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Li ZY, Zhang HX, He TS, Jiang HX, Liu XW, Zhu LN, Li XZ, Kong DM. A multifunctional and water-stable Cd (II) coordination polymer: sensitive detection of Roxarsone, Fe3+, CrO42- and Cr2O72- in aqueous media. Inorganica Chim Acta 2022. [DOI: 10.1016/j.ica.2022.121334] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 12/12/2022]
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Kocan F, Hicsonmez U. Low-temperature synthesis of SrCrO 4 nanorod particles from strontium sulfate. J DISPER SCI TECHNOL 2020. [DOI: 10.1080/01932691.2019.1626244] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/26/2022]
Affiliation(s)
- Feray Kocan
- Faculty of Arts and Sciences, Chemistry Department, Manisa Celal Bayar University , Yunusemre , Manisa , Turkey
| | - Umran Hicsonmez
- Faculty of Arts and Sciences, Chemistry Department, Manisa Celal Bayar University , Yunusemre , Manisa , Turkey
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Marinova D, Karadjova V, Stoilova D. Infrared spectroscopic study of SO₄²⁻ ions included in M'₂M''(SeO₄)₂⋅6H₂O (Me'=K, NH₄⁺; M''=Mg, Co, Ni, Cu, Zn) and NH₄⁺ ions included in K₂M(XO₄)₂⋅6H₂O (X=S, Se; M''=Mg, Co, Ni, Cu, Zn). SPECTROCHIMICA ACTA. PART A, MOLECULAR AND BIOMOLECULAR SPECTROSCOPY 2015; 134:526-534. [PMID: 25048287 DOI: 10.1016/j.saa.2014.06.114] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.4] [Reference Citation Analysis] [Abstract] [Key Words] [MESH Headings] [Track Full Text] [Subscribe] [Scholar Register] [Received: 01/08/2013] [Accepted: 06/17/2014] [Indexed: 06/03/2023]
Abstract
Infrared spectra of Tutton compounds, M'₂M''(SeO₄)₂⋅6H₂O (M'=K, NH₄⁺; M''=Mg, Co, Ni, Cu, Zn; X=S, Se), as well as those of SO₄²⁻ guest ions included in selenate host lattices and of NH4(+) guest ions included in potassium host lattices are presented and discussed in the regions of ν₃ and ν₁ of SO₄²⁻ guest ions, ν₄ of NH₄⁺ guest ions and water librations. The SO₄²⁻ guest ions matrix-isolated in selenate matrices (approximately 2 mol%) exhibit three bands corresponding to ν₃ and one band corresponding to ν₁ in good agreement with the low site symmetry C₁ of the host selenate ions. When the larger SO₄²⁻ ions are replaced by the smaller SO₄²⁻ ions the mean values of the asymmetric stretching modes ν₃ of the included SO₄²⁻ ions are slightly shifted to lower frequencies as compared to those of the same ions in the neat sulfate compounds due to the smaller repulsion potential of the selenate matrices (larger unit-cell volumes of the selenates). It has been established that the extent of energetic distortion of the sulfate ions matrix-isolated in the ammonium selenates as deduced from the values of Δν₃ and Δν₃/νc is stronger than that of the same ions matrix-isolated in the potassium selenates due to the formation of hydrogen bonds between the SO₄²⁻ guest ions with both the water molecules in the host compounds and the NH₄⁺ host ions (for example, Δν₃ of the sulfate guest ions have values of 30 and 51 cm(-1) in the nickel potassium and ammonium compounds, and 33 and 49 cm(-1) in the zinc potassium and ammonium compounds, respectively). The infrared spectra of ammonium doped potassium sulfate matrices show three bands corresponding to Δν₄ of the included ammonium ions in agreement with the low site symmetry C₁ of the host potassium ions. However, the inclusion of ammonium ions in selenate matrices (with exception of the magnesium compound) leads to the appearance of four bands in the region of ν₄. At that stage of our knowledge we assume that some kind of disorder of the ammonium ions included in selenate lattices occurs due to the different proton acceptor capability of the SO₄²⁻ and SO₄²⁻ ions. The latter ions are known to exhibit stronger proton acceptor abilities. This fact will facilitate the formation of polyfurcate hydrogen bonds of the ammonium ions in the selenate matrices, thus leading to increasing in the coordination number of these ions, i.e. to a disorder of the ammonium guest ions. The strength of the hydrogen bonds formed in the title Tutton compounds as well as that of the hydrogen bonds in potassium compounds containing isomorphously included ammonium ions as deduced from the wavenumbers of the water librations are also discussed. The bands corresponding to water librations in the spectra of the mixed crystals K₁.₈(NH₄)₀.₂M(XO₄)₂⋅6H₂O (M=Mg, Co, Ni, Cu, Zn; X=S, Se) broaden and shift to lower frequencies as compared to those of the potassium host compounds, thus indicating that weaker hydrogen bonds are formed in the mixed crystals. These spectroscopic findings are owing to the decrease in the proton acceptor capacity of the SO₄²⁻ and SO₄²⁻ ions due to the formation of hydrogen bonds between the host anions and the guest ammonium cations additionally to water molecules (anti-cooperative or proton acceptor competitive effect). Furthermore, the band shifts in the spectra of the selenate matrices are generally larger than those observed in the spectra of the respective sulfates due to the stronger proton acceptor ability of the selenate ions.
