Atomic-Scale Layer-by-Layer Deposition of FeSiAl@ZnO@AlO Hybrid with Threshold Anti-Corrosion and Ultra-High Microwave Absorption Properties in Low-Frequency Bands.

Nanomicro Lett

National Engineering Researching Centre of Electromagnetic Radiation Control Materials, Key Laboratory of Multi-Spectral Absorbing Materials and Structures of Ministry of Education, State Key Laboratory of Electronic Thin Films and Integrated Devices, School of Electronic Science and Engineering, University of Electronic Science and Technology of China, Chengdu, 611731, People's Republic of China.

Published: July 2021

Developing highly efficient magnetic microwave absorbers (MAs) is crucial, and yet challenging for anti-corrosion properties in extremely humid and salt-induced foggy environments. Herein, a dual-oxide shell of ZnO/AlO as a robust barrier to FeSiAl core is introduced to mitigate corrosion resistance. The FeSiAl@ZnO@AlO layer by layer hybrid structure is realized with atomic-scale precision through the atomic layer deposition technique. Owing to the unique hybrid structure, the FeSiAl@ZnO@AlO exhibits record-high microwave absorbing performance in low-frequency bands covering L and S bands with a minimum reflection loss (RL) of -50.6 dB at 3.4 GHz. Compared with pure FeSiAl (RL of -13.5 dB, a bandwidth of 0.5 GHz), the RL value and effective bandwidth of this designed novel absorber increased up to ~ 3.7 and ~ 3 times, respectively. Furthermore, the inert ceramic dual-shells have improved 9.0 times the anti-corrosion property of FeSiAl core by multistage barriers towards corrosive medium and obstruction of the electric circuit. This is attributed to the large charge transfer resistance, increased impedance modulus |Z|, and frequency time constant of FeSiAl@ZnO@AlO. The research demonstrates a promising platform toward the design of next-generation MAs with improved anti-corrosion properties.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8324648PMC
http://dx.doi.org/10.1007/s40820-021-00678-4DOI Listing

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