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首页> 外文期刊>International Journal of Nanotechnology >Polymer-assisted forge-rolling disaggregation of detonation nanodiamonds and onion-like carbon
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Polymer-assisted forge-rolling disaggregation of detonation nanodiamonds and onion-like carbon

机译:爆轰纳米金刚石和洋葱状碳的聚合物辅助锻造分解

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摘要

Nanodiamonds (NDs) produced in a detonation process are strongly aggregated, which hampers fully realising their properties at the nanoscale, particularly, in composites. Moreover, during annealing, the tightly bonded ND particles are transformed into the so-called onion-like carbon (OLC), where several carbon onions are coated by joint graphitic layers. Here, we demonstrate that NDs and OLC can be disaggregated using a polymer-assisted forge-rolling. The isolated diamond nanocrystals and carbon onions with a size of similar to 5 nm typical for the primary particles are observed by high-resolution transmission electron microscopy in polystyrene films after repeated rolling. We suggest that forces acting on aggregates through a strongly stretched polymer matrix are able to break the chemical bonds between carbon particles. Measurements of permittivity indicate that homogeneous distribution of individualised carbon onions in polymers can significantly increase the shielding efficiency of a composite.
机译:在爆炸过程中产生的纳米金刚石(NDs)强烈聚集,这阻碍了在纳米级上充分实现其性能,特别是在复合材料中。此外,在退火过程中,紧密结合的ND颗粒转变为所谓的洋葱状碳(OLC),其中几个碳洋葱被连接石墨层覆盖。在这里,我们证明可以使用聚合物辅助锻造将ND和OLC分解。重复轧制后,通过高分辨率透射电子显微镜在聚苯乙烯薄膜中观察到分离出的金刚石纳米晶体和尺寸近似于一次颗粒典型尺寸为5 nm的碳洋葱。我们建议通过强力拉伸的聚合物基质作用在聚集体上的力能够破坏碳颗粒之间的化学键。介电常数的测量表明,单个碳洋葱在聚合物中的均匀分布可以显着提高复合材料的屏蔽效率。

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