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  2. /home/journal/dvi/APA3708-AP-neu.dvi

    www-g.eng.cam.ac.uk/nms/publications/pdf/Colli_APA2006.pdf
    13 Nov 2006: Nominally sub-eutectic NW syn-thesis using Au as catalyst has been achieved for severalsemiconductor materials, including Ge [22], InP [23], andZnSe [24]. ... 5, 761 (2005)24 A. Colli, S. Hofmann, A.C. Ferrari, C. Ducati, F.
  3. 04ta2410

    www-g.eng.cam.ac.uk/nms/publications/pdf/FerrariPTRS2004.pdf
    27 Nov 2006: 10.1098/rsta.2004.1452. Raman spectroscopy of amorphous,nanostructured, diamond-like. carbon, and nanodiamond. By A n d r e a C a r l o Ferrari a n d J o h n Robertson. Department of Engineering, University of Cambridge,Trumpington Street, Cambridge
  4. 42414.dvi

    www-g.eng.cam.ac.uk/nms/publications/pdf/Bottani_EPL1998.pdf
    8 Dec 2006: Our results differ considerably from those reported in [24]. c. e. ... 24] Pailard V., Melinon P., Perez J. P., Dupuis V., Perez A., Loubet J.
  5. 46220.dvi

    www-g.eng.cam.ac.uk/nms/publications/pdf/Ferrari_EPL1999.pdf
    14 Dec 2006: The sp3 content of the films isestimated at 10% from X-ray photoemission and electron energy loss spectroscopy [19, 24]. ... P., Phys. Rev. B, 35 (1987) 2946. [24] Li Bassi A., Piseri P., Milani P., Ferrari A.
  6. b01330.dvi

    www-g.eng.cam.ac.uk/nms/publications/pdf/Bonelli_EJPB2002.pdf
    12 Dec 2006: 0,24. 0,26. 0,28. 0,30. 0,32. 0,34. G Peak Dispersion (cm-1/nm). Fluence (J/cm-2)Fig. 7. G peak dispersion vs. ... The low frequency Raman spectra of low fluence filmsshow the low frequency double peak structure at about400 and 800 cm1, typical of
  7. doi:10.1016/j.diamond.2003.10.086

    www-g.eng.cam.ac.uk/nms/publications/pdf/Casiraghi_DRM2004.pdf
    27 Nov 2006: Byplotting j vs. time, this givesbya;0.24 w34x. Usingour a value, we find an independent value ofb between0.006 and 0.12.
  8. doi:10.1016/j.diamond.2003.12.018

    www-g.eng.cam.ac.uk/nms/publications/pdf/Casiraghi_DRM2004b.pdf
    27 Nov 2006: Fig. 2b shows the G peakdispersion of HCA(t)a-C:N films against N content.Here the G dispersion decreases from 0.24 to 0.1cm ynm, with increasing N ... b). This can be understood if we consider the crosssectional structure of ta-C filmsw13,24,25x.
  9. doi:10.1016/j.diamond.2004.12.028

    www-g.eng.cam.ac.uk/nms/publications/pdf/Piazza_DRM2005.pdf
    22 Nov 2006: obtained here compared to previous films produced by the. small ECWR [24] can be explained by the relatively high. ... 24] A.C. Ferrari, J. Robertson, M.G. Beghi, C.E. Bottani, R. Ferulano, R.
  10. doi:10.1016/j.diamond.2005.10.049

    www-g.eng.cam.ac.uk/nms/publications/pdf/Boutroy_DRM2006.pdf
    13 Nov 2006: C2H2 60 nm/s 0.002 cc/Package/24 H 20. CH4 4 nm/s 0.030 cc/Package/24 H 1.3. ... C2H4 25 nm/s 0.012 cc/Pckage/24 H 3.3. a BIF: Barrier Improvement Factor is the ratio of a non-coated bottle to a.
  11. doi:10.1016/j.diamond.2005.10.052

    www-g.eng.cam.ac.uk/nms/publications/pdf/Pisana_DRM2006.pdf
    13 Nov 2006: Peng et al. [24] reported a root. mean square (rms) roughness of 0.11 nm in a-C:H deposited. ... Technol. 174–175 (2003) 1135. [24] X.L. Peng, Z.H. Barber, T.W. Clyne, Surf.

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