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Construction of ZnIn2S4 nanosheets/3D carbon heterostructure with Schottky contact for enhancing electromagnetic wave absorption performance.

Authors :
Lu, Xiaoke
Li, Xin
Wang, Yijin
Hu, Wei
Zhu, Wenjie
Zhu, Dongmei
Qing, Yuchang
Source :
Chemical Engineering Journal. Mar2022:Part 2, Vol. 431, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

The construction of environment-adapted FCS@ZIS heterostructure with Schottky contact for enhancing EM absorbing property. [Display omitted] • A novel heterostructure composed of ZnIn 2 S 4 /carbon is constructed as EM absorber. • The interfacial design with Schottky contact can promote the polarization effect. • The EM absorbing ability is optimized by tunning energy level and heterointerface. • The FCS@ZIS has application potential with excellent environmental adaptability. To alleviate the electromagnetic (EM) contamination, high-performance EM absorbers are urgently required. Constructing heterostructures with diverse energy level structures and high interfacial coupling effects has been considered as an ideal strategy to induce outstanding EM absorbing ability. In this work, the in-situ synthesis of interlaced ZnIn 2 S 4 (ZIS) nanosheets on the 3D foam-like carbon skeleton (FCS) using convenient carbonization and solvothermal approach is used to create a novel heterostructure with Schottky contact, which is then used as EM absorbers. By developing highly utilized heterointerfaces and different energy level structures, the FCS@ZIS heterostructure demonstrates a balanced synergy of multiple-attenuation mechanisms and impedance matching. With appropriate ZIS adjustment, the absorption bandwidth improves from 3.8 GHz to 4.3 GHz, and the lowest reflection coefficient is optimized from −15.6 dB to −52.7 dB, revealing the EM absorbing potential of FCS@ZIS. Furthermore, the unique nano-micro structure of FCS@ZIS can boost the matrix's hydrophobic ability, which is quite significant in practical applications. The importance of the FCS@ZIS Schottky heterostructure in improving the EM absorbing property is revealed in this study, which also proposes a potential technique for developing outstanding EM absorbers. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13858947
Volume :
431
Database :
Academic Search Index
Journal :
Chemical Engineering Journal
Publication Type :
Academic Journal
Accession number :
154538038
Full Text :
https://doi.org/10.1016/j.cej.2021.134078