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具有不对称层状结构的多功能CoFeO@MXene-AgNWs/纤维素纳米纤维复合薄膜,用于高效电磁干扰屏蔽和卓越的热管理能力。

Multifunctional CoFeO@MXene-AgNWs/Cellulose Nanofiber Composite Films with Asymmetric Layered Architecture for High-Efficiency Electromagnetic Interference Shielding and Remarkable Thermal Management Capability.

作者信息

Guo Zhengzheng, Ren Penggang, Lu Zhenxia, Hui Kaidi, Yang Junjun, Zhang Zengping, Chen Zhengyan, Jin Yanling, Ren Fang

机构信息

School of Materials Science and Engineering, Xi'an University of Technology, Xi'an 710048, Shaanxi, P. R. China.

The Faculty of Printing, Packaging Engineering and Digital Media Technology, Xi'an University of Technology, Xi'an 710048, Shaanxi, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2022 Sep 14;14(36):41468-41480. doi: 10.1021/acsami.2c12555. Epub 2022 Aug 31.

Abstract

Developing high-efficiency electromagnetic interference (EMI) shielding composite films with outstanding flexibility and excellent thermal management capability is vital but challenging for modern integrated electronic devices. Herein, a facile two-step vacuum filtration method was used to fabricate ultrathin, flexible, and multifunctional cellulose nanofiber (CNF)-based composite films with an asymmetric layered architecture. The asymmetric layered structure is composed of a low-conductivity CoFeO@MXene/CNF layer and a highly conductive silver nanowires (AgNWs)/CNF layer. Benefiting from the rational placement of the impedance matching layer and shielding layer, as well as the synergistic effect of electric and magnetic losses, the resultant composite film exhibits an extremely high EMI shielding effectiveness (SE) of 73.3 dB and an average EMI SE of 70.9 dB with low reflected efficiency of 4.9 dB at only 0.1 mm thickness. Sufficiently reliable EMI SE (over 95% reservation) is attained even after suffering from continuous physical deformations and long-term chemical attacks. Moreover, the prepared films exhibit extraordinary flexibility, strong mechanical properties, and satisfactory thermal management capability. This work offers a viable strategy for exploiting high performance EMI shielding films with attractive thermal management capacity, and the resultant films present extensive application potential in aerospace, artificial intelligence, advanced electronics, stealth technology, and the national defense industry, even under harsh environments.

摘要

开发具有出色柔韧性和卓越热管理能力的高效电磁干扰(EMI)屏蔽复合薄膜对于现代集成电子设备至关重要,但也具有挑战性。在此,采用一种简便的两步真空过滤法制备了具有不对称层状结构的超薄、柔性且多功能的纤维素纳米纤维(CNF)基复合薄膜。这种不对称层状结构由低导电性的CoFeO@MXene/CNF层和高导电性的银纳米线(AgNWs)/CNF层组成。得益于阻抗匹配层和屏蔽层的合理布局以及电损耗和磁损耗的协同效应,所得复合薄膜在仅0.1毫米厚度时展现出73.3分贝的极高电磁干扰屏蔽效能(SE)以及70.9分贝的平均电磁干扰SE,且反射效率低至4.9分贝。即使经过连续的物理变形和长期的化学侵蚀,仍能获得足够可靠的电磁干扰SE(保留率超过95%)。此外,所制备的薄膜具有非凡的柔韧性、强大的机械性能和令人满意的热管理能力。这项工作为开发具有吸引人的热管理能力的高性能电磁干扰屏蔽薄膜提供了一种可行策略,所得薄膜在航空航天、人工智能、先进电子、隐身技术和国防工业等领域,甚至在恶劣环境下都具有广泛的应用潜力。

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