In-situ and operando Grazing Incidence XAS: a novel set-up and its application to model Pd electrodes for alcohols oxidation

Author:

Berretti Enrico12,Giaccherini Andrea3,Dell’Aquila Vincenzo4,Di Benedetto Francesco5,Montegrossi Giordano6,Lepore Giovanni Orazio7,Innocenti Massimo4,D’Acapito Francesco8,Vizza Francesco1,Lavacchi Alessandro1

Affiliation:

1. Institute for the Chemistry of Organometallic Compounds , 9327 CNR-ICCOM , Via Madonna del Piano n.10 , Sesto Fiorentino , 50019 , Italy

2. INSTM , National Interuniversity Consortium of Materials Science and Technology , Via G. Giusti n.9 , 50121 Firenze , Italy

3. Industrial Engineering Department (DIEF) , 9300 University of Florence , Via di S. Marta n.3 , 50139 , Firenze , Italy

4. Chemistry Department , 9300 University of Florence , Via della Lastruccia n.3 , Sesto Fiorentino (Florence) 50019 , Italy

5. Department of Physics and Earth Science , 9299 University of Ferrara , Via Saragat n.1 , 44122 , Ferrara , Italy

6. Institute of Geosciences and Earth Resources , 9327 CNR-IGG , Via Giuseppe Moruzzi n.1 , 44121 , Pisa , Italy

7. Earth Sciences Department (DST) , 9300 University of Florence , Via Giorgio la Pira n.4 , 50121 , Firenze , Italy

8. Materials Foundry, ESRF , 9327 CNR-IOM-OGG , Avenue des Martyrs 71 , 38043 , Grenoble , France

Abstract

Abstract In this article, we present an in-situ and operando time-resolved X-ray Absorption Spectroscopy (XAS) technique which exploits a combination of Grazing Incidence XAS (GIXAS) and Fixed Energy X-ray Absorption Voltammetry (FEXRAV), the Grazing Incidence FEXRAV (GI-FEXRAV). A case-study is also outlined. Palladium ultra-low loadings were deposited above Au polycrystalline iso-oriented substrates adopting three different deposition methods: surface-controlled electrochemical methods, direct electrodeposition, and physical vapour deposition (PVD). These catalytical surfaces were prepared for the investigation by GI-FEXRAV of the Pd oxidation/dissolution phenomenon that could occur when the metal is used in the anodic compartment of Direct Alcohol Fuel Cells (DAFCs) or in electrochemical reformers. Moreover, we report a robust, low cost and versatile procedure to obtain wide and flat iso-oriented gold substrates that can mimic monocrystalline gold (1 1 1) in the electrochemical response. The use of GI-FEXRAV for the operando characterization of the catalysts, in conjunction with the designed experimental cell and our flexible Au-based electrochemical substrates show an invaluable potential in the operando study of fundamental phenomena in heterogeneous electrocatalysis model systems and, due to its versatility, paves the way to further studies on a wide selection of electrochemical systems.

Funder

POR H2 AdP MMES/ENEA

Made in Italy – Circular and Sustainable (MICS) Extended Partnership

Ministero dell’Università e della Ricerca

European Synchrotron Radiation Facility

Ministero dell’Istruzione, dell’Università e della Ricerca

Publisher

Walter de Gruyter GmbH

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