4036-044095 Baratoff, Alexis




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H. Kind, J-M. Bonard, C. Emmenegger, L. Nilsson, K. Hernandi, E. Schaller, L. Schlapbach, L. Forro. Patterned Films of Nanotubes Using Microcontact Printing of Catalysts. Adv. Mater. 11, 1285 (1999).


L.Nilsson, O.Groening, C. Emmenegger, O. Kuettel, E. Schaller, L. Schlapbach, H.Kind, J-M Bonard, K. Kern, Scanning field emission from patterned carbon nanotube film. Appl. Phys. Lett., 76, 2071 (2000).


L. Nilsson, O. Groening, P. Groening, O. Kuettel and L. Schlapbach. Environmental Stability of Carbon Nanotube Field Emitters. Conference Proceedings XIVth International Winterschool on Electronic Properties of Novel Materials: Molecular Nanostructures. Kirchberg, Austria, IWEPNM 2000. (In press).


L. Nilsson, O. Groening, P. Groening, O. Kuettel and L. Schlapbach. Carbon nano/microstructures in field emission: Environmental Stability and Field Enhancement Distribution. Conference Proceedings E-MRS IUMRS ICEM 2000. Strasbourg, France May 30-June 2 2000. (In press).


4036-043943 Schönenberger, Christian


Laszlo Forro and Christian Schönenberger. Pysical Properties of Multiwall Nanotubes. In M.S. Dresselhaus, G. Dresselhaus and Ph. Avouris, editors. Carbon Nanotubes, Springer, Berlin Heidelberg New York, 2000.


Christian Schönenberger and Laszlo Forro. Physics of Multiwall-Carbon Nanotubes. Physics World, Vol. 13, No. 6, 37-41 (2000).


C. Strunk, A. Bachtold, T. Nussbaumer and C. Schönenberger. Interference and Interaction in Multi-Wall Carbon Nanotubes. Physica E, 2000. Proceedings, LT22 (In press).


Electronic and Mechanical Properies of Carbon Nanotubes. In D. Tomanek and R.J. Enbody, editors, Science and Application of Nanotubes, page 297. Kluwer Academic/Plenum Publishers. Proceedings of Nanotube 1999, NT99.


C. Schönenberger, A. Bachtold, C. Strunk, J.-P. Salvetat and L. Forro.

Interference and Interaction in Multiwall Carbon Nanotubes. Appl. Phys. A, 69, 283 (1999).


C. Schönenberger, A. Bachtold, C. Strunk, T. Nussbaumer, J.-P.Salvetat,

and L. Forro. Quantentransport in Multiwall Carbon Nanotubes. In H. Kuzmany, J. Fink, M. Mehring and S. Roth, editors, Proceedings of the XIIIth International Winterschool on Electronic Properties of Novel Materials, Kirchberg 1999, AIP Press, New-York (1999).


C. Schönenberger, A. Bachtold, C. Strunk, T. Nussbaumer, J.-P. Salvetat,

and L. Forro. Quantentransport in Multiwall Carbon Nanotubes. In Proceedings of the Morriond Meeting, Les Arcs (1999).


J.-P. Salvetat, J.-M. Bonard, L. Forro, A. Bachtold and C. Schönenberger. Physics of carbon nanotubes. In SGNT-News. SGNT, Dec. 1998.


Adrian Bachtold, Christoph Strunk, Jean-Paul Salvetat, Jean-Marc Bonard,

Laszlo Forro, Thomas Nussbaumer and Christian Schönenberger. Aharonov-Bohm Oscillations in Carbon Nanotubes. Nature 397, 673 (1999).


Hans-Werner Fink and Christian Schönenberger. Electrical conduction through DNA molecules. Nature 398, 407 (1999).


A. Bachtold, A. Genkinger, M. Henny and C. Schönenberger. Single carbon nanotube bridging four electric contact fingers. In Raith Application Note (1998).


A. Bachtold, C. Strunk, C. Schönenberger, J.-P. Salvetat and L. Forro. Electrical properties of single carbon nanotubes. In H. Kuzmany, J. Fink, M. Mehring and S. Roth, editors, Proceedings of the XIIth International Winterschool on Electronic Properties of Novel Materials, Kirchberg/Tyrol, pages 65-68. AIP New-York (1998).


A. Bachtold, J.-P. Salvetat, J.-M. Bonard, M. Henny, C. Terrier, C. Strunk, L.. Forro and C.Schönenberger. Contacting Carbon-Nanotubes selectively with Low-Ohmic Contacts for Four-Probe Electric Measurements. Appl. Phys. Lett. 73, 274-276 (1998).


A. Bachtold, C. Terrier, M. Krüger, M. Henny, T. Hoss, C. Strunk, R. Huber, H. Birk, U. Staufer and C. Schönenberger. Contacting Single Template Sythesized Nanowires for Electric Measurements. Microelectronic Engineering 41/42, 571 (1998).


