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Dive into the research topics where Sonia Pin is active.

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Featured researches published by Sonia Pin.


Inorganic Chemistry | 2011

EXAFS-XANES evidence of in situ cesium reduction in Cs-Ru/C catalysts for ammonia synthesis.

Ilenia Rossetti; Laura Sordelli; Paolo Ghigna; Sonia Pin; Marco Scavini; Lucio Forni

We present here a X-ray absorption spectroscopy (XAS) investigation on the local chemical order and electronic structure of Cs and Ba, promoters of the Ru/C catalysts for ammonia synthesis that attracted interest because of highly increased productivity. The role of the promoters is still largely unclear, although indirect evidence for Cs partial reduction has been obtained by this and other groups. Our XAS analysis with in situ H(2) reduction directly supports the partial Cs reduction in the promoted Ru/C catalysts, depending on the presence of Ru and on the graphitization degree of the support. Higher coordination of Ba was observed with respect to Cs in the reduced samples, without evidence of heavy atoms (Ru, Cs, and Ba) in the surroundings. Because of the strong electropositive nature of Cs, direct experimental evidence of its partial reduction is of outstanding significance also for other applications.


Physical Chemistry Chemical Physics | 2010

μ-XANES mapping of buried interfaces: pushing microbeam techniques to the nanoscale

Paolo Ghigna; Sonia Pin; Giorgio Spinolo; Mark A. Newton; Michele Zema; Serena C. Tarantino; Giancarlo Capitani; Francesco Tatti

A specific preparation procedure makes possible to obtain in one shot structural and compositional characterization of a buried interface at the nanometre scale using a micrometre scale probe. A specific example based on dispersive mu-XAS, micro X-ray absorption spectroscopy, shows that nearly-atomic scale changes in local structure, composition, as well as local disorder are faithfully detected. The approach could in principle be applied to any probe with a micrometric resolution.


Journal of Synchrotron Radiation | 2014

Studying the surface reaction between NiO and Al2O3 via total reflection EXAFS (ReflEXAFS).

Tommaso Costanzo; Federico Benzi; Paolo Ghigna; Sonia Pin; Giorgio Spinolo; F D'Acapito

The reaction between NiO and (0001)- and (1102)-oriented Al2O3 single crystals has been investigated on model experimental systems by using the ReflEXAFS technique. Depth-sensitive information is obtained by collecting data above and below the critical angle for total reflection. A systematic protocol for data analysis, based on the recently developed CARD code, was implemented, and a detailed description of the reactive systems was obtained. In particular, for (1102)-oriented Al2O3, the reaction with NiO is almost complete after heating for 6 h at 1273 K, and an almost uniform layer of spinel is found below a mixed (NiO + spinel) layer at the very upmost part of the sample. In the case of the (0001)-oriented Al2O3, for the same temperature and heating time, the reaction shows a lower advancement degree and a residual fraction of at least 30% NiO is detected in the ReflEXAFS spectra.


Acta Crystallographica Section A | 2014

Early stages of solid state reactions: insights from micro-XRD and XAS

Serena C. Tarantino; Paolo Ghigna; Elisabetta Achilli; Sonia Pin; Michele Zema; Giorgio Spinolo

The mechanism of a solid state reaction in its early stages can be explored by investigating the time evolution of a model reactive system made of a thin layer of one reagent deposited onto a single crystal slab of the other reagent. Insights can be retrieved by comparing results at both local and long length scales obtained with films of different thicknesses and deposited onto different crystal orientations. In particular, reaction between ZnO and Al2O3 has been chosen, as the spinel-forming reactions have been and still remain a model experimental system for investigating solid state reactions and because in the ZnO/Al2O3 phase diagram, spinel is the only stable compound. The reaction initial steps have been investigated by using synchrotron X-ray diffraction, atomic force microscopy and X-ray absorption spectroscopy at the Zn-K edge starting from zincite films deposited onto (110)-, (012)-, (001)oriented corundum single crystals [1,2]. The reaction eventually yields ZnAl2O4 spinel but via a complex mechanism involving side and intermediate non-equilibrium compounds that do not appear in the equilibrium phase diagram of the pseudo-binary system. Spinel, when occurs, is polycrystalline at the end but initially forms with a few preferred orientations. Intermediate phases form before and in parallel with the growth of the spinel. Their number, composition, structure and kinetic role strongly depend on substrate orientation and film thickness. A more detailed understanding of the reactivity can be inferred by comparing EXAFS results to those of grazing incidence diffraction experiments of the films deposited on the (001) face of Al2O3 and heat-treated at 1000 °C for different lengths of time. Information on the structure of the intermediate phases is given and results are discussed by comparing different films thickness to clarify the role of interfacial free energy and crystallographic orientation.


Optical Materials | 2011

Local structure of the Ce3+ ion in the yellow emitting phosphor YAG:Ce

Paolo Ghigna; Sonia Pin; Cees Ronda; Adolfo Speghini; Fabio Piccinelli; Marco Bettinelli


Journal of Physics and Chemistry of Solids | 2007

?Unusual Ln3+ substitutional defects?: The local chemical environment of Eu3+ and Er3+ in nanocrystalline Nb2O5 by Ln-K edge EXAFS

Paolo Ghigna; Sonia Pin; Adolfo Speghini; Marco Bettinelli; Taiju Tsuboi


Journal of Solid State Chemistry | 2009

Nanoscale formation of new solid-state compounds by topochemical effects: The interfacial reactions ZnO with Al2O3 as a model system

Sonia Pin; Paolo Ghigna; Giorgio Spinolo; Eliana Quartarone; Piercarlo Mustarelli; Francesco D’Acapito; Andrea Migliori; Gianluca Calestani


Journal of Physical Chemistry C | 2013

Role of Interfacial Energy and Crystallographic Orientation on the Mechanism of the ZnO + Al2O3 → ZnAl2O4 Solid-State Reaction: I. Reactivity of Films Deposited onto the Sapphire (110) and (012) Faces

Sonia Pin; Marco Suardelli; Francesco D’Acapito; Giorgio Spinolo; Michele Zema; Serena C. Tarantino; Paolo Ghigna


Journal of Physical Chemistry C | 2012

Mechanisms of Reactions in the Solid State: (110) Al2O3 + (001) ZnO Interfacial Reaction

Sonia Pin; Mark A. Newton; Francesco D’Acapito; Michele Zema; Serena C. Tarantino; Giorgio Spinolo; Roger A. De Souza; Manfred Martin; Paolo Ghigna


Journal of Physical Chemistry C | 2013

Mechanisms of Zinc Oxide Nanocrystalline Thin Film Formation by Thermal Degradation of Metal-Loaded Hydrogels

Ilenia G. Tredici; Alessandro Resmini; Sonia Pin; Paolo Ghigna; Tommaso Rovetta; M. Patrini; Nicola Rotiroti; Monica Dapiaggi; Umberto Anselmi-Tamburini

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Francesco D’Acapito

European Synchrotron Radiation Facility

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Mark A. Newton

European Synchrotron Radiation Facility

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