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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Positive and Reverse Core/Shell Structure CoxFe3-xO4/MoS2 and MoS2/CoxFe3-xO4 Nanocomposites: Selective Production and Outstanding Electromagnetic Absorption Comprehensive Performance
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Positive and Reverse Core/Shell Structure CoxFe3-xO4/MoS2 and MoS2/CoxFe3-xO4 Nanocomposites: Selective Production and Outstanding Electromagnetic Absorption Comprehensive Performance

机译:正芯芯/壳结构COXFE3-XO4 / MOS2和MOS2 / COXFE3-XO4纳米复合材料:选择性生产和出色的电磁吸收综合性能

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摘要

Lots of research have focused on the core/shell structure nanocomposites owing to their synergistic effect that were considered as the most promising high-performance microwave absorbers (MAs). However, the excellent comprehensive properties of MAs are still in urgent need. Herein, positive and reverse core/shell structure CoxFe3-xO4/MoS2 (x = 1.5, 0.75 and 0.5) and MoS2/CoxFe3-xO4 (x = 0.5) nanocomposites were elaborately produced through an inexpensive two-step hydrothermal process. It was found that the CoxFe3-xO4/MoS2 samples exhibited a much smaller optimal reflection loss (RLopt) value and a broader frequency bandwidth (f(b)) with the lower value of matching thickness (d(m)) when the CoxFe3-xO4/MoS2 loadings were raised to 60 from 30 wt %. With the x value decreasing from 1.5 to 0.5, the obtained CoxFe3-xO4/MoS2 samples displayed a much smaller RLopt value with a thinner d(m) and a much larger f(b) value with the thin d(m) (similar to 2 mm). The sample consisting of 60 wt % CoxFe3-xO4/MoS2 (x = 0.5) exhibited an RLopt value of -66.83 dB with the dm of merely 1.57 mm, and its corresponding f(b) value could reach 6.64 GHz with the d(m) of 2.02 mm. Moreover, compared with the MoS2/CoxFe3-xO4 (x = 0.5) sample, the CoxFe3-xO4/MoS2 (x = 0.5) sample displayed evidently better microwave absorbing comprehensive performances in terms of low RLopt value, large f(b) value, and high chemical stability. Generally, the obtained results demonstrated that the designed CoxFe3-xO4/MoS2 nanocomposites could act as MAs with outstanding comprehensive properties.
机译:由于其协同效应被认为是最有前途的高性能微波吸收剂(MAS),许多研究集中在核心/壳结构纳米复合材料上。然而,MAS的优秀综合性质仍在迫切需要。在本文中,通过廉价的两步水热法制作阳性和逆转芯/壳结构COXFE3-XO4 / MOS2(X = 1.5,0.75和0.5)和MOS2 / COXFE3-XO4(X = 0.5)纳米复合材料。发现CoxFe3-XO4 / MOS2样品具有更小的最佳反射损耗(RLOPT)值和更宽的频率带宽(F(b)),当COxFE3-时,匹配厚度的值较低(D(m)) XO4 / MOS2载荷从30wt%升至60。随着x值从1.5到0.5减小,所获得的CoxFe3-XO4 / MOS2样本用较薄的D(m)和薄d(m)的更大的f(b)值显示得更小的rlopt值(类似于2毫米)。由60wt%COXFE3-XO4 / MOS2(x = 0.5)组成的样品显示出-66.83dB的RLOPT值,其中DM仅为1.57 mm,其相应的F(B)值可以达到6.64GHz,D(m )2.02毫米。此外,与MOS2 / COXFE3-XO4(X = 0.5)样品相比,COXFE3-XO4 / MOS2(X = 0.5)样品在低RLOPT值,大F(B)值方面明显更好地显示微波吸收综合性能,和高化学稳定性。通常,所获得的结果表明,设计的CoxFe3-XO4 / MOS2纳米复合材料可作为具有出色的综合性质的MAS。

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