C. Schönenberger, B.M.I. van der Zande, L.G.J. Fokkink, M. Henny, C. Schmid, M. Krüger, A. Bachtold, R. Huber, H. Birk and U. Staufer. Template-Synthesis of Nanowires in Porous Polycarbonate Membranes: Electrochemistry and Morphology. J. Phys. Chem. B 101, 5597-5606 (1997).


C. Strunk, A. Bachtold, T. Nussbaumer, C. Schönenberger. Interference and Interaction in Multi-Wall Carbon Nanotubes. 22nd International Conference on Low Temperature Physics LT22, Helsinki, Aug. 1999. (To appear in Physica E.).


4036-044058 Siegenthaler, Hans F.


P. Häring, R. Kötz, G. Repphun, O. Haas and H. Siegenthaler. In-situ Scanning Probe Microscopy Investigations of Electroactive Films. Appl. Phys. A 66, 481- 486 (1998).


H. Siegenthaler, E. Ammann, P.-F. Indermühle and G. Repphun. Nanoscale Probes of the Solid - Liquid Interface. Chapter in 'Nanoscale Science and Technology' (N. Garcia, M. Nieto-Vesperinas, H. Rohrer, Eds.), NATO ASI Series E, Vol. 348, pp. 297-315, Kluwer Academic Publishers, Dordrecht (1998).


P.-F. Indermühle, E. Ammann, P. Häring, R. Kötz, H. Siegenthaler and N.F. de Rooij. Electrolytic ThinLayer Scanning Tunneling Microscope: Fabrication and First Results. Microelectronic Engineering 41/42, 547-550 (1998).


E. Ammann, C. Beuret, P.F. Indermühle, N.F. de Rooij and H. Siegenthaler. Thin-Layer Scanning Probe Microscopy. J.Electrochem.Soc. (In press).


4036-044084 Spencer, Nicholas D.


K. Feldman, M. Fritz, G. Höhner, A. Marti and N.D. Spencer. Surface Forces, Surface Chemistry and Tribology. Trib. Int. 31, 99-105 (1998).


D.Gourdon, N.A. Burnham, A. Kulik, E. Dupas, F. Oulevey, G. Gremaud, D. Stamou, M. Liley, Z. Dienes, H. Vogel and C. Duschl. The Dependence of Friction Anisotropies on the Molecular Organisation of LB Films as Observed by AFM. Trib. Lett. 3, 317-324 (1997).


D. Stamou, D. Gourdon, M. Lile, N.A. Burnham, A. Kulik, H. Vogel and C. Duschl. Uniformly Flat Gold Surfaces: Imaging the Domain Structure of Organic Monolayers Using Scanning Force Microscopy. Langmuir 13, 2425-2428 (1997).


M. Liley, D. Gourdon, D. Stamou, U. Meseth, T.M. Fischer, C. Lautz, H. Stahlberg, H. Vogel, N.A. Burnham, C. Duschl. Friction Anisotropy and

Asymmetry of a Compliant Monolayer Induced by a Small Tilt", Science 280, 273-275 (1998).


4036-044032 Spichiger, Ursula


P. Zammaretti, A. Fakler, F. Zaugg and U.E. Spichiger-Keller. Atomic Force Microscope: a tool for studying ionophores. Anal. Chem. (2000). (In press).


4036-043973 Tiefenauer, Louis


R. Ros, F. Schwesinger, D. Anselmetti, M. Kubon, R. Schäfer, A. Plückthun and L. Tiefenauer. Antigen binding forces of individually addressed single-chain Fv antibody molecules. Proc. Natl. Acad. Sci. USA 95, 7402-7405 (1998).


F. Schwesinger, R. Ros, T. Strunz, D. Anselmetti, H.-J. Güntherodt, A. Honegger, L. Jermutus, L. Tiefenauer and A. Plückthun. Unbinding forces of single antibody-antigen complexes correlate with their thermal dissociation rate. Proc. Natl. Acad. Sci. USA (2000). (In press).


R. Ros, F. Schwesinger, C. Padeste, A. Plückthun, D. Anselmetti, H.-J. Güntherodt and L. Tiefenauer. Scanning and force microscopies for biomedical applications. SPIE 3607, 84-89 (1999).


E. zur Mühlen, P. Koschinski, S. Gehring, R. Ros, L. Tiefenauer, E. Haltner, C.M. Lehr, U. Hartmann, F. Schwesinger and A. Plückthun. Force microscopy of cells to measure bioadhesion. In: Bioadhesive drug delivery system: Fundamentals, novel approaches and development. E. Mathiowitz, D. Chickering, and C.-M. Lehr (eds.): Drugs and the pharmaceutical sciences series, Vol.98 , 1st ed., M. Dekker, p. 197-221 (1999).


