4.8 Article

Flexible, Robust, and Multifunctional Electromagnetic Interference Shielding Film with Alternating Cellulose Nanofiber and MXene Layers

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 12, Issue 4, Pages 4895-4905

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.9b19768

Keywords

alternating multilayered structure; MXene; electromagnetic interference shielding; Joule heating

Funding

  1. National Natural Science Foundation of China [51903223, 51803190, U1604253]
  2. China Postdoctoral Science Foundation [2018 M642781]
  3. Analytical and Testing Assistance from Advanced Analysis AMP
  4. Computation Center, Zhengzhou University and Shiyanjia Lab

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Flexible, lightweight, robust, and multifunctional characteristics are greatly desirable for next-generation wearable electromagnetic interference (EMI) shielding materials. In this work, an alternating multilayered structure with robust polymer frame layers and directly contacted conducting layers was designed to prepare high-performance EMI films. Especially, the multilayered films containing alternating cellulose nanofiber (CNF) layers and MXene layers are fabricated via a facile and efficient alternating vacuum 100 filtration-approach. Deriving from the mechanical frame effect acted by CNF layers in, which is capable of preventing the nanosized zigzag crack in MXene layers from growing to the whole film, the alternating multilayered film (CNF@MXene) revealed the improved mechanical strength (112.5 MPa) and toughness (2.7 MJ m(-3) ) compared to both freestanding MXene film and homogeneous CNF/MXene film. Meanwhile, the directly contacted MXene layers resulted in the increased electrical conductivity from 2 (homogeneous MXene film) to 621-82 S m(-1)(CNF@MXene films). In conjunction with the extra reflection-absorption-zigzag reflection mechanism among the alternating multilayers, CNF@MXene films demonstrated an exceptional EMI shielding effectiveness of similar to 40 dB in the X-band and K-band and high specific shielding effectiveness up to 7029 dB cm(2) g(-1) at a thickness of only 0.035 mm. Besides, the excellent mechanical flexibility ensured the stable EMI shielding and electrical properties, which can withstand the folding test more than 1000 times without obvious reduction. Moreover, the excellent electrical conductivity endows the alternating multilayered film with an outstanding and steady Joule heating performance, which could reach more than 100 degrees C at only 6 V impressed voltage to within 10 s. As a result, our alternating multilayered film with reinforced EMI shielding and Joule heating performance is promising in the next-generation intelligent protection devices applying in cold and complex practical environments.

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