Flexible and Waterproof 2D/1D/0D Construction of MXene-Based Nanocomposites for Electromagnetic Wave Absorption, EMI Shielding, and Photothermal Conversion

Abstract High-performance electromagnetic wave absorption and electromagnetic interference (EMI) shielding materials with multifunctional characters have attracted extensive scientific and technological interest, but they remain a huge challenge. Here, we reported an electrostatic assembly approach...

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Main Authors: Zhen Xiang, Yuyang Shi, Xiaojie Zhu, Lei Cai, Wei Lu
Format: Article
Language:English
Published: SpringerOpen 2021-06-01
Series:Nano-Micro Letters
Subjects:
Co
Online Access:https://doi.org/10.1007/s40820-021-00673-9
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spelling doaj-c335480e44ea4613adedc541232d4dba2021-06-27T11:45:06ZengSpringerOpenNano-Micro Letters2311-67062150-55512021-06-0113112110.1007/s40820-021-00673-9Flexible and Waterproof 2D/1D/0D Construction of MXene-Based Nanocomposites for Electromagnetic Wave Absorption, EMI Shielding, and Photothermal ConversionZhen Xiang0Yuyang Shi1Xiaojie Zhu2Lei Cai3Wei Lu4Shanghai Key Lab of D&A for Metal-Functional Materials, School of Materials Science & Engineering, Tongji UniversityShanghai Key Lab of D&A for Metal-Functional Materials, School of Materials Science & Engineering, Tongji UniversityShanghai Key Lab of D&A for Metal-Functional Materials, School of Materials Science & Engineering, Tongji UniversityShanghai Key Lab of D&A for Metal-Functional Materials, School of Materials Science & Engineering, Tongji UniversityShanghai Key Lab of D&A for Metal-Functional Materials, School of Materials Science & Engineering, Tongji UniversityAbstract High-performance electromagnetic wave absorption and electromagnetic interference (EMI) shielding materials with multifunctional characters have attracted extensive scientific and technological interest, but they remain a huge challenge. Here, we reported an electrostatic assembly approach for fabricating 2D/1D/0D construction of Ti3C2Tx/carbon nanotubes/Co nanoparticles (Ti3C2Tx/CNTs/Co) nanocomposites with an excellent electromagnetic wave absorption, EMI shielding efficiency, flexibility, hydrophobicity, and photothermal conversion performance. As expected, a strong reflection loss of -85.8 dB and an ultrathin thickness of 1.4 mm were achieved. Meanwhile, the high EMI shielding efficiency reached 110.1 dB. The excellent electromagnetic wave absorption and shielding performances were originated from the charge carriers, electric/magnetic dipole polarization, interfacial polarization, natural resonance, and multiple internal reflections. Moreover, a thin layer of polydimethylsiloxane rendered the hydrophilic hierarchical Ti3C2Tx/CNTs/Co hydrophobic, which can prevent the degradation/oxidation of the MXene in high humidity condition. Interestingly, the Ti3C2Tx/CNTs/Co film exhibited a remarkable photothermal conversion performance with high thermal cycle stability and tenability. Thus, the multifunctional Ti3C2Tx/CNTs/Co nanocomposites possessing a unique blend of outstanding electromagnetic wave absorption and EMI shielding, light-driven heating performance, and flexible water-resistant features were highly promising for the next-generation intelligent electromagnetic attenuation system. Highlights The 2D/1D/0D Ti3C2Tx/carbon nanotubes/Co nanocomposite is successfully synthesized via an electrostatic assembly. Nanocomposites exhibit an excellent electromagnetic wave absorption and a remarkable electromagnetic interference shielding efficiency. The flexible, waterproof, and photothermal conversion performances are achieved.https://doi.org/10.1007/s40820-021-00673-9Ti3C2TxCNTsCoLow-dimensional materialsElectromagnetic wave absorptionEMI shielding
