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首页> 外文期刊>Journal of Materials Science >Ultrasound-assisted one-pot syntheses of ZnO nanoparticles that are homogeneously adsorbed on exfoliated graphite and a simplified method to determine the graphite layer thickness in such composites
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Ultrasound-assisted one-pot syntheses of ZnO nanoparticles that are homogeneously adsorbed on exfoliated graphite and a simplified method to determine the graphite layer thickness in such composites

机译:超声辅助ZnO纳米颗粒的单罐合成,其均匀地吸附在剥离石墨上和简化的方法中,以确定这种复合材料中的石墨层厚度

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摘要

The combination of zinc oxide (ZnO) and graphite provides a promising approach for technological applications, particularly in the field of gas sensors, as anode material for lithium-ion batteries and also as photocatalyst. Versatile strategies exist to combine ZnO and graphite. Here, we report on two novel, facile, and environmentally friendly one-pot synthesis routes yielding highly dispersed spherical ZnO nanoparticles with an average particle diameter of about 5 nm supported by exfoliated graphite sheets. For both preparation methods, the ultrasound-assisted synthesis does not result only in high yield but also in the opportunity for industrial scale-up. The composites are produced via a facile synthesis process and provide also a higher ZnO content and a higher surface coverage than other composites as previously reported by this group. Furthermore, we introduce a convenient simplified method to monitor and to determine the ultrasound-assisted exfoliation of graphite and its layer thickness, by taking only four parameters into account-namely the density of the substrate, the specific surface area of the initial and of the exfoliated substrate, and the concentration of the adsorbed particles. By applying tailored parameters, the here-derived equation can be applied for various composites including adsorbed particles on the substrate.
机译:氧化锌(ZnO)和石墨的组合为技术应用提供了有希望的方法,特别是在气体传感器领域,作为锂离子电池的阳极材料,也是光催化剂。存在多功能策略来结合Zno和石墨。在这里,我们报告了两种新颖,容易和环保的一锅合成途径,其产生高度分散的球形ZnO纳米颗粒,其平均粒径为剥离石墨片支撑约5nm。对于两种制备方法,超声辅助合成只能产生高产,而且在工业扩展的机会上不会产生。通过容易合成过程生产复合材料,并且还提供比该组先前报道的其他复合材料更高的ZnO含量和更高的表面覆盖物。此外,我们介绍了一种方便的简化方法来监测和确定石墨及其层厚度的超声辅助剥离,通过仅取得四个参数来考虑基板的密度,初始和初始的表面积剥离底物和吸附颗粒的浓度。通过施加定制参数,可以施加来自基板上的各种复合材料的这里衍生的等式。

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