Klimt artwork: red-pigment material investigation by backscattering Fe-57 Mössbauer spectroscopy, SEM and p-XRF

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autoren

  • Robert Lehmann
  • Dagmar Wengerowsky
  • Heike J. Schmidt
  • Mahesh Kumar
  • André Niebur
  • B. F.O. Costa
  • Folke Enno Dencker
  • G. Klingelhöfer
  • Ralf Sindelar
  • Franz Renz

Externe Organisationen

  • University of Coimbra
  • Johannes Gutenberg-Universität Mainz
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Details

OriginalspracheEnglisch
Seiten (von - bis)450-455
Seitenumfang6
FachzeitschriftScience and Technology of Archaeological Research
Jahrgang3
Ausgabenummer2
PublikationsstatusVeröffentlicht - 15 Dez. 2017

Abstract

Material tests were performed on a rediscovered Klimt-artwork “Trompetender Putto”. We performed studies on the red colored spots, mainly taken from non-restored parts. MIMOS II Fe-57 Mössbauer spectroscopy (novelty in art-pigment analysis) mainly reveals haematite and crystallized goethite in red colors. Electron microscopy can identify various layers of the original and overpainting of an artwork. The number of layers fluctuates between three and four chemically painted areas. The portable X-ray fluorescence analysis enables to reduce the pigment list to containing mercury (cinnabar), lead, zinc, iron and titanium. Infrared-light-irradiation visualizes the different age of the pigments.

ASJC Scopus Sachgebiete

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Klimt artwork: red-pigment material investigation by backscattering Fe-57 Mössbauer spectroscopy, SEM and p-XRF. / Lehmann, Robert; Wengerowsky, Dagmar; Schmidt, Heike J. et al.
in: Science and Technology of Archaeological Research, Jahrgang 3, Nr. 2, 15.12.2017, S. 450-455.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Lehmann, R, Wengerowsky, D, Schmidt, HJ, Kumar, M, Niebur, A, Costa, BFO, Dencker, FE, Klingelhöfer, G, Sindelar, R & Renz, F 2017, 'Klimt artwork: red-pigment material investigation by backscattering Fe-57 Mössbauer spectroscopy, SEM and p-XRF', Science and Technology of Archaeological Research, Jg. 3, Nr. 2, S. 450-455. https://doi.org/10.1080/20548923.2017.1399332
Lehmann, R., Wengerowsky, D., Schmidt, H. J., Kumar, M., Niebur, A., Costa, B. F. O., Dencker, F. E., Klingelhöfer, G., Sindelar, R., & Renz, F. (2017). Klimt artwork: red-pigment material investigation by backscattering Fe-57 Mössbauer spectroscopy, SEM and p-XRF. Science and Technology of Archaeological Research, 3(2), 450-455. https://doi.org/10.1080/20548923.2017.1399332
Lehmann R, Wengerowsky D, Schmidt HJ, Kumar M, Niebur A, Costa BFO et al. Klimt artwork: red-pigment material investigation by backscattering Fe-57 Mössbauer spectroscopy, SEM and p-XRF. Science and Technology of Archaeological Research. 2017 Dez 15;3(2):450-455. doi: 10.1080/20548923.2017.1399332
Lehmann, Robert ; Wengerowsky, Dagmar ; Schmidt, Heike J. et al. / Klimt artwork : red-pigment material investigation by backscattering Fe-57 Mössbauer spectroscopy, SEM and p-XRF. in: Science and Technology of Archaeological Research. 2017 ; Jahrgang 3, Nr. 2. S. 450-455.
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abstract = "Material tests were performed on a rediscovered Klimt-artwork “Trompetender Putto”. We performed studies on the red colored spots, mainly taken from non-restored parts. MIMOS II Fe-57 M{\"o}ssbauer spectroscopy (novelty in art-pigment analysis) mainly reveals haematite and crystallized goethite in red colors. Electron microscopy can identify various layers of the original and overpainting of an artwork. The number of layers fluctuates between three and four chemically painted areas. The portable X-ray fluorescence analysis enables to reduce the pigment list to containing mercury (cinnabar), lead, zinc, iron and titanium. Infrared-light-irradiation visualizes the different age of the pigments.",
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AU - Niebur, André

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AU - Dencker, Folke Enno

AU - Klingelhöfer, G.

AU - Sindelar, Ralf

AU - Renz, Franz

N1 - Funding information: We thank and acknowledge receiving financial support from (in alphabetical order), Hannover School of Nanotechnology (HSN), Hochschule Hannover (HsH), Laboratory of Nano and Quantum Engineering (LNQE) and the Leibniz Univer-sität Hannover (LUH, ZFM).

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