Characterization and utilization of Prussian blue and its pigments

被引:109
|
作者
Grandjean, Fernande [1 ,2 ]
Samain, Louise [2 ]
Long, Gary J. [1 ]
机构
[1] Univ Missouri, Missouri Univ Sci & Technol, Dept Chem, Rolla, MO 65409 USA
[2] Univ Liege, Fac Sci, Sart Tilman B5,B6 & B15, B-4000 Liege, Belgium
关键词
VIBRATIONAL-SPECTRA; PAINT LAYERS; MOSSBAUER; COMPLEXES; REDOX;
D O I
10.1039/c6dt03351b
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
This review deals with our long-range goal of determining why the Prussian blue pigments, typically either the "soluble" KFeIII[Fe-II(CN)(6)]center dot xH(2)O or the alternative "insoluble" Fe4(III)[Fe-II(CN)(6)](3)center dot xH(2)O compounds, used by artists from shortly after the discovery of Prussian blue in 1704 and well into the early twentieth century, often fade when exposed to light. In order to achieve this goal it was decided that first, for comparison purposes, we had to prepare and fully characterize Prussian blues prepared by various, often commercially successful, synthetic methods. The characterization has employed a large variety of modern methods to determine both the stoichiometry of the Prussian blues and the arrangement of the voids found in the latter "insoluble" Prussian blues. The refinement of synchrotron radiation derived X-ray powder diffraction data obtained for a formally soluble and an insoluble Prussian blue required refinement in the Pm (3) over barm space group and lead to the K-1.9[(Fe4Fe3II)-Fe-III(CN)(18)]center dot{1.9 OH + 7.0H(2)O}, 1, and (Fe4Fe3II)-Fe-III (CN)(18)center dot 11.0H(2)O, 2, stoichiometries. The former compound, 1, exhibits an apparently random iron(II) long-range void arrangement, whereas 2 exhibits a more non-random long-range arrangement, however, a pair distribution function analysis indicates a short-range ordering of the voids in both compounds. After further detailed characterization of many Prussian blue samples, painted samples on linen canvas, were subjected to accelerated light exposure for up to 800 hours either as pure Prussian blues or mixed with (PbCO3)(2)Pb(OH)(2), ZnO or TiO2, the white pigments often used by artists to lighten the intense Prussian blue colour. The results indicate that the first two of these white pigments play a significant role in the fading of the colour of Prussian blues. In order to achieve our long-range goal, several Prussian blue samples were prepared from "ancient" recipes published in 1758 and 1779. These so-called "ancient" samples, painted in a dark and a pale blue shade, were also subjected to accelerated light exposure. The colorimetric results, in conjunction with X-ray powder diffraction refinements, pair distribution analysis and Mossbauer spectral results, indicate that, depending on the exact method of ancient preparation, the Prussian blue pigments were sometimes badly contaminated with alumina hydrate and/or ferrihydrite, a contamination which leads to extensive fading or decolourization of the Prussian blue pigments. The presence of ferrihydrite was subsequently confirmed in the study of a surface paint fragment from an eighteenth-century polychrome sculpture.
引用
收藏
页码:18018 / 18044
页数:27
相关论文
共 50 条
  • [21] BEHAVIOR OF PRUSSIAN BLUE DURING ITS INTERACTION WITH OZONE
    REGUERA, E
    FERNANDEZBERTRAN, J
    DIAZ, C
    MOLERIO, J
    HYPERFINE INTERACTIONS, 1992, 73 (3-4): : 285 - 294
  • [22] Prussian blue and its analogues as advanced supercapacitor electrodes
    Emad S.Goda
    Seungho Lee
    Muhammad Sohail
    Kuk Ro Yoon
    Journal of Energy Chemistry , 2020, (11) : 206 - 229
  • [23] Advances of Prussian blue and its analogues in (bio)sensors
    Karyakin, Arkady A.
    CURRENT OPINION IN ELECTROCHEMISTRY, 2017, 5 (01) : 92 - 98
  • [24] Electrochromic bilayers of Prussian blue and its Cr analogue
    Hedley, Luke
    Porteous, Liz
    Hutson, David
    Robertson, Neil
    Johansson, J. Olof
    JOURNAL OF MATERIALS CHEMISTRY C, 2018, 6 (03) : 512 - 517
  • [25] PRUSSIAN BLUE
    Stasio, Marilyn
    NEW YORK TIMES BOOK REVIEW, 2017, 122 (14): : 11 - 11
  • [26] CONTINUOUS PRODUCTION OF BLUE PIGMENTS BY IMMOBILIZED PLANT-CELLS AND CHARACTERIZATION OF THE PIGMENTS
    SONOMOTO, K
    NAKAJIMA, H
    SATO, F
    ICHIMURA, K
    YAMADA, Y
    TANAKA, A
    ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1990, 613 : 542 - 546
  • [27] MOSSBAUER STUDY OF SOLUBLE PRUSSIAN BLUE INSOLUBLE PRUSSIAN BLUE AND TURNBULLS BLUE
    ITO, A
    SUENAGA, M
    ONO, K
    JOURNAL OF CHEMICAL PHYSICS, 1968, 48 (08): : 3597 - &
  • [28] Relationship between the Synthesis of Prussian Blue Pigments, Their Color, Physical Properties, and Their Behavior in Paint Layers
    Samain, Louise
    Grandjean, Fernande
    Long, Gary J.
    Martinetto, Pauline
    Bordet, Pierre
    Strivay, David
    JOURNAL OF PHYSICAL CHEMISTRY C, 2013, 117 (19): : 9693 - 9712
  • [29] Structural Characterization of Maya Blue Analogous Hybrid Pigments
    Dejoie, Catherine
    Martinetto, Pauline
    Dooryhee, Eric
    Bhange, Devendro
    Lepoittevin, Christophe
    Anne, Michel
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2009, 65 : S52 - S52
  • [30] CHARACTERIZATION OF INEQUIVALENT IRON SITES IN PRUSSIAN BLUE BY PHOTOELECTRON SPECTROSCOPY
    WERTHEIM, GK
    ROSENCWAIG, A
    JOURNAL OF CHEMICAL PHYSICS, 1971, 54 (07): : 3235 - +