Materials Architecturing Research Center , Korea Institute of Science and Technology , Hwarangno 14-gil 5 , Seongbuk Gu, Seoul 02792 , Republic of Korea.
Nanomaterials Science and Engineering , University of Science and Technology , 217 Gajungro, 176 Gajung-dong , Yuseong Gu, Daejeon 34113 , Republic of Korea.
ACS Appl Mater Interfaces. 2019 Oct 16;11(41):38046-38054. doi: 10.1021/acsami.9b12550. Epub 2019 Oct 4.
Lightweight materials with high electrical conductivity and robust mechanical properties are highly desirable for electromagnetic interference (EMI) shielding in modern portable and highly integrated electronics. Herein, a three-dimensional (3D) porous TiCT/carbon nanotube (CNT) hybrid aerogel was fabricated via a bidirectional freezing method for lightweight EMI shielding application. The synergism of the lamellar and porous structure of the MXene/CNT hybrid aerogels contributed extensively to their excellent electrical conductivity (9.43 S cm) and superior electromagnetic shielding effectiveness (EMI SE) value of 103.9 dB at 3 mm thickness at the X-band frequency, the latter of which is the best value reported for synthetic porous nanomaterials. The CNT reinforcement in the MXene/CNT hybrid aerogels enhanced the mechanical robustness and increased the compressional modulus by 9661% relative to that of the pristine MXene aerogel. The hybrid aerogel with high electrical conductivity, good mechanical strength, and superior EMI shielding performance is a promising material for inhibiting EMI pollution.
具有高导电性和强机械性能的轻质材料对于现代便携式和高度集成电子设备中的电磁干扰 (EMI) 屏蔽非常理想。本文通过双向冷冻法制备了一种三维 (3D) 多孔 TiCT/碳纳米管 (CNT) 杂化气凝胶,用于轻质 EMI 屏蔽应用。MXene/CNT 杂化气凝胶的层状和多孔结构的协同作用极大地提高了其导电性(9.43 S cm)和在 X 波段频率下 3mm 厚度时优异的电磁屏蔽效能 (EMI SE) 值 103.9dB,后者是报道的合成多孔纳米材料的最佳值。CNT 在 MXene/CNT 杂化气凝胶中的增强作用提高了机械强度,使压缩模量相对于原始 MXene 气凝胶提高了 9661%。这种具有高导电性、良好机械强度和优异 EMI 屏蔽性能的杂化气凝胶是抑制 EMI 污染的一种有前途的材料。