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Detonation of nanosized explosive: New mechanistic model for nanodiamond formation
Affiliation:1. Brno University of Technology, Faculty of Chemistry, Materials Research Centre, Purkyňova 118, 612 00 Brno, Czech Republic;2. Institute of Physics, Academy of Sciences Czech Republic v.v.i, Na Slovance 2, CZ-182 21, Prague 8, Czech Republic;3. J. Heyrovský Institute of Physical Chemistry, AS CR, v.v.i., Dolej?kova 3, CZ-182 23 Prague 8, Czech Republic;4. Czech Technical University, Faculty of Nuclear Sciences and Physical Engineering, B?ehová 7, CZ-115 19 Praha, Czech Republic;5. Charles University in Prague, Faculty of Mathematics and Physics, V Hole?ovi?kách 2, CZ-180 00 Prague 8, Czech Republic
Abstract:While nanodiamonds are synthesized by detonation of microstructured explosives since 50 years ago, we developed a novel approach to synthesize these particles by using nanostructured explosives. This new synthesis method leads to novel results not only in the control of the size, but also in the understanding of the nanodiamond synthesis and the detonation mechanisms. The use of explosive particles with size down to 40 nm results in the formation of detonation nanodiamonds with a mean size of 2.8 nm. In the light of these experiments, a model based on the size of the material involved during the detonation process has been developed to explain the size of the obtained nanodiamond. According to hypotheses based on the number of the nanodiamond nucleation sites, the experimental results are in favor of a decrease in the size of the nanodiamonds formed when the size of the explosive particles used during detonation is decreased.
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