Download Carbon Nanoparticles and Nanostructures by Nianjun Yang, Xin Jiang, Dai-Wen Pang PDF

By Nianjun Yang, Xin Jiang, Dai-Wen Pang

This ebook makes a speciality of carbon dots and diamonds, in brief overlaying different nanocarbon constructions reminiscent of nanohorns and nanofibers. within the first half, chemical synthesis of carbon dots, their optical homes and their functions for sensing, catalytic reactions, bio-imaging and drug supply are awarded. the second one a part of the ebook bargains with the practise and purification of diamond nanoparticles, their houses and floor chemistry in addition to the functions of diamond nanoparticles for seeding, bio-imaging and drug supply. within the 3rd and final a part of the publication, different nanostructures akin to carbon nanofibers and carbon nanohorns are awarded, together with their program in electrochemistry, biochemistry and energy.

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Townsend, B. N. Nesterenko, Microwave-assisted purification of detonation nanodiamond. Diam. Relat. Mater. 48, 37–46 (2014). diamond. 007 68. Y. Dolmatov, A. Vehanen, V. A. N. M. A. Shpadkovskaya, Deep purification of detonation nanodiamond material. J. Superhard Mater. 35, 408–414 (2013). C. Arnault 69. A. Krüger, F. Kataoka, M. Ozawa, T. Fujino, Y. E. Y. Vul’, E. Osawa, Unusually tight aggregation in detonation nanodiamond: identification and disintegration. Carbon 43, 1722–1730 (2005). 020 70. M.

Self-assembly of loosely packed or closed packed microspheres was obtained depending on the suspension temperature during deposition. C. Arnault ordered array of diamond crystals was obtained. Such smart hybrids open the way of building scaffolds of NDs for catalysis, optical or biological applications. 1 Decoration of Nanodiamonds Carbon Dots Carbon dots (CDs) exhibit tunable photoluminescence properties [165]. CDs can be obtained by hydrothermal oxidation of carbon materials like fullerenes, carbon nanotubes, graphite or graphene oxide.

1021/ nn900339s 32. E. Neu, C. Arend, E. Gross, F. Guldner, C. Hepp, D. Steinmetz, E. Zscherpel, S. Ghodbane, H. Sternschulte, D. Steinmüller-Nethl, Y. Liang, A. Krueger, C. Becher, Narrowband 34 33. 34. 35. 36. 37. 38. 39. 40. 41. 42. 43. 44. 45. 46. 47. 48. 49. C. Arnault fluorescent nanodiamonds produced from chemical vapor deposition films. Appl. Phys. Lett. 98, 243107 (2011). 3599608 S. Heyer, W. Janssen, S. G. S. Yeap, J. Verbeeck, K. Haenen, A. Krueger, Toward deep blue nano hope diamonds: heavily boron-doped diamond nanoparticles.

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