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Affiliation(s)
- D Marinova
- Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria
| | - V Karadjova
- Department of Inorganic Chemistry, University of Chemical Technology and Metallurgy, 8 Kliment Ohridski Str., 1756 Sofia, Bulgaria
| | - D Stoilova
- Institute of General and Inorganic Chemistry, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
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Monico L, Janssens K, Miliani C, Brunetti BG, Vagnini M, Vanmeert F, Falkenberg G, Abakumov A, Lu Y, Tian H, Verbeeck J, Radepont M, Cotte M, Hendriks E, Geldof M, van der Loeff L, Salvant J, Menu M. Degradation Process of Lead Chromate in Paintings by Vincent van Gogh Studied by Means of Spectromicroscopic Methods. 3. Synthesis, Characterization, and Detection of Different Crystal Forms of the Chrome Yellow Pigment. Anal Chem 2012; 85:851-9. [DOI: 10.1021/ac302158b] [Citation(s) in RCA: 80] [Impact Index Per Article: 6.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/28/2022]
Affiliation(s)
- Letizia Monico
- Centre SMAArt and Dipartimento
di Chimica, Università degli Studi di Perugia, via Elce di Sotto 8, I-06123 Perugia, Italy
- Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Koen Janssens
- Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Costanza Miliani
- Istituto
CNR di Scienze e Tecnologie
Molecolari (CNR-ISTM), c/o Dipartimento di Chimica, Università degli Studi di Perugia, via Elce di Sotto 8, I-06123
Perugia, Italy
| | - Brunetto Giovanni Brunetti
- Centre SMAArt and Dipartimento
di Chimica, Università degli Studi di Perugia, via Elce di Sotto 8, I-06123 Perugia, Italy
- Istituto
CNR di Scienze e Tecnologie
Molecolari (CNR-ISTM), c/o Dipartimento di Chimica, Università degli Studi di Perugia, via Elce di Sotto 8, I-06123
Perugia, Italy
| | - Manuela Vagnini
- Associazione Laboratorio di Diagnostica per i Beni Culturali, piazza Campello
2, I-06049 Spoleto (Perugia), Italy
| | - Frederik Vanmeert
- Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Gerald Falkenberg
- Hamburger Synchrotronstrahlungslabor HASYLAB at Deutsches Elektronensynchrotron DESY, Notkestr.
85, D-22603 Hamburg, Germany
| | - Artem Abakumov
- Department
of Physics (EMAT), University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Yinggang Lu
- Department
of Physics (EMAT), University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - He Tian
- Department
of Physics (EMAT), University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Johan Verbeeck
- Department
of Physics (EMAT), University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Marie Radepont
- Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
- Laboratoire d’Archéologie
Moléculaire et Structurale, CNRS UMR8220, 3, rue Galilée, F-94200 Ivry-Sur-Seine, France
| | - Marine Cotte
- Laboratoire d’Archéologie
Moléculaire et Structurale, CNRS UMR8220, 3, rue Galilée, F-94200 Ivry-Sur-Seine, France
- European Synchrotron Radiation Facility (ESRF), 6, rue Jules Horowitz, F-38000
Grenoble, France
| | - Ella Hendriks
- Van Gogh Museum, Paulus Potterstraat 7, 1070 AJ Amsterdam,
The Netherlands
| | - Muriel Geldof
- Movable
Heritage Knowledge
Sector, The Netherlands Cultural Heritage Agency (RCE), Hobbemastraat 22, 1071 ZC Amsterdam, The Netherlands
| | - Luuk van der Loeff
- Conservation Department, Kröller-Müller Museum, Houtkampweg 6,
NL-6731AW Otterlo, The Netherlands
| | - Johanna Salvant
- Centre de Recherche et de Restauration
des Musées de France (C2RMF), Palais du Louvre, Porte des Lions, 14 Quai François Mitterrand, F-75001 Paris,
France
| | - Michel Menu
- Centre de Recherche et de Restauration
des Musées de France (C2RMF), Palais du Louvre, Porte des Lions, 14 Quai François Mitterrand, F-75001 Paris,
France
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Monico L, Janssens K, Miliani C, Van der Snickt G, Brunetti BG, Cestelli Guidi M, Radepont M, Cotte M. Degradation Process of Lead Chromate in Paintings by Vincent van Gogh Studied by Means of Spectromicroscopic Methods. 4. Artificial Aging of Model Samples of Co-Precipitates of Lead Chromate and Lead Sulfate. Anal Chem 2012; 85:860-7. [DOI: 10.1021/ac3021592] [Citation(s) in RCA: 64] [Impact Index Per Article: 4.9] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/28/2022]
Affiliation(s)
- Letizia Monico
- Centre SMAArt and Dipartimento
di Chimica, Università degli Studi di Perugia, via Elce di Sotto 8, I-06123 Perugia, Italy
- Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Koen Janssens
- Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Costanza Miliani
