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Cutting-edge X-ray methods and models for the understanding of surface site reactivity in heterogene-ous catalysts and sensors

Project
We propose the development of a revolutionary instrumentation on the APE-HE beamline @ Elettra synchrotron allowing soft X-ray XAS (in electron yield mode) to be performed under 1 bar at both the K-edge of a typical atom present in the molecule (C, N, O, F) and the L2 and L3 edges of the first row transition metals (from Sc to Zn). The consortium (4 Uni + 1 CNR lab @ Elettra) will achieve the self-consistent loop that includes sample synthesis, instrumental implementation, structural, electronic and vibrational characterization and modeling. The structure of the adsorbing site will be determined by XRPD and confirmed by periodic DFT calculations, which outputs will be used to compute the soft X-ray XAS spectra (APE-HE), the hard X-ray XAS spectra at the metal K-edge (other beamlines) and the IR and UV-Vis spectra (lab.).
  • Academic Signature
  • Overview
  • Research Areas
  • Publications

Academic Signature

Il servizio di classificazione ACADEMIC SIGNATURE รจ IN BETA TESTING e i risultati potrebbero non essere corretti

Academic Signature (7)

Adsorption
Chemical Phenomena
X-Ray Diffraction
Chemical Phenomena
X-Ray Diffraction
Crystallography
Adsorption
Physical Phenomena
Density Functional Theory
Quantum Theory
X-Ray Diffraction
Scattering, Radiation
X-Ray Absorption Spectroscopy
Spectrum Analysis

Overview

Contributors

COLOMBO VALENTINA   Scientific Manager  

Departments involved

Dipartimento di Chimica   Principale  

Type

PRIN2017 - PRIN bando 2017

Funder

MINISTERO DELL'ISTRUZIONE E DEL MERITO
External Organization Funding Organization

Date/time interval

June 5, 2019 - June 4, 2022

Project duration

36 months

Research Areas

Concepts


Settore CHIM/03 - Chimica Generale e Inorganica

Publications

Outputs

Stabilization by Configurational Entropy of the Cu(II) Active Site during CO Oxidation on Mg0.2Co0.2Ni0.2Cu0.2Zn0.2O 
THE JOURNAL OF PHYSICAL CHEMISTRY LETTERS
NLM (MEDLINE)
2020
Academic Article
Partially Open Access
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