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Synthesis and Microwave Absorbing Properties of Porous One-Dimensional Nickel Sulfide Nanostructures

机译:一维硫化镍多孔纳米结构的合成及吸波性能

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摘要

One-dimensional (1D) porous NixSy nanostructures have been successfully fabricated by two-step method consisting of solvothermal and subsequent annealing process. The suitable heat treatment temperature and reaction time play crucial roles in the final structure, morphology, as well as performance. The uniform and perfect porous NixSy nanostructures obtained at 310°C exhibit outstanding microwave absorption performances. A minimum reflection loss of −35.6 dB is achieved at 8.5 GHz, and the effective absorption bandwidth almost covers 14.5 GHz with the absorber thickness range of 2.0–5.0 mm. It can be supposed that this porous structure with rough surface which is favor for increasing the microwave multiple reflection and scattering, contributes a high-performance electromagnetic absorption.
机译:一维(1D)多孔NixSy纳米结构已成功地通过包括溶剂热和随后的退火过程的两步法制造。合适的热处理温度和反应时间在最终结构,形态和性能中起着至关重要的作用。在310°C下获得的均匀,完美的多孔NixSy纳米结构具有出色的微波吸收性能。 8.5 GHz时,最小反射损耗为-35.6 dB,有效吸收带宽几乎覆盖14.5 GHz,吸收层厚度为2.0-5.0 mm。可以认为这种具有粗糙表面的多孔结构有利于增加微波的多次反射和散射,有助于实现高性能的电磁吸收。

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