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Luciano Colazzo

Researcher at Spanish National Research Council

Publications -  30
Citations -  606

Luciano Colazzo is an academic researcher from Spanish National Research Council. The author has contributed to research in topics: Graphene nanoribbons & Graphene. The author has an hindex of 9, co-authored 27 publications receiving 459 citations. Previous affiliations of Luciano Colazzo include Ewha Womans University & Donostia International Physics Center.

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Single and Multiple Doping in Graphene Quantum Dots: Unraveling the Origin of Selectivity in the Oxygen Reduction Reaction

TL;DR: In this article, the selectivity of the reaction is controlled by the oxidation states of the dopants: as-prepared graphene oxide quantum dots follow a two-electron reduction path that leads to the formation of hydrogen peroxide, whereas after the reduction with...
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Width-Dependent Band Gap in Armchair Graphene Nanoribbons Reveals Fermi Level Pinning on Au(111)

TL;DR: The energy level alignment evolution of valence and conduction bands of armchair-oriented graphene nanoribbons (aGNR) as their band gap shrinks with increasing width is reported, and valence bands are found to show Fermi level pinning as the band gap decreases below a threshold value around 1.7 eV.
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Multiple doping of graphene oxide foams and quantum dots: new switchable systems for oxygen reduction and water remediation

TL;DR: In this paper, single and multi-boron, nitrogen, sulphur doped graphene oxide quantum dots and three-dimensional foams are synthesized by a simple and environmentally friendly electrochemical method.
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Stereoselective Photopolymerization of Tetraphenylporphyrin Derivatives on Ag(110) at the Sub‐Monolayer Level

TL;DR: This previously unreported approach shows that the photo-induced covalent stabilization of self-assembled molecular monolayers to obtain highly ordered surface covalENT organic frameworks is viable by a careful choice of the precursors and reaction conditions.
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Metal-Free on-Surface Photochemical Homocoupling of Terminal Alkynes

TL;DR: Light-induced metal-free homocoupling of terminal alkynes on highly oriented pyrolitic graphite (HOPG) with high efficiency and selectivity within a self-assembled monolayer of aryl-alkynes and led to the generation of large domains of ordered butadiynyl derivatives represents an original approach in the field of topological C-C coupling at the solid/liquid interface.