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sebastian Amaya Roncancio
sebastian Amaya Roncancio
Verified email at cuc.edu.co
Title
Cited by
Cited by
Year
DFT study of adsorption and diffusion of atomic hydrogen on metal surfaces
EV Gómez, S Amaya-Roncancio, LB Avalle, DH Linares, MC Gimenez
Applied Surface Science 420, 1-8, 2017
692017
DFT study of hydrogen adsorption on Ni/graphene
S Amaya-Roncancio, AAG Blanco, DH Linares, K Sapag
Applied Surface Science 447, 254-260, 2018
472018
Molecular dynamics simulations of the temperature effect in the hardness on Cr and CrN films
S Amaya-Roncancio, DF Arias-Mateus, MM Gómez-Hermida, ...
Applied Surface Science 258 (10), 4473-4477, 2012
362012
DFT Study of Hydrogen Assisted Dissociation of CO by HCO, COH and HCOH Formation on Fe (100)
S Amaya-Roncancio, DH Linares, HA Duarte, K Sapag
The Journal of Physical Chemistry C, 2016
352016
Incorporation of P5+ and P3− from phosphate precursor in TiO2: P coatings produced by PEO: XPS and DFT study
DA Torres-Ceron, S Amaya-Roncancio, JS Riva, A Vargas-Eudor, ...
Surface and Coatings Technology 421, 127437, 2021
312021
Study of the incorporation of S in TiO2/SO42− Coatings produced by PEO process through XPS and DFT
S Vargas-Villanueva, DA Torres-Ceron, S Amaya-Roncancio, ...
Applied Surface Science 599, 153811, 2022
282022
Nanostructured carbons modified with nickel as potential novel reversible hydrogen storage materials: Effects of nickel particle size
PM Carraro, AAG Blanco, G Lener, D Barrera, S Amaya-Roncancio, ...
Microporous and Mesoporous Materials 273, 50-59, 2019
182019
Influence of coadsorbed H in CO dissociation and CHn formation on Fe(100): a DFT study
MIR S. Amaya-Roncancio, D.H. Linares, , K. Sapag
Applied Surface Science 346 (1), 438-442, 2015
132015
Finite elements modeling of multilayers of Cr/CrN
S Amaya-Roncancio, E Restrepo-Parra
Microelectronics journal 39 (11), 1336-1338, 2008
122008
DFT Study of adsorption and diffusion of H2O and related species on Cu (100) surfaces
EV Gómez, S Amaya-Roncancio, LB Avalle, MC Gimenez
Surface Science 714, 121920, 2021
112021
Confined Iron Nanoparticles on Mesoporous Ordered Silica for Fischer–Tropsch Synthesis
CF Toncón‐Leal, S Amaya-Roncancio, AAG Blanco, MS Moreno, ...
Topics in Catalysis, 2019
112019
Adsorption and dissociation of CO on metal clusters
S Amaya-Roncancio, L Reinaudi, MC Gimenez
Materials Today Communications 24, 101158, 2020
102020
Effect of Hydrogen in Adsorption and Direct Dissociation of CO on Fe (100) Surface: A DFT Study
S Amaya Roncancio, DH Linares, HA Duarte, G Lener, MK Sapag
Scientific Research, 2015
102015
Simulation of band structure for CrN lattices by using a 3D array of range-limited circularly symmetric attractive potential
E Restrepo-Parra, S Amaya-Roncancio, CM Bedoya-Hincapie, ...
Superlattices and Microstructures 43 (5-6), 559-563, 2008
72008
Molecular dynamics simulation of nanoindentation in Cr, Al layers and Al/Cr bilayers, using a hard spherical nanoindenter
S Amaya-Roncancio, E Restrepo-Parra, DM Devia-Narvaez, ...
Dyna 81 (186), 102-107, 2014
62014
Ab initio calculations of lithium titanates related to anodes of lithium-ion batteries
S Amaya-Roncancio, L Reinaudi, S Chauque, FY Oliva, OR Cámara, ...
Journal of Physics and Chemistry of Solids 141, 109405, 2020
52020
Direct versus Hydrogen-Assisted Dissociation of CO on Iron Surfaces: Kinetic Monte Carlo and Microkinetic Modeling
S Amaya-Roncancio,J.J Arroyo-Gómez, D.H Linares, K Sapag
Journal of Molecular Structure, 2020
42020
Dissociative adsorption of H2 on metal cluster and (1 1 1) surface of Ag, Co, Cu and Ru
S Amaya-Roncancio, CF Toncón-Leal, ID Arellano-Ramirez, ...
Chemical Physics 559, 111546, 2022
32022
Molecular dynamics simulation of the nanoindentation process in Cr/CrN and (Cr/CrN) 2 thin films
S Amaya Roncancio, DF Arias Mateus, B Segura Giraldo, J De la Roche, ...
Hikari, 2018
32018
Molecular dynamics simulations of nanoindentation in Cr, Ni, and Ni/Cr bilayer films using a hard spherical potential
S Amaya Roncando, E Restrepo Parra, DF Arias Mateus, ...
Revista Facultad de Ingeniería Universidad de Antioquia, 88-94, 2013
32013
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