Gonzalo Guillermo Otero Irurueta

Engª Mecânica

Equiparado a Investigador Auxiliar
gabinete: 3.2.18
extensão: 26205


.Research Group: Nanoengeneering Research Group (NRG)
.Short CV
Dr. Gonzalo Otero-Irurueta is currently employed as Auxiliar Researcher in the nanoengeneering research group (NRG) of the centre for mechanical technology and automation (TEMA) in the University of Aveiro, Portugal. His research interests span over a wide range of materials science, surface physics and chemistry phenomena. In particular, he focus on the study of low-dimensional systems on surfaces.
PhD in physics
Supervisor: Prof. José Angel Martín Gago
Autonomous University of Madrid, Spain
Title: “Fullerenes from aromatic precursors by surface-catalysed cyclodehydrogenation”
.Research lines:
Hexagonal Boron Nitride (h-BN) and Molybdenum disulfide (MoS2) combined with active elements such as graphene for electronic devices.
Graphene and doped graphene on metals and insulating substrates. Functionalization of graphene by covalently bonding organic molecules. Graphene transfer from metals to arbitrary substrates.
Structural and electronic properties of 1D and 2D nanostructures on surfaces.
Organic molecules (self-assembly, catalysis, on-surface chemistry)
.Experimental techniques: XPS, UPS, AES, STM, AFM, LEED
.Synchrotron-based techniques: XPS, NEXAFS, LEEM, PEEM, SXRD
.Representative publications:
.I. on-surface chemistry
G. Otero, G. Biddau, C. Sánchez-Sánchez, R. Caillard, M.F. López, C. Rogero, F.J. Palomares, N. Cabello, M. A Basanta, J. Ortega, J. Méndez, A.M. Echavarren, R. Pérez, B. Gómez-Lor, J.A. Martín-Gago. “Fullerenes from aromatic precursors by surface-catalysed cyclodehydrogenation”
Nature 454 (2008) 865–868
A.L. Pinardi, G. Otero-Irurueta, I. Palacio, J.I. Martinez, C. Sanchez-Sanchez, M. Tello, C. Rogero, A. Cossaro, A. Preobrajenski, B. Gómez-Lor, A. Jancarik, I.G. Stará, I. Starý, M.F. Lopez, J. Méndez, J.A. Martin-Gago. “Tailored formation of N-doped nanoarchitectures by diffusion-controlled on-surface (cyclo)dehydrogenation of heteroaromatics”
ACS Nano 7 (2013) 3676–3684
.II. Graphene
P. Merino, M. Svec, A.L. Pinardi, G. Otero, J.A. Martín-Gago. “Strain-driven Moiré superstructures of epitaxial graphene on transition metal surfaces”
ACS Nano 5 (2011) 5627–5634
.III. On surface molecular self-assembly
J. Méndez, R. Caillard, G. Otero, N. Nicoara, J. A. Martín-Gago. “Nanostructured Organic Material: From Molecular Chains to Organic Nanodots”
Adv. Mater 18 (2006) 2048–2052
G. Otero-Irurueta, I. Hernández-Rodríguez, J.I. Martinez, R.P. Palacios-Rivera, F.J. Palomares, M.F. López, A. Gallego, S. Delgado, F. Zamora, J. Méndez, J.Á. Martín-Gago. “On-surface self-organization of a robust metal–organic cluster based on copper(I) with chloride and organosulphur ligands”
Chem. Commun. 51 (2015) 3243–3246
G. Otero-Irurueta, J.I. Martínez, G. Lovat, V. Lanzilotto, J. Méndez, M.F. López, L. Floreano, J. A. Martín-Gago. “Densely Packed Perylene Layers on the Rutile TiO2 (110)-(1 × 1) Surface”
J. Phys. Chem. C 119 (2015) 7809–7816

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