2003
DOI: 10.1016/s0925-9635(02)00336-9
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Evidence for trans-polyacetylene in nano-crystalline diamond films

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Cited by 194 publications
(77 citation statements)
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“…Raman spectroscopy analysis of the present hot filament-grown NCD films (Fig. 1C) revealed their composite nature, attested by the occurrence of the diamond peak combined with the graphitic peak and the typical bands of nanometric diamond (m = 1228 cm À1 [31]; m = 1140 and 1480 cm À1 [32,33]). In addition, NCD films are formed by diamond crystals of nanometric size, usually between 10 and 100 nm [34,35].…”
Section: Discussionmentioning
confidence: 81%
“…Raman spectroscopy analysis of the present hot filament-grown NCD films (Fig. 1C) revealed their composite nature, attested by the occurrence of the diamond peak combined with the graphitic peak and the typical bands of nanometric diamond (m = 1228 cm À1 [31]; m = 1140 and 1480 cm À1 [32,33]). In addition, NCD films are formed by diamond crystals of nanometric size, usually between 10 and 100 nm [34,35].…”
Section: Discussionmentioning
confidence: 81%
“…22,23 Since Raman spectroscopy is usually more sensitive to sp 2 carbon phases, some enhancement in G peak intensity may be expected following t-PA bonding decomposition. However, Ferrari and Robertson noted that the rest of the spectrum is substantially unchanged following 1200°C annealing, 22 while in the work of Pfeiffer et al 62 following 1200°C annealing the diamond 1332 cm −1 line is even more pronounced, than for asdeposited films. Present NEXAFS measurements confirm Raman results revealing at most only minor bulk graphitization of the film.…”
Section: Discussion Of Nanodiamond Bulk Versus Surface Thermal Stamentioning
confidence: 92%
“…Meanwhile, weak shoulder peaks at 1143 cm −1 and 1496 cm −1 can be observed, which are related to the transpolyacetylene (TPA) segments at the grain boundaries of the nano-crystalline diamond. These can be a convenient probe for nano-crystalline diamond thin lms [20][21][22] . The peak at 1568 cm −1 (G band) is related to the vibration of the sp 2 -bonded carbon atoms in a two-dimensional hexagonal lattice, corresponding to the E 2g mode of graphite.…”
Section: Resultsmentioning
confidence: 99%