A combined theoretical and experimental investigation of the electronic and vibrational properties of red lead pigment.
• The optical band gap computed using GW approximation is in excellent agreement with the experimental one • Resonance Raman spectra of minium can be recorded by using the 532 nm laser line • DFT modeling is a valuable tool to study prototypical materials by exploiting structure-properties relations...
| Publicado en: | Journal of Cultural Heritage Vol. 46; pp. 374 - 382 |
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| Autores principales: | , , , , , |
| Formato: | Artículo |
| Publicado: |
Elsevier B.V.
Nov2020
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| Materias: | |
| Acceso en línea: | Ver este registro en EBSCOhost |
| fields | @attributes: recordID: 1 pdfLink: plink: https://search.ebscohost.com/login.aspx?direct=true&db=hlh&AN=147407072&site=ehost-live header: @attributes: shortDbName: hlh uiTerm: 147407072 longDbName: Humanities International Complete uiTag: AN controlInfo: bkinfo: jinfo: jid: 12962074 KK8 jtl: Journal of Cultural Heritage issn: 12962074 maglogo: N pubinfo: dt: Nov2020 vid: 46 pid: 467 pub: Elsevier B.V. artinfo: ui: 147407072 10.1016/j.culher.2020.04.014 ppf: 374 ppct: 8 formats: tig: atl: A combined theoretical and experimental investigation of the electronic and vibrational properties of red lead pigment. aug: au: Amat, Anna Rosi, Francesca Miliani, Costanza Sassi, Paola Paolantoni, Marco Fantacci, Simona affil: Istituto CNR di Scienze e Tecnologie Chimiche Giulio Natta (CNR-SCITEC), via Elce di Sotto 8 06123, Perugia Istituto CNR di Scienze del Patrimonio Culturale (CNR-ISPC), Via Guglielmo Sanfelice, 8 -Naples, Italy Dipartimento di Chimica Biologia e Biotecnologie dell'Università di Perugia, Via Elce di sotto 8, 06123 Perugia, Italy su: Resonance Raman effect Band gaps Lead oxides Raman spectroscopy Density functional theory sug: subj: Resonance Raman effect Band gaps Lead oxides Raman spectroscopy Density functional theory keyword: Computational modelling degradation DFT calculations GW approximation minium pigment resonance Raman spectroscopy ab: • The optical band gap computed using GW approximation is in excellent agreement with the experimental one • Resonance Raman spectra of minium can be recorded by using the 532 nm laser line • DFT modeling is a valuable tool to study prototypical materials by exploiting structure-properties relations The electronic and vibrational properties of red lead pigment, the mixed valence lead oxide compound Pb 3 O 4 , known as minium, have been studied by means of first principle calculations based on Density Functional Theory (DFT) and Fourier Transform–Infra Red (FT-IR) and Raman spectroscopies. The aim of the present investigation is to validate an integrated theoretical-experimental approach for modelling the structural, electronic and spectroscopic properties of minium and to define its structure-properties relationships. The calculated band gap performed using GW approximation is in excellent agreement with the experimental one and improves previous results found in literature. The simulated vibrational IR and Raman spectra are able to reproduce the main features of the experimental spectra and to assign the normal modes related to the experimental bands. The combined theoretical and experimental study of the electronic and vibrational properties of Pb 3 O 4 allows to clarify the mechanism of lead whitening as well as to interpret ambiguous Raman spectra of minium in terms of resonance effects. pubtype: Academic Journal doctype: Article src: R language: English refInfo: copyright: @attributes: flag: Y dt: @attributes: year: 2020 holdings: @attributes: islocal: N |
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