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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Modification of polycrystalline nanodiamonds by using periodic magnetic field enhanced hydrogen plasma and the application on nanogrinding of thin film magnetic head
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Modification of polycrystalline nanodiamonds by using periodic magnetic field enhanced hydrogen plasma and the application on nanogrinding of thin film magnetic head

机译:周期性磁场增强氢等离子体改性多晶纳米金刚石及其在薄膜磁头纳米研磨中的应用

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摘要

Polycrystalline nanodiamonds (NDs) derived from shock wave synthesis exhibits serious agglomeration in non-polar medium such as clean oil. Here we report an efficient new approach to modify the NDs by exposing the nanoparticles to periodic magnetic field (PMF) enhanced hydrogen plasma in the gas phase. The modification treatment transforms oxygenated groups on the NDs surface into C H terminations. The evolution of polycrystalline NDs has been carefully characterized by FTIR, Raman and XRD analysis and the enhancement mechanism of PMF was discussed. After this treatment, well-dispersed and stable suspensions of diamond nanoparticles in clean oil with average diameter of 74.7 nm can be obtained. Subsequent nanogrinding of thin-film magnetic heads (TFH) validates their dispersion behavior. A smooth substrate (R_a ~ 0.387 nm) surface and a planar recording surface (PTR ~ 0.048 nm) were achieved.
机译:源自冲击波合成的多晶纳米金刚石(NDs)在非极性介质(如清洁油)中表现出严重的团聚。在这里,我们报告了一种有效的新方法,可通过将纳米颗粒暴露于气相的周期性磁场(PMF)增强的氢等离子体来修饰ND。改性处理将NDs表面的氧化基团转变为C H末端。 FTIR,拉曼光谱和XRD分析已经仔细表征了多晶NDs的演化,并讨论了PMF的增强机理。经过此处理后,可以获得金刚石纳米粒子在平均直径为74.7 nm的清洁油中分散良好且稳定的悬浮液。随后的薄膜磁头(TFH)纳米研磨验证了其分散行为。获得了光滑的基底(R_a〜0.387nm)表面和平坦的记录表面(PTR〜0.048nm)。

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