F. Schwesinger, R. Ros, L. Tiefenauer, D. Anselmetti, H.-J. Günterodt and A. Plückthun. Antigen binding forces of individually addressed single-chain Fv antibody molecules. Proc. STM ’99, Seoul, Korea, 19.- 23. July, 295-296 (1999).


4036-043933 Zenobi, Renato


D.Zeisel, S. Nettesheim, B. Dutoit and R. Zenobi. Pulsed laser-induced desorption and optical imaging on a nanometer scale with scanning near-field microscopy using chemically etched fiber tips. Appl. Phys. Lett. 68, 2491-2492 (1996).


Optical Spectroscopy and Laser Desorption on a Nanometer Scale. Anal. Chem. 69, 749-754 (1997).


B. Dutoit, D. Zeisel, V. Deckert and R. Zenobi. Laser-Induced Ablation through Nanometer-Sized Tip Apertures: Mechanistic Aspects. J. Phys. Chem. B 101, 6955-6959 (1997).


D. Pohl et al. Optical Microscopy in the Nano-World. Chimia, 51, 760-767 (1997).


D. Zeisel, V. Deckert, R. Zenobi and T. Vo-Dinh. Near-field surface-enhanced Raman spectroscopy of dye molecules adsorbed on silver island films. Chem. Phys. Lett. 283, 381-385 (1998).


V. Deckert, D. Zeisel, R. Zenobi and T. Vo-Dinh. Near-field Surface-Enhanced Raman Imaging of Dye Labelled DNA with 100 nm Resolution. Anal. Chem. 70, 2646-2650 (1998).


E. Vogel, W. Kiefer, V. Deckert and D. Zeisel. Laser Deposited Silver Island Films: an Investigation of their Structure, Optical Properties and SERS Activity. J. Raman Spectrosc. 29, 693 (1998).


R. M. Stöckle, N. Schaller, V. Deckert, C. Fokas and R.Zenobi. Brighter near-field probes by means of improving the optical destruction threshold. J. Microsc. 2194, 378-382 (1999).


V. Deckert, D. Zeisel, R. Zenobi and T. Vo-Dinh. Subwavelength Raman imaging of biological samples using near-field spectroscopy. In Scanning and Force Microscopies for Biomedical Applications, Eiichi Tamiya, Shuming Nie, Editors, Proc. of SPIE Vol. 3607, 8 (1999).


R. Stöckle, C. Fokas, V. Deckert, R. Zenobi, B. Sick, B. Hecht and U. P. Wild.Tube-Etching: Towards Better Near-Field Optical Probes. Appl. Phys. Lett. 75, 160-162 (1999).


R. M. Stöckle, V. Deckert, C. Fokas, D. Zeisel and R.Zenobi. Subwavelength Raman spectroscopy on isolated silver islands. Vib. Spectrosc. 22, 39-48 (2000).


B. Hecht, U. P. Wild, B. Sick, V. Deckert, R. Zenobi, O.J.F. Martin and D. Pohl. Understanding and Using Near-Field Optics. J. Chem. Phys. 112, 7761-7774 (2000).


R. M. Stöckle, Y. D. Suh, V. Deckert and R. Zenobi. Nanoscale Chemical Analysis by Tip-enhanced Raman Spectroscopy. Chem. Phys. Lett. 318, 131-136 (2000).


R. Zenobi and V. Deckert. Scanning near-field optical microscopy and spectroscopy as a tool for chemical analysis. Angew. Chem. Int. Ed. 39, 17461-756 (2000).


4036-044033 Zotos, Xenophon


C. Stafford, D. Baeriswyl and J. Buerki. Jellium model of metallic nanocohesion. Phys. Rev. Lett. 79, 2863 (1997).


J. Bürki, C.A. Stafford, X. Zotos and D. Baeriswyl. Cohesion and conductance of disordered metallic point contacts. Phys. Rev. B60, 5000 (1999).


J. Bürki and C.A. Stafford. Comment on Quantum suppression of shot noise in atomic-size metallic contacts. Phys. Rev. Lett. 83, 3342 (1999).


C.A. Stafford, F. Kassubek, J. Bürki and H. Grabert. Universality in metallic

nanocohesion: a quantum chaos approach. Phys. Rev. Lett. 83, 4836 (1999).


C.A. Stafford, F. Kassubek, J. Bürki, H. Grabert and D. Baeriswyl. Cohesion, conductance and charging effects in a metallic nanocontact, in Quantum Physics at the Mesoscopic Scale, edited by D. C. Glattli and M. Sanquer. (Editions Frontières, Gif-sur-Yvette, 1999).


C. A. Stafford, J. Bürki and D. Baeriswyl, Comment on "Density functional simulation of a breaking nanowire".Phys. Rev. Lett. 84, 2548 (2000).
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