polypyrrole/MXene (PI@PPy/MXene) composite aerogels with oriented structure. The electromagnetic shielding properties of the oriented PI@PPy composite aerogels were modulated by changing the polymerization time of PPy to control its conductivity. When the polymerization time was set as 7h, the oriented PI@PPy composite aerogel showed the highest EMI efficiency, the value of EMI SE was 19.36dB. With the introduction of MXene, the EMI SE of the PI@PPy/MXene composite gel was increased compared to PI@PPy and reached to 32.64dB. The improvement in electromagnetic shielding performance was attributed to the co-enhancement among the PI aerogel with oriented structure, PPy and MXene, which is the result of the synergisic effect of Multiple reflection losses and polarization losses within the aerogel. The infrared thermography at 200°C showed that with increasing PPy polymerization time, the external temperatures of the samples are 40.3°C, 44.8°C, 51.4°C, 55.4°C and 48.6°C, demonstrating the excellent thermal insulation properties.
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Key words
Polyimide,Electromagnetic shielding,Oriented structure,Thermal insulation,Composite aerogel
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要点】:本研究开发了一种具有定向结构的聚酰亚胺@聚吡咯/mxene复合气凝胶,用于高效屏蔽电磁波并具备良好绝缘性能,实现了高性能电磁干扰屏蔽材料的新突破。

方法】:通过化学刻蚀法使用氟化锂和盐酸制备少层MXene纳米片,再利用单向冻干法和真空辅助浸渍法制备具有定向结构的PI@PPy/MXene复合气凝胶。

实验】:在7小时聚吡咯聚合时间下,PI@PPy复合气凝胶的电磁干扰屏蔽效率(EMI SE)达到最高值19.36dB;引入MXene后的PI@PPy/MXene复合气凝胶的EMI SE进一步提高至32.64dB。此外,通过红外热成像技术,在200°C时证明了复合气凝胶具有良好的热绝缘性能,不同聚吡咯聚合时间下的外部温度分别为40.3°C、44.8°C、51.4°C、55.4°C和48.6°C。