Molecular Materials Group
School of Chemistry
University of Sydney
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Dr Laurence Goux-Capes

Previous Postdoctoral Fellow

Research Areas

Spin transition compounds and photomagnetism
Self-assembly of carbon nanotube for nanodevices


Publications
  1. A three-branched DNA template for carbon nanotube self-assembly into nanodevice configuration
    S. Lyonnais, C.-L. Chung, L. Goux-Capes, C. Escude, O. Pietrement, S. Baconnais, E. Le Cam, J.-P Bourgoin, A. Filoramo, Chem. Commun., 2009, 683.
  2. Synthesis of Thin and Highly Conductive DNA-Based Palladium Nanowires
    K. Nguyen, M. Monteverde, A. Filoramo, L. Goux-Capes, S. Lyonnais, P. Jegou, P. Viel, M. Goffman, J.-P. Bourgoin, Adv. Mater., 2008, 20, 1099.
  3. DNA-Carbon Nanotube Conjugates Prepared by a Versatile Method Using Streptavidin-Biotin Recognition
    L. Goux-Capes, S. Lyonnais, C. Escudé, D. Cote, A. Filoramo, J.-P. Bourgoin, Small, 2008, 4, 442.
  4. Coupling Carbon Nanotubes through DNA linker using a biological recognition complex
    L. Goux-Capes, A. Filoramo, D. Cote, J.-Ph. Bourgoin, J.-N. Patillon, Physica status solidi (a), 2006, 203, 1132.
  5. Cathodic electropolymerisation on the surface of carbon nanotubes
    T. Defever, G. Deniau, S. Palacin, L. Goux-Capes, S. Barrau, M. Mayne-L’Hermite, J. Electroanal. Chem., 2006, 589, 46.
  6. Environmental effects on the carrier dynamics in carbon nanotubes
    J.S. Lauret , C. Voisin, S. Berger, G. Cassabois, C. Delalande, P. Roussignol, L. Goux-Capes, A. Filoramo, Phys. Rev. B, 2005, 72, 113413.
  7. Optical transitions in single-wall boron nitride nanotubes
    J.S. Lauret, R. Arenal, F. Ducastelle, A. Loiseau, M. Cau, B. Attal-Tretout, E. Rosencher, L. Goux-Capes, Phys. Rev. Lett., 2005, 94, 037405.
  8. A guideline to the design of molecular-based materials with long-lived photomagnetic lifetimes
    J.-F. Letard, P. Guionneau, O. Nguyen, J.S. Costa, S. Marcen, G. Chastanet, M. Marchivie, L. Goux-Capes, Chem. Eur. J., 2005, 11, 4582.
  9. Non-Covalent Binding of DNA to Carbon Nanotubes Controlled by Biological Recognition Complex
    L. Goux-Capes, A. Filoramo, D. Cote, E. Valentin, J.-Ph. Bourgoin, and J.-N. Patillon, AIP Conference Proceedings, 2004, 725, 17.
  10. Fabrication by self-assembly of carbon nanotubes field effect transistors, in Molecular Nanowires and other Quantum Objects
    E. Valentin, S. Auvray, A. Filoramo, A. Ribayrol, M.F. Goffman, J. Goethals, L. Capes, J.P. Bourgoin, and J.N. Patillon; J.D. Sasha Alexandrov and Y. Igor, Editors. 2004, Kluwer: Dordrecht..
  11. Photocreated carrier dynamics in isolated carbon nanotubes
    J.S. Lauret, C. Voisin, G. Cassabois, P. Roussignol, C. Delalande, L. Capes, E. Valentin, A. Filoramo, O. Jost, Semicond. Sci. Technol., 2004, 19, S486.
  12. Third-order optical nonlinearities of carbon nanotubes in the femtosecond regime
    J.S. Lauret, C. Voisin, G. Cassabois, J. Tignon, C. Delalande, P. Roussignol, O. Jost, L. Capes, Appl. Phys. Lett., 2004, 85, 3572.
  13. Bandgap photoluminescence of semiconducting single-wall carbon nanotubes
    J. S. Lauret, C. Voisin, G. Cassabois, P. Roussignol, C. Delalande, A. Filoramo, L. Capes, E. Valentin and O. Jost, Physica E, 2004, 21 (2-4), 1057.
  14. Towards spin crossover applications
