Zhou Congli, Zhang Kun, Sun Xiao, Zhao Xingchuan, Zheng Kaiwen, Mi Jiawei, Qing Fangzhu, Wen Qiye, Li Xuesong
State Key Laboratory of Electronic Thin Films and Integrated Devices, University of Electronic Science and Technology of China, 610054, Chengdu, China.
School of Integrated Circuit Science and Engineering (Exemplary School of Microelectronics), University of Electronic Science and Technology ofChina, 610054, Chengdu, China.
Small Methods. 2023 Mar;7(3):e2201493. doi: 10.1002/smtd.202201493. Epub 2023 Jan 15.
The prospect of graphene-based shielding materials in the form of fillers is limited by the cumbersome preparation of graphene. Herein, defect-tunable porous graphene prepared by carbothermal shock using low-value sucrose as a precursor is proposed as an effective shielding filler. The resultant porous graphene exhibits 32.5 dB shielding efficiency (SE) and 2.5-18 GHz effective bandwidth at a mass loading of 20 wt%, competing with the shielding performance of graphene fillers prepared by other methods. Particularly, defect-rich graphene synthesized by increasing voltage and prolonging time shows increased electromagnetic (EM) wave absorption, echoing the current concept of green shielding. In addition, the strategy of controlling the discharge conditions to improve the absorption by the shield is developed in the terahertz band. The average SE and reflection loss of the samples in the THz band (0.2-1.2 THz) exhibit 40.7 and 15.9 dB at filler loading of 5 wt%, respectively, achieving effective shielding and absorption of THz waves. This work paves a new way for low-cost preparation of graphene for EM interference shielding fillers. Meanwhile, it supplies a reference for the shielding research of the upcoming applications integrating multiple EM bands (such as sixth-generation based integrated sensing and communication).
以填料形式存在的基于石墨烯的屏蔽材料的前景受到石墨烯制备过程繁琐的限制。在此,提出了以低价值蔗糖为前驱体通过碳热冲击制备的缺陷可调多孔石墨烯作为一种有效的屏蔽填料。所得多孔石墨烯在质量分数为20 wt%时表现出32.5 dB的屏蔽效能(SE)和2.5 - 18 GHz的有效带宽,与其他方法制备的石墨烯填料的屏蔽性能相当。特别地,通过增加电压和延长时间合成的富含缺陷的石墨烯表现出增强的电磁(EM)波吸收,这与当前绿色屏蔽的概念相呼应。此外,在太赫兹频段开发了控制放电条件以提高屏蔽体吸收的策略。在填料含量为5 wt%时,样品在太赫兹频段(0.2 - 1.2 THz)的平均SE和反射损耗分别为40.7 dB和15.9 dB,实现了对太赫兹波的有效屏蔽和吸收。这项工作为低成本制备用于电磁干扰屏蔽填料的石墨烯开辟了一条新途径。同时,它为即将到来的集成多个电磁频段(如基于第六代的集成传感和通信)的应用的屏蔽研究提供了参考。