Jun ware glazes: Chemistry, nanostructure and optical properties

A set of the Classic and official Jun ware shards found at various kilns at Yuzhou (Henan) are analyzed. The blue color and milky appearance of the glazes subject of intense debate as being due to either the glaze nanostructure or chemistry. The presence of submillimetre areas showing different colo...

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Published inJournal of the European Ceramic Society Vol. 38; no. 12; pp. 4290 - 4302
Main Authors Hou, Jiayu, Pradell, Trinitat, Li, Yuan, Miao, Jianmin
Format Journal Article Publication
LanguageEnglish
Published Elsevier Ltd 01.09.2018
Elsevier
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Abstract A set of the Classic and official Jun ware shards found at various kilns at Yuzhou (Henan) are analyzed. The blue color and milky appearance of the glazes subject of intense debate as being due to either the glaze nanostructure or chemistry. The presence of submillimetre areas showing different color and opacity gives to the glazes a three dimensional cloudy sky appearance. Nanostructure and chemistry of the glazes, oxidation state of iron and nature of the copper nanoprecipitates are studied at a submillimetre level. Images of the glaze nanostructures are obtained using a Focus Ion Beam and Scanning Electron Microscope with nanometric resolution. The size and volume fraction of the nanostructures determined by image treatment are related to the chemical composition of the glazes. Differences between kiln productions are found and the origin of the color and opacity of the glazes discussed in terms of the chemistry and nanostructure.
AbstractList A set of the Classic and official Jun ware shards found at various kilns at Yuzhou (Henan) are analyzed. The blue color and milky appearance of the glazes subject of intense debate as being due to either the glaze nanostructure or chemistry. The presence of submillimetre areas showing different color and opacity gives to the glazes a three dimensional cloudy sky appearance. Nanostructure and chemistry of the glazes, oxidation state of iron and nature of the copper nanoprecipitates are studied at a submillimetre level. Images of the glaze nanostructures are obtained using a Focus Ion Beam and Scanning Electron Microscope with nanometric resolution. The size and volume fraction of the nanostructures determined by image treatment are related to the chemical composition of the glazes. Differences between kiln productions are found and the origin of the color and opacity of the glazes discussed in terms of the chemistry and nanostructure. Peer Reviewed
A set of the Classic and official Jun ware shards found at various kilns at Yuzhou (Henan) are analyzed. The blue color and milky appearance of the glazes subject of intense debate as being due to either the glaze nanostructure or chemistry. The presence of submillimetre areas showing different color and opacity gives to the glazes a three dimensional cloudy sky appearance. Nanostructure and chemistry of the glazes, oxidation state of iron and nature of the copper nanoprecipitates are studied at a submillimetre level. Images of the glaze nanostructures are obtained using a Focus Ion Beam and Scanning Electron Microscope with nanometric resolution. The size and volume fraction of the nanostructures determined by image treatment are related to the chemical composition of the glazes. Differences between kiln productions are found and the origin of the color and opacity of the glazes discussed in terms of the chemistry and nanostructure.
Author Li, Yuan
Hou, Jiayu
Miao, Jianmin
Pradell, Trinitat
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  surname: Pradell
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  surname: Miao
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  organization: The Palace Museum and Key Scientific Research Base of Ancient Ceramics, State Administration of Cultural Heritage, Beijing, China
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Universitat Politècnica de Catalunya. GCM - Grup de Caracterització de Materials
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Issue 12
Keywords Liquid immiscibility
Absorption
Jun ware
Scattering
Color
Nanostructure
Glaze
Language English
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Snippet A set of the Classic and official Jun ware shards found at various kilns at Yuzhou (Henan) are analyzed. The blue color and milky appearance of the glazes...
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SubjectTerms Absorption
Ceramic materials
Color
Enginyeria dels materials
Glaze
Jun ware
Liquid immiscibility
Materials ceràmics
Nanostructure
Scattering
Àrees temàtiques de la UPC
Title Jun ware glazes: Chemistry, nanostructure and optical properties
URI https://dx.doi.org/10.1016/j.jeurceramsoc.2018.05.010
https://recercat.cat/handle/2072/354178
Volume 38
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