Flexible Wearable Ti3C2Tx Composite Carbon Fabric Textile with Infrared Stealth and Electromagnetic Interference Shielding Effect

Author:

Chen Mingxing12ORCID,Jiang Xinpeng2,Huang Jie3,Yang Junbo2ORCID,Wu Jiagui4,Liang Yiming5,Wang Tianwu6,Yan Peiguang1

Affiliation:

1. College of Physics and Optoelectronic Engineering Shenzhen University Shenzhen 518060 China

2. College of Liberal Arts and Sciences National University of Defense Technology Changsha 410000 China

3. Defense Innovation Institute Academy of Military Sciences Beijing 100071 China

4. School of Physical Science and Technology Southwest University Chongqing 400715 China

5. Institute of Defense Engineering AMS Beijing 100043 China

6. GBA branch of Aerospace Information Research Institute Chinese Academy of Sciences Guangzhou 510530 China

Abstract

AbstractTi3C2Tx materials have been developed to have application space in many fields, but there are not many works that can be compatible with infrared (IR) stealth and electromagnetic interference (EMI) shielding at the same time. To realize the multiband high EMI shielding of Ti3C2Tx materials, and to achieve stealth effect in the IR band, in this work, a composite textile is prepared by combining the Ti3C2Tx material with a carbon cloth and sputtering a very thin gold film on the surface. This composite textile can realize high EMI shielding compatible with IR stealth, in which the EMI shielding efficiency for microwave Xa‐band (8GHza‐12.4GHz) is up to 71.8 dB, for microwave Kaa‐band (26.5GHza‐40GHz) is up to 75.02 dB, and for terahertza‐band is about 30 dB. IR emissivity is as low as 0.1, and the lowest emissivity under a certain temperature reaches 0.07, which can withstand a high temperature of 500 °C. In addition, this composite textile has flexible and bendable wear. The thickness of the whole textile is about 400 µm, of which the Ti3C2Tx material thickness is only about 10 µm, the thinnest reaches 2 µm. Such a textile can be used in both people's livelihood and military applications, which has far‐reaching significance.

Funder

National Key Research and Development Program of China

Program for New Century Excellent Talents in University

Natural Science Foundation of Hunan Province

China Postdoctoral Science Foundation

National Natural Science Foundation of China

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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