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用于吸收主导型电磁干扰屏蔽材料的聚芳醚腈多孔膜孔壁上MXene的可控分布

Controlled Distribution of MXene on the Pore Walls of Polyarylene Ether Nitrile Porous Films for Absorption-Dominated Electromagnetic Interference Shielding Materials.

作者信息

Wei Renbo, Liu Kexin, Liu Yongxian, Wang Zaixing, Jiao Yayao, Huo Qi, Hua Xiufu, Wang Lingling, Wang Xun

机构信息

School of Chemical Engineering, Northwest University, Xi'an, 710069, China.

Engineering Research Center of Advanced Rare Earth Materials, Department of Chemistry, Tsinghua University, Beijing, 100084, China.

出版信息

Small. 2025 Jan;21(1):e2407142. doi: 10.1002/smll.202407142. Epub 2024 Oct 31.

Abstract

With the increasing application of electronic devices, absorption-dominated electromagnetic interference shielding materials (EMISM) have garnered significant attention for preventing secondary electromagnetic pollution. In this study, polyethyleneimine (PEI)-modified MXene (PEI@MXene) is fabricated and achieved its controlled distribution on the pore walls of polyarylene ether nitrile (PEN) porous films via the phase inversion method (PIM) to obtain a closed porous skeleton of MXene on the pore walls (CPS-MPW). The resulting PEI@MXene/PEN composite film (CFx) exhibited absorption-dominated EMIS efficiency (EMISE). Attributing to the strong interaction between PEI and the hydrophilic segment of amphiphilic Pluronic F127, with its hydrophobic segment anchored by the PEN matrix, PEI@MXene is directionally distributed on the pore walls of CFx. In addition, resulting from the cladding of MXene with PEI and isolating it with closed honeycomb pores, the obtained CFx are insulators without forming a conductive network. As a result, these CFx demonstrate absorption-dominated EMISE with the highest SE of 41.2 dB and coefficient A higher than 0.51. Further continuous hot pressing of CFx results in thinner and denser films with an impressive specific EMISE up to 750 dB cm. The successful fabrication of these CPS-MPW-type CFx with absorption-dominated EMISE provides a reference for developing and preparing novel EMISM.

摘要

随着电子设备的应用日益广泛,以吸收为主的电磁干扰屏蔽材料(EMISM)在防止二次电磁污染方面受到了广泛关注。在本研究中,通过相转化法(PIM)制备了聚乙烯亚胺(PEI)改性的MXene(PEI@MXene),并使其在聚亚芳基醚腈(PEN)多孔膜的孔壁上实现了可控分布,从而在孔壁上获得了MXene的封闭多孔骨架(CPS-MPW)。所得的PEI@MXene/PEN复合膜(CFx)表现出以吸收为主的电磁干扰屏蔽效率(EMISE)。由于PEI与两亲性Pluronic F127的亲水性片段之间存在强相互作用,其疏水性片段被PEN基体锚固,PEI@MXene在CFx的孔壁上定向分布。此外,由于MXene被PEI包覆并被封闭的蜂窝状孔隔离,所得的CFx是绝缘体,没有形成导电网络。结果,这些CFx表现出以吸收为主的EMISE,最高屏蔽效能(SE)为41.2 dB,吸收系数A高于0.51。对CFx进一步进行连续热压可得到更薄、更致密的薄膜,其比EMISE高达750 dB·cm。这些具有以吸收为主的EMISE的CPS-MPW型CFx的成功制备为新型EMISM的开发和制备提供了参考。

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