Face-centered cubic n-diamond (sg F (4) over bar 3m) is a carbon allotrope relatively new and, similar to the others (graphite, diamond, fullerenes, and nanotubes are the most relevant ones), is currently a focus of great interest for potential advanced applications, with a particular emphasis in the field of nanotechnologies. The presence of n-diamond has been in general revealed as a byproduct of several diamond synthesis techniques. In the case of detonation nanodiamond, self-assembly mechanisms can be used in order to selectively separate n-diamond from other carbon nanomaterials. In particular, we show the possibility to achieve single crystal-like organized three-dimensional particles (with a size of some hundreds of nanometers), using as building blocks n-diamond nanocrystals (with a size of a few nanometers).

Self-Assembly of n-Diamond Nanocrystals Into Supercrystals / M. L., Terranova; D., Manno; Rossi, Marco; A., Serra; E., Filippo; S., Orlanducci; E., Tamburri. - In: CRYSTAL GROWTH & DESIGN. - ISSN 1528-7483. - STAMPA. - 9:3(2009), pp. 1245-1249. [10.1021/cg800352n]

Self-Assembly of n-Diamond Nanocrystals Into Supercrystals

ROSSI, Marco;
2009

Abstract

Face-centered cubic n-diamond (sg F (4) over bar 3m) is a carbon allotrope relatively new and, similar to the others (graphite, diamond, fullerenes, and nanotubes are the most relevant ones), is currently a focus of great interest for potential advanced applications, with a particular emphasis in the field of nanotechnologies. The presence of n-diamond has been in general revealed as a byproduct of several diamond synthesis techniques. In the case of detonation nanodiamond, self-assembly mechanisms can be used in order to selectively separate n-diamond from other carbon nanomaterials. In particular, we show the possibility to achieve single crystal-like organized three-dimensional particles (with a size of some hundreds of nanometers), using as building blocks n-diamond nanocrystals (with a size of a few nanometers).
2009
carbon allotrope; diamond; electron diffraction; electron microscopy; self-assembly
01 Pubblicazione su rivista::01a Articolo in rivista
Self-Assembly of n-Diamond Nanocrystals Into Supercrystals / M. L., Terranova; D., Manno; Rossi, Marco; A., Serra; E., Filippo; S., Orlanducci; E., Tamburri. - In: CRYSTAL GROWTH & DESIGN. - ISSN 1528-7483. - STAMPA. - 9:3(2009), pp. 1245-1249. [10.1021/cg800352n]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/68754
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