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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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Suppressed charge carrier trap states and double photon absorption in substitutional Ta-doped TiO2-NT array

TL;DR: In this paper , the effect of double-photon absorption on perovskite active layers (PALs) was investigated under a modulated sinusoidal visible light with small amplitude, which can perturb the transport dynamics of photo-induced charge carriers.
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Bonding in square-planar MCl(CX)[P(i-Pr)3]2 complexes of rhodium and iridium (X = O and CH2) studied by UV photoelectron spectroscopy and DV-Xα calculations

TL;DR: In this article, the electronic structure of squareplanar rhodium and iridium complexes of general composition trans-MCl(CX)[P(i-Pr)3]2 (X = O and CH2) has been investigated by means of gas-phase UV photoelectron spectroscopy (UPS).
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Toward sustainable and effective HER electrocatalysts: strategies for the basal plane site activation of transition metal dichalcogenides

TL;DR: In this paper , transition metal dichalcogenides (TMDCs) are used as catalysts to produce green hydrogen and a promising route to improve their performances consists of activating their basal plane, both increasing the number of active sites or their specific activity.
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A molecular cluster approach to the electronic structure of anomalous muonium in diamond

TL;DR: In this paper, a detailed analysis of the muonium-host interaction is reported, where first-principle discrete variational (DV) Xα cluster calculations are used to reproduce muon spin rotation (μSR) experimental data relative to anomalous Muonium in diamond.
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A theoretical and experimental investigation of the electronic structure of α-Fe2O3 thin films

TL;DR: In this article, the ground and excited states of α-Fe 2 O 3 have been investigated by determining the spin-polarized wavefunctions and eigenvalues of an embedded Fe 2 O 9 12- cluster using the discrete variational X α method.