Influence of MXene Interlayer Spacing on the Interaction with Microwave Radiation

材料科学 微波食品加热 辐射 光电子学 纳米技术 工程物理 光学 电信 计算机科学 物理 工程类
作者
Roman Rakhmanov,Stefano Ippolito,M. Downes,Alex Inman,Jamal Al-Hourani,J. Fitzpatrick,Yury Gogotsi,Gary S. Friedman
出处
期刊:Advanced Functional Materials [Wiley]
被引量:15
标识
DOI:10.1002/adfm.202410591
摘要

Abstract The origin of MXene's excellent electromagnetic shielding performance is not fully understood. MXene films, despite being inhomogeneous at the nanometer scale, are often treated as if they are compared to bulk conductors. It is reasonable to wonder if the treatment of MXene as a homogeneous material remains valid at very small film thickness and if it depends on the interlayer spacing. The goal of the present work is to test if the homogeneous material model is applicable to nanometer‐thin Ti 3 C 2 T x MXene films and, if so, to investigate how the model parameters may depend on variations in MXene interlayer spacings. MXene films containing flakes with interlayer spacing between 1.9 and 5.5 Å have been prepared using various intercalating agents. It is shown that modeling the films as being homogeneous agrees with experimental tests in the microwave frequency range. Microwave conductivity and dielectric constant parameters are estimated for the homogeneous film model by fitting measured results. The direct current (DC) conductivity matches the estimated microwave conductivity on the order of magnitude. A highly effective dielectric constant provides a good fit for the lower conductivity MXene films. Optical absorption agrees with the homogeneous material model of thin films as well.
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