
Imaging and Manipulation of Adsorbates Using Dynamic Force Microscopy
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Moriarty has a keen interest in outreach activities and both science and higher education funding policy. In addition to participating in a number of research council-funded public engagement projects (including Giants of the Infinitesimal), and his membership of the Steering Committee of the Council for the Defence of British Universities, he has interacted with national and international media (including The Independent, The Guardian, Times Higher Education, BBC Radio 4, Die Zeit, and The Economist) on these issues. He is also a regular contributor to Nottingham's Sixty Symbols YouTube project which has, as of June 2013, attracted a little over 20 million views (across ~ 200 videos). Although he does not share his infamous namesake's fascination with the binomial theorem, in his spare time Moriarty enjoys exploring the relationships between mathematics/physics and music.
Sébastien GAUTHIER is "directeur de recherche" au Centre d'élaboration de matériaux et d'études structurales (CEMES) in Toulouse (France). He joined the "Groupe de Physique des Solides de l'Ecole Normale Supérieure" (Paris) in 1981 to study inelastic electrontunneling spectroscopy in metal-insulator-metal junctions. He is working in the scanning tunnelling microscopy (STM) field since 1986. He built several UHV-STM to study metal-on-metal crystalline growth. He moved to Toulouse, in CEMES, in 1997 to develop STM experiments on single adsorbed molecules on metallic surfaces. He is involved in non-contact Atomic Force microscopy (nc-AFM) since 2002, for studying single molecules adsorbed on insulating surfaces, with a special interest in charge manipulation on this type of systems.
Content
Pauli's Principle in Probe Microscopy.- Mechanical and Electrical Properties of Single Molecules.- Atom Manipulation Using Atomic Force Microscopy at Room Temperature.- A Considered Approach to Force Extraction from Dynamic Force Microscopy Measurements.- Theoretical Challenges of Simultaneous NC-AFM/STM Experiments.- Manipulation of Metal Nanoparticles on Insulating Surfaces.- Imaging of Defects on Ge(001):H by Non-Contact Atomic Force Microscopy.- Adsorption Structures of Amino Acids on Calcite(104).- NC-AFM and KPFM Study of the Adsorption of a Triphenylene Derivative on KBr(001).
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