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Gaetano Granozzi

Researcher at University of Padua

Publications -  408
Citations -  10311

Gaetano Granozzi is an academic researcher from University of Padua. The author has contributed to research in topics: X-ray photoelectron spectroscopy & Catalysis. The author has an hindex of 42, co-authored 399 publications receiving 8858 citations. Previous affiliations of Gaetano Granozzi include Istituto Italiano di Tecnologia & University of Düsseldorf.

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Oxygen reduction reaction at LaxCa1-xMnO3 nanostructures: interplay between A-site segregation and B-site valency

TL;DR: In this paper, the mean activity of surface Mn sites at LaxCa1−xMnO3 nanostructures towards the oxygen reduction reaction (ORR) in alkaline solution is assessed as a function of the oxide composition.
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Unveiling the Mechanisms Leading to H2 Production Promoted by Water Decomposition on Epitaxial Graphene at Room Temperature.

TL;DR: This work investigates the mechanisms ruling the catalytic role of epitaxial graphene (Gr) grown on transition-metal substrates for the production of hydrogen from water, and evaluates the performance of Gr/metal interface as a hydrogen storage medium.
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Fast One-Pot Synthesis of MoS2/Crumpled Graphene p–n Nanonjunctions for Enhanced Photoelectrochemical Hydrogen Production

TL;DR: Aerosol processing enables the preparation of hierarchical graphene nanocomposites with special crumpled morphology in high yield and in a short time, and it is obtained that N-doped graphene/MoS2 nanohybrids are seven times more efficient with respect to single MoS2 because of the formation of local p-n MoS 2/N- doped graphene nanojunctions, which allow an efficient charge carrier separation.
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Structure of Reduced Ultrathin TiOx Polar Films on Pt(111)

TL;DR: In this article, the structure of well-ordered reduced TiOx nanolayers on Pt(111, prepared by reactive evaporation of Ti in an oxygen background and postannealed in different conditions, is discussed.
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Laser generation of iron-doped silver nanotruffles with magnetic and plasmonic properties

TL;DR: In this paper, the synthesis of Fe-doped Ag NPs via laser ablation in liquid solution bypassing thermodynamic constraints is described, which can be used for nanophotonics, nanomedicine, and catalysis.