Liu Congqi, Jiang Changlong, Shen Yong, Zhou Bing, Liu Chuntai, Feng Yuezhan
State Key Laboratory of Structural Analysis, Optimization and CAE Software for Industrial Equipment, National Engineering Research Center for Advanced Polymer Processing Technology, Zhengzhou University, Zhengzhou 450002, China.
ACS Appl Mater Interfaces. 2024 Jul 24;16(29):38620-38630. doi: 10.1021/acsami.4c09426. Epub 2024 Jul 10.
Polymers are often used as adhesives to improve the mechanical properties of flexible electromagnetic interference (EMI) shielding layered films, but the introduction of these insulating adhesives inevitably reduces the EMI performance. Herein, ultrafine aramid nanofibers (UANF) with a diameter of only 2.44 nm were used as the binder to effectively infiltrate and minimize the insulating gaps in MXene films, for balancing the EMI shielding and mechanical properties. Combining the evaporation-induced scalable assembly assisted by blade coating, flexible large-scale MXene/UANF films with highly aligned and compact MXene stacking are successfully fabricated. Compared with the conventional ANF with a larger diameter of 7.05 nm, the UANF-reinforced MXene film exhibits a "brick-mortar" structure with higher orientation and compacter stacking MXene nanosheets, thus showing the higher mechanical properties, electrical conductivity, and EMI shielding performance. By optimizing MXene content, the MXene/UANF film can achieve the optimal tensile strength of 156.9 MPa, a toughness of 2.9 MJ m, satisfactory EMI shielding effectiveness (EMI SE) of 40.7 dB, and specific EMI SE (SSE/t) of 22782.4 dB cm/g). Moreover, the composite film exhibits multisource thermal conversion functions including Joule heating and photothermal conversion. Therefore, the multifunctional MXene/UANF EMI shielding film with flexibility, foldability, and robust mechanical properties shows the practical potential in complex application environments.
聚合物常被用作粘合剂来改善柔性电磁干扰(EMI)屏蔽层状薄膜的机械性能,但这些绝缘粘合剂的引入不可避免地会降低EMI性能。在此,直径仅为2.44nm的超细芳纶纳米纤维(UANF)被用作粘合剂,以有效渗透并最小化MXene薄膜中的绝缘间隙,从而平衡EMI屏蔽和机械性能。结合刮涂辅助的蒸发诱导可扩展组装,成功制备了具有高度取向且紧密堆叠的MXene的柔性大规模MXene/UANF薄膜。与直径为7.05nm的传统芳纶纳米纤维(ANF)相比,UANF增强的MXene薄膜呈现出具有更高取向和更紧密堆叠的MXene纳米片的“砖-灰浆”结构,因此具有更高的机械性能、电导率和EMI屏蔽性能。通过优化MXene含量,MXene/UANF薄膜可实现156.9MPa的最佳拉伸强度、2.9MJ/m的韧性、40.7dB的令人满意的EMI屏蔽效能(EMI SE)以及22782.4dB cm/g的比EMI SE(SSE/t)。此外,复合薄膜具有包括焦耳热和光热转换在内的多源热转换功能。因此,具有柔韧性﹑可折叠性和强大机械性能的多功能MXene/UANF EMI屏蔽薄膜在复杂应用环境中显示出实际应用潜力。