    J.-F. Letard, P. Guionneau and L. Goux-Capes, Spin Crossover in Transition Metal Compounds III in Topics in Current Chemistry , 2004, 235, 221.
  15. Heat- and light-induced spin transition of an iron(II) polymer containing the 1,2,4,5-tetrakis(diphenylphosphanyl)benzene ligand
    P. Rosa, A. Debay, L. Capes, G. Chastanet, A. Bousseksou, P. Le Floch and J.-F. Letard, Eur. J. Inorg. Chem., 2004, 3017.
  16. Self-assembly fabrication of high performance Carbon Nanotubes based FETs
    E. Valentin, S. Auvray, A. Filoramo, A. Ribayrol, M. Goffman, L. Capes, J. P. Bourgoin, and J. N. Patillon, Proc. Mater. Res. Soc, 2003. 772, 201-3
  17. Ultrafast pump-probe measurements in single wall carbon nanotubes
    J.-S. Lauret, C. Voisin, G. Cassabois, C. Delalande, Ph. Roussignol, L. Capes and O. Jost, Physica E, 2003, 17 (1-4) 380.
  18. Ultrafast Carrier Dynamics in Single Wall Carbon Nanotubes
    J-S. Lauret, C. Voisin, G. Cassabois, C. Delalande, Ph. Roussignol, O. Jost, and L. Capes, Phys. Rev. Lett., 2003, 90, 057404
  19. Thermal and optical switching of molecular spin states in the {FeL[H2B(pz)2]2} spin-crossover system (L = bpy, phen)
    N. Moliner, L. Salmon, L. Capes L, et al. J. Phys. Chem. B, 2002, 106 (16), 4276.
  20. High yield non destructive purification of single wall carbon nanotubes monitored by EPR
    L. Capes, E. valentin, S. Esnouf and A. Filoramo, Proceedings IEEE Conference on Nanotechnology, 2002, 439.
  21. High density selective placement methods for carbon nanotubes
    E. Valentin, S. Auvray, J. Goethals, J. Lewenstein, L. Capes, A. Filoramo, A. Ribayrol, J-P Bourgoin, J-N Patillon, Microelectronic Engineering, 2002, 491, 61-2.
  22. Critical temperature of the LIESST effect in a series of hydrated and anhydrous complex salts [Fe(bpp)2]X2L
    L. S. Marcen, L. Lecren, L. Capes, H.A. Goodwin and J.-F. Letard, Chem. Phys. Lett., 2002, 358, 87.
  23. Two-step Spin Crossover in a Mononuclear Compound [Fe(DPEA)(bim)](ClO4)2•0.5H2O [DPEA = (2-aminoethyl)bis(2-pyridylmethyl)amine, bim = 2,2-bisimidazole]
    G.S. Matouzenko, J.-F. Letard, S. Lecocq, A. Bousseksou, L. Capes, L. Salmon, M. Perrin, O. Kahn and A. Collet, Eur. J. Inorg. Chem., 2001, 11, 2935
  24. Second-order non-linear optical response of metallo-organic compounds: towards switchable materials
    J.-B. Gaudry, L. Capes, P. Langot, S. Marcen, M. Kollmannsberger, O. Lavastre, E. Freysz, J.-F. Letard and O. Kahn, Chem. Phys. Lett., 2000, 324, 321.
  25. Photomagnetic properties in a series of spin crossover compounds [Fe(PM-L)2(NCX)2] (X = S, Se) with substituted 2'-pyridylmethylene-4-amino ligands
    L. Capes, J.-F. Letard and O. Kahn, Chem. Eur. J., 2000, 6, 2246.
  26. Light induced excited pair spin state in an iron(II) binuclear spin-crossover compound
    J.-F. Letard, J.-A. Real, N. Moliner, A. B. Ghaspar, L. Capes, O. Cador and O. Kahn, J. Am. Chem. Soc., 1999, 121, 10630.
  27. Critical temperature of the LIESST effect in iron(II) spin crossover compounds
    J.-F. Letard, L. Capes, G. Chastanet, N. Moliner, S. Letard, J.-A. Real and O. Kahn, Chem. Phys. Lett., 1999, 313, 115.

Molecular Materials Group - School of Chemistry - The University of Sydney - NSW 2006 - Australia
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