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  2. No Job Name

    www-g.eng.cam.ac.uk/nms/publications/pdf/Pisana_JPCC2007.pdf
    18 Dec 2007: s crystal orienta-tion.24-26 Yu et al. ... R.; Hanein, Y.J. Phys. Chem. B2006, 110, 21419.(24) Ago, H.; Nakamura, K.; Ikeda, K.; Uehara, N.; Ishigami, N.; Tsuji,.
  3. Photoluminescence Spectroscopy of Carbon Nanotube Bundles:Evidence…

    www-g.eng.cam.ac.uk/nms/publications/pdf/Tan_PRL2007.pdf
    27 Sep 2007: due toits much lower position than previous investigations ofthese tubes [18,19,24,25]. ... 24] H. Htoon et al., Phys. Rev. Lett. 94, 127403 (2005).[25] S.
  4. What's Next In Science & Technology - Video shows how carbon…

    www-g.eng.cam.ac.uk/nms/highlights-press/CNTvideo-whatsnew.pdf
    19 Mar 2007: 12 13 14 15 16 17 18. 19 20 21 22 23 24 25.
  5. http://www.fabtech.org/content/view/1720

    www-g.eng.cam.ac.uk/nms/highlights-press/semiconductorfabtechlowtemepraturenanotube.pdf
    20 Apr 2007: ring oscillator circuit around single carbon nanotube (24/03/2006) > Flexible 'Nano skin' electronics (02/03/2006) > Carbon nanotubes made in Munich (04/02/2005). <
  6. LETTERS Breakdown of the adiabaticBorn–Oppenheimer approximationin…

    www-g.eng.cam.ac.uk/nms/publications/pdf/Pisana_NM2007.pdf
    2 Mar 2007: Thedependence of the electronic bands on u can be obtained from theDFT electron–phonon coupling matrix elements (see equation (6)and note 24 of ref. ... Phys. Rev. Lett. 96,. 136806 (2006).24. Moos, G., Gahl, C., Fasel, R., Wolf, M. &
  7. Cambridge Network

    www-g.eng.cam.ac.uk/nms/highlights-press/cambridge-network.pdf
    24 May 2007: Cambridge Network http://www.cambridgenetwork.co.uk/news/article/default.aspx?obj. 1 of 2 5/24/2007 2:54 PM. PROFILE PRODUCTS / SERVICES NEWS JOBS. ... Cambridge Network http://www.cambridgenetwork.co.uk/news/article/default.aspx?obj. 2 of 2 5/24/2007
  8. Raman fingerprint of charged impurities in grapheneC. Casiraghia� and …

    www-g.eng.cam.ac.uk/nms/publications/pdf/Casiraghi_APL2007.pdf
    10 Dec 2007: neutrality point away from zero gatevoltage.12–14,19,23,24 However, it is quite remarkable that“pristine” samples, with no contacts, exhibit almost an orderof magnitude doping variation, with a
  9. doi:10.1016/j.ijsolstr.2004.02.037

    www-g.eng.cam.ac.uk/advancedstructures/files/pdf/galletly2004b.pdf
    27 Dec 2007: It was generated using Abaqus. (2002). A length of tube was modelled with a 48 by 48 mesh (24 by 24 for the a 90 case) using S4R.
  10. doi:10.1016/j.ijsolstr.2004.02.036

    www-g.eng.cam.ac.uk/advancedstructures/files/pdf/galletly2004a.pdf
    27 Dec 2007: P A11 EX l. þ U2X l. 3. 24. 2B16UX l: ð23Þ. ... et al. (2000) were taken 24 h after snap-through. A brief experiment to try to capture an instantaneous.
  11. doi:10.1016/j.optcom.2007.04.028

    www-g.eng.cam.ac.uk/nms/publications/pdf/King_OC2007.pdf
    21 Jun 2007: The sample absorbed in the UV–Vis range.Absorption shoulders occurred close to the direct band-gap energies of crystalline silicon [24,25]. ... 24] J. Singleton, Band Theory and Electronic Properties of Solids, OxfordUniversity Press, 2001, p.

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