Damien Riedel

Affiliations: 
Physics University of Birmingham (UK) 
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"Damien Riedel"
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Duverger E, Boyer AG, Sauriat-Dorizon H, et al. (2020) 2D Functionalized Ultra-thin semi-insulating CaF layer on the Si(100) surface at low temperature (9K) for molecular electronic decoupling. Acs Applied Materials & Interfaces
Yengui M, Duverger E, Sonnet P, et al. (2019) Translational Manipulation of Magnetic Cobalt Adatoms on the Si(100)-2 × 1 Surface at 9 K Journal of Physical Chemistry C. 123: 26415-26423
Yengui M, Duverger E, Sonnet P, et al. (2017) A two-dimensional ON/OFF switching device based on anisotropic interactions of atomic quantum dots on Si(100):H. Nature Communications. 8: 2211
Dujardin G, Boer-Duchemin E, Moal EL, et al. (2016) DIET at the nanoscale Surface Science. 643: 13-17
Yengui M, Pinto HP, Leszczynski J, et al. (2015) Atomic scale study of corrugating and anticorrugating states on the bare Si(1 0 0) surface. Journal of Physics. Condensed Matter : An Institute of Physics Journal. 27: 045001
Chiaravalloti F, Dujardin G, Riedel D. (2015) Atomic scale control of hexaphenyl molecules manipulation along functionalized ultra-thin insulating layer on the Si(1 0 0) surface at low temperature (9 K). Journal of Physics. Condensed Matter : An Institute of Physics Journal. 27: 054006
Yengui M, Riedel D. (2015) Evidence of Low Schottky Barrier Effects and the Role of Gap States in the Electronic Transport through Individual CoSi<inf>2</inf> Silicide Nanoislands at Low Temperature (9 K) Journal of Physical Chemistry C. 119: 22700-22708
Yengui M, Riedel D. (2014) Cobalt adsorption on the bare Si(100) 2 × 1 surface at low temperature (12 K) Surface Science. 619: 10-18
Labidi H, Sonnet P, Riedel D. (2013) Electronic control of the tip-induced hopping of an hexaphenyl-benzene molecule physisorbed on a bare Si(100) surface at 9 K Journal of Physical Chemistry C. 117: 13663-13675
Labidi H, Kantorovich L, Riedel D. (2012) Atomic-scale control of hydrogen bonding on a bare Si(100)-2×1 surface Physical Review B - Condensed Matter and Materials Physics. 86
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