- Istituto
CNR di Scienze e Tecnologie
Molecolari (CNR-ISTM), c/o Dipartimento di Chimica, Università degli Studi di Perugia, via Elce di Sotto 8, I-06123
Perugia, Italy
| | - Geert Van der Snickt
- Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
| | - Brunetto Giovanni Brunetti
- Centre SMAArt and Dipartimento
di Chimica, Università degli Studi di Perugia, via Elce di Sotto 8, I-06123 Perugia, Italy
- Istituto
CNR di Scienze e Tecnologie
Molecolari (CNR-ISTM), c/o Dipartimento di Chimica, Università degli Studi di Perugia, via Elce di Sotto 8, I-06123
Perugia, Italy
| | | | - Marie Radepont
- Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020
Antwerp, Belgium
- Laboratoire
d’Archéologie
Moléculaire et Structurale, CNRS UMR8220, 3, rue Galilée, F-94200 Ivry-Sur-Seine, France
| | - Marine Cotte
- Laboratoire
d’Archéologie
Moléculaire et Structurale, CNRS UMR8220, 3, rue Galilée, F-94200 Ivry-Sur-Seine, France
- European Synchrotron Radiation Facility (ESRF), 6, rue Jules Horowitz, F-38000 Grenoble,
France
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Monico L, Van der Snickt G, Janssens K, De Nolf W, Miliani C, Verbeeck J, Tian H, Tan H, Dik J, Radepont M, Cotte M. Degradation process of lead chromate in paintings by Vincent van Gogh studied by means of synchrotron X-ray spectromicroscopy and related methods. 1. Artificially aged model samples. Anal Chem 2011; 83:1214-23. [PMID: 21314201 DOI: 10.1021/ac102424h] [Citation(s) in RCA: 102] [Impact Index Per Article: 7.3] [Reference Citation Analysis] [Abstract] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/30/2022]
Abstract
On several paintings by artists of the end of the 19th century and the beginning of the 20th Century a darkening of the original yellow areas, painted with the chrome yellow pigment (PbCrO(4), PbCrO(4)·xPbSO(4), or PbCrO(4)·xPbO) is observed. The most famous of these are the various Sunflowers paintings Vincent van Gogh made during his career. In the first part of this work, we attempt to elucidate the degradation process of chrome yellow by studying artificially aged model samples. In view of the very thin (1-3 μm) alteration layers that are formed, high lateral resolution spectroscopic methods such as microscopic X-ray absorption near edge (μ-XANES), X-ray fluorescence spectrometry (μ-XRF), and electron energy loss spectrometry (EELS) were employed. Some of these use synchrotron radiation (SR). Additionally, microscopic SR X-ray diffraction (SR μ-XRD), μ-Raman, and mid-FTIR spectroscopy were employed to completely characterize the samples. The formation of Cr(III) compounds at the surface of the chrome yellow paint layers is particularly observed in one aged model sample taken from a historic paint tube (ca. 1914). About two-thirds of the chromium that is present at the surface has reduced from the hexavalent to the trivalent state. The EELS and μ-XANES spectra are consistent with the presence of Cr(2)O(3)·2H(2)O (viridian). Moreover, as demonstrated by μ-XANES, the presence of another Cr(III) compound, such as either Cr(2)(SO(4))(3)·H(2)O or (CH(3)CO(2))(7)Cr(3)(OH)(2) [chromium(III) acetate hydroxide], is likely.
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Affiliation(s)
- Letizia Monico
- Dipartimento di Chimica, Università degli Studi di Perugia, Perugia, Italy
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Structural and spectroscopic parameters of distortion in [Cu(bpy)2(O2SO2)]·CH3OH and [Cu(bpy)3][SO4]·7.5H2O – Synthesis, crystal structure, spectroscopic and magnetic properties. Polyhedron 2011. [DOI: 10.1016/j.poly.2011.03.013] [Citation(s) in RCA: 9] [Impact Index Per Article: 0.6] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/17/2022]
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Marinova D, Georgiev M, Stoilova D. Vibrational behavior of matrix-isolated ions in Tutton compounds. II. Infrared spectroscopic study of and ions included in copper sulfates and selenates. J Mol Struct 2009. [DOI: 10.1016/j.molstruc.2009.09.023] [Citation(s) in RCA: 20] [Impact Index Per Article: 1.3] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/29/2022]
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Cis-coordination of the chromate anions in helical Co/Ni block-type polymeric systems. Structural and spectroscopic characteristics of catena(μ-CrO4-O,O′)[Co(HIm)3H2O] and catena(μ-CrO4-O,O′)[Co0.43Ni0.57(HIm)3H2O]. Struct Chem 2006. [DOI: 10.1007/s11224-006-9100-7] [Citation(s) in RCA: 4] [Impact Index Per Article: 0.2] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/25/2022]
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