Microcrystallites and Granularity of Detonation Nanodiamonds

A. Kolesova, E. Petrov
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Abstract

At the present moment6 science and technology use detonation synthesis nanodiamonds, obtained both from the carbon of an explosive molecule and from a mixture of explosive with the addition of graphite or soot. In the latter case, the diamonds are larger. The given work investigated the synthesis products, obtained under industrial conditions, while having detonation of a mixture of trinitrotoluene (TNT) with halogen (RDX) and RDX with graphite. The sizes of microcrystallites were estimated by X-ray diffraction analysis and particle grain size according to the measurement of specific surface area, agglomerate in water suspension after treatment by ultrasound. The evolution of particle sizes of nanodiamonds, both in the primary synthesis products and after enrichment from non-diamond forms of carbon and technological impurities6 was shown. The results obtained can be useful for studying the mechanism of synthesis and practical application of detonation ND.
爆轰纳米金刚石的微晶与粒度
目前的科学技术是用爆轰法合成纳米金刚石,这种金刚石既可以从炸药分子中的碳中提取,也可以从加入石墨或烟灰的炸药混合物中提取。在后一种情况下,钻石更大。本文研究了三硝基甲苯(TNT)与卤素(RDX)和RDX与石墨的混合物在工业条件下爆炸得到的合成产物。通过x射线衍射分析估算微晶的大小,通过测量比表面积估算微晶的粒径,超声处理后微晶在水悬浮液中结块。显示了纳米金刚石在初级合成产物和从非金刚石形式的碳和工艺杂质富集后粒径的演变。所得结果对研究爆轰ND的合成机理和实际应用具有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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