subject predicate object context
39790 Creator 3d9f5a6838060f791e133fa6e5265b06
39790 Creator ext-386022f5b497960f61299828c6405478
39790 Creator ext-3d79f2bc61a5d3021490fcd52a8a9674
39790 Creator ext-6202df016dcc9c79d76d3caeaae15ca1
39790 Creator ext-8965163e9ee7991389a1d39ebf490278
39790 Date 2013-01
39790 Is Part Of repository
39790 Is Part Of p00086223
39790 abstract We report the <i>in situ</i> formation of onion-like carbon (OLC) by evaporation from a nanodiamond source under ultra-high vacuum conditions. The OLC is characterized by transmission electron microscopy (TEM), atomic force microscopy (AFM), Raman spectroscopy and X-ray photoelectron spectroscopy (XPS) and is found to be highly defective but completely separated. The absence of any signature in XPS, Raman spectra and TEM associated with nanodiamond in the film suggests that the OLC is formed from carbon vapor or by the direct evaporation of only the smallest particles resulting from nanodiamond graphitization. The method thus provides a route to the formation of individually separated OLC nanoparticles.
39790 authorList authors
39790 status peerReviewed
39790 uri http://data.open.ac.uk/oro/document/227232
39790 uri http://data.open.ac.uk/oro/document/227248
39790 uri http://data.open.ac.uk/oro/document/227249
39790 uri http://data.open.ac.uk/oro/document/227250
39790 uri http://data.open.ac.uk/oro/document/227251
39790 uri http://data.open.ac.uk/oro/document/227252
39790 uri http://data.open.ac.uk/oro/document/227663
39790 volume 52
39790 type AcademicArticle
39790 type Article
39790 label Krishnamurthy, S. ; Butenko, Yu. V.; Dhanak, V. R.; Hunt, M. R. C. and Šiller, L. (2013). In situ formation of onion-like carbon from the evaporation of ultra-dispersed nan. Carbon, 52 pp. 145–149.
39790 label Krishnamurthy, S. ; Butenko, Yu. V.; Dhanak, V. R.; Hunt, M. R. C. and Šiller, L. (2013). In situ formation of onion-like carbon from the evaporation of ultra-dispersed nan. Carbon, 52 pp. 145–149.
39790 Title <i>In situ</i> formation of onion-like carbon from the evaporation of ultra-dispersed nan
39790 in dataset oro