collection DOAJ
language English
format Article
sources DOAJ
author Zhen Xiang
Yuyang Shi
Xiaojie Zhu
Lei Cai
Wei Lu
spellingShingle Zhen Xiang
Yuyang Shi
Xiaojie Zhu
Lei Cai
Wei Lu
Flexible and Waterproof 2D/1D/0D Construction of MXene-Based Nanocomposites for Electromagnetic Wave Absorption, EMI Shielding, and Photothermal Conversion
Nano-Micro Letters
Ti3C2Tx
CNTs
Co
Low-dimensional materials
Electromagnetic wave absorption
EMI shielding
author_facet Zhen Xiang
Yuyang Shi
Xiaojie Zhu
Lei Cai
Wei Lu
author_sort Zhen Xiang
title Flexible and Waterproof 2D/1D/0D Construction of MXene-Based Nanocomposites for Electromagnetic Wave Absorption, EMI Shielding, and Photothermal Conversion
title_short Flexible and Waterproof 2D/1D/0D Construction of MXene-Based Nanocomposites for Electromagnetic Wave Absorption, EMI Shielding, and Photothermal Conversion
title_full Flexible and Waterproof 2D/1D/0D Construction of MXene-Based Nanocomposites for Electromagnetic Wave Absorption, EMI Shielding, and Photothermal Conversion
title_fullStr Flexible and Waterproof 2D/1D/0D Construction of MXene-Based Nanocomposites for Electromagnetic Wave Absorption, EMI Shielding, and Photothermal Conversion
title_full_unstemmed Flexible and Waterproof 2D/1D/0D Construction of MXene-Based Nanocomposites for Electromagnetic Wave Absorption, EMI Shielding, and Photothermal Conversion
title_sort flexible and waterproof 2d/1d/0d construction of mxene-based nanocomposites for electromagnetic wave absorption, emi shielding, and photothermal conversion
publisher SpringerOpen
series Nano-Micro Letters
issn 2311-6706
2150-5551
publishDate 2021-06-01
description Abstract High-performance electromagnetic wave absorption and electromagnetic interference (EMI) shielding materials with multifunctional characters have attracted extensive scientific and technological interest, but they remain a huge challenge. Here, we reported an electrostatic assembly approach for fabricating 2D/1D/0D construction of Ti3C2Tx/carbon nanotubes/Co nanoparticles (Ti3C2Tx/CNTs/Co) nanocomposites with an excellent electromagnetic wave absorption, EMI shielding efficiency, flexibility, hydrophobicity, and photothermal conversion performance. As expected, a strong reflection loss of -85.8 dB and an ultrathin thickness of 1.4 mm were achieved. Meanwhile, the high EMI shielding efficiency reached 110.1 dB. The excellent electromagnetic wave absorption and shielding performances were originated from the charge carriers, electric/magnetic dipole polarization, interfacial polarization, natural resonance, and multiple internal reflections. Moreover, a thin layer of polydimethylsiloxane rendered the hydrophilic hierarchical Ti3C2Tx/CNTs/Co hydrophobic, which can prevent the degradation/oxidation of the MXene in high humidity condition. Interestingly, the Ti3C2Tx/CNTs/Co film exhibited a remarkable photothermal conversion performance with high thermal cycle stability and tenability. Thus, the multifunctional Ti3C2Tx/CNTs/Co nanocomposites possessing a unique blend of outstanding electromagnetic wave absorption and EMI shielding, light-driven heating performance, and flexible water-resistant features were highly promising for the next-generation intelligent electromagnetic attenuation system. Highlights The 2D/1D/0D Ti3C2Tx/carbon nanotubes/Co nanocomposite is successfully synthesized via an electrostatic assembly. Nanocomposites exhibit an excellent electromagnetic wave absorption and a remarkable electromagnetic interference shielding efficiency. The flexible, waterproof, and photothermal conversion performances are achieved.
topic Ti3C2Tx
CNTs
Co
Low-dimensional materials
Electromagnetic wave absorption
EMI shielding
url https://doi.org/10.1007/s40820-021-00673-9
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