About: Naturally irradiated fluorite as a historic violet pigment: Raman spectroscopic and X-ray diffraction study     Goto   Sponge   NotDistinct   Permalink

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Description
  • Naturally irradiated violet fluorite, a cubic CaF2mineral, is a rare historic pigment. Its documented usage in Europe stretches from ca. 1450 to ca. 1550. The intensely coloured violetish black naturally irradiated fluorite is commonly called antozonite, which is only vaguely defined based on its dark colour and specific odour emanated during grinding. In the published literature, there have been some discrepancies about its Raman spectrum. Therefore, sixteen samples of antozonite were analysed by Raman (micro-)spectroscopy using five different excitation laser wavelengths (445, 532, 633, 780 and 1064 nm), which revealed specific bands located below 500 cm-1 probably related to radiation-caused defects. Their intensity increasedwith increasing violet colour saturation, thus providing a specification for antozonite’s definition. Spectra excited at 445 and 780 nmcontained also numerous broad bands above 500 cm-1, which seem to be caused by the presence of rare earth elements. The structural damage of antozonite samples has been assessed by X-ray diffraction and related to their lightness using analysis of image histograms. The obtained results have been applied in the analysis of micro-samples of a Late Gothic altarpiece located in an Italian Court in UNESCO city Kutná Hora, Czech Republic, which contained exceptionally large grains of deep violet fluorite identified as antozonite. Copyright (c) 2015 John Wiley & Sons, Ltd.
  • Naturally irradiated violet fluorite, a cubic CaF2mineral, is a rare historic pigment. Its documented usage in Europe stretches from ca. 1450 to ca. 1550. The intensely coloured violetish black naturally irradiated fluorite is commonly called antozonite, which is only vaguely defined based on its dark colour and specific odour emanated during grinding. In the published literature, there have been some discrepancies about its Raman spectrum. Therefore, sixteen samples of antozonite were analysed by Raman (micro-)spectroscopy using five different excitation laser wavelengths (445, 532, 633, 780 and 1064 nm), which revealed specific bands located below 500 cm-1 probably related to radiation-caused defects. Their intensity increasedwith increasing violet colour saturation, thus providing a specification for antozonite’s definition. Spectra excited at 445 and 780 nmcontained also numerous broad bands above 500 cm-1, which seem to be caused by the presence of rare earth elements. The structural damage of antozonite samples has been assessed by X-ray diffraction and related to their lightness using analysis of image histograms. The obtained results have been applied in the analysis of micro-samples of a Late Gothic altarpiece located in an Italian Court in UNESCO city Kutná Hora, Czech Republic, which contained exceptionally large grains of deep violet fluorite identified as antozonite. Copyright (c) 2015 John Wiley & Sons, Ltd. (en)
Title
  • Naturally irradiated fluorite as a historic violet pigment: Raman spectroscopic and X-ray diffraction study
  • Naturally irradiated fluorite as a historic violet pigment: Raman spectroscopic and X-ray diffraction study (en)
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  • Naturally irradiated fluorite as a historic violet pigment: Raman spectroscopic and X-ray diffraction study
  • Naturally irradiated fluorite as a historic violet pigment: Raman spectroscopic and X-ray diffraction study (en)
skos:notation
  • RIV/60461446:52810/15:#0000168!RIV15-GA0-52810___
http://linked.open...avai/riv/aktivita
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  • I, P(GAP103/12/2211)
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  • 2
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  • 302
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  • RIV/60461446:52810/15:#0000168
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  • fluorite; pigment; fluorescence bands; diffraction lines broadening; irradiation (en)
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  • US - Spojené státy americké
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  • [31D6F2ABB90F]
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  • Journal of Raman Spectroscopy
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  • 46
http://linked.open...iv/tvurceVysledku
  • Bezdička, Petr
  • Hradil, David
  • Němec, Ivan
  • Čermáková, Zdeňka
  • Blažek, Jan
  • Šrein, Vladimír
  • Hradilová, Janka
http://linked.open...ain/vavai/riv/wos
  • 000349891900006
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  • 0377-0486
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  • 10.1002/jrs.4627
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  • 52810
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