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Antibacterial behavior of copper glazes: effect of copper(II) oxide concentrations and sintering atmospheres
Junghoon Choi, Jinho Kim, Kyusung Han, Ungsoo Kim
J. Korean Ceram. Soc.. 2021;58(3):287-296.   Published online 2021 May 31    DOI: https://doi.org/10.1007/s43207-021-00112-w

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Antibacterial behavior of copper glazes: effect of copper(II) oxide concentrations and sintering atmospheres
Journal of the Korean Ceramic Society. 2021;58(3):287-296   Crossref logo
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Effect of sintering atmospheres on structure and properties of copper alloys
Metal Powder Report. 1999;54(4):39-40   Crossref logo
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ChemInform Abstract: THERMAL BEHAVIOR OF SULFATES. VI. CHEMICAL TRANSPORT OF COPPER SULFATE, COPPER OXIDE SULFATE (CU2OSO4) AND COPPER(II) OXIDE
Chemischer Informationsdienst. 1983;14(29):   Crossref logo
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Effect of copper coating on consolidation and sintering of copper-graphite composites
Metal Powder Report. 1998;53(10):33   Crossref logo
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Effect of copper particle size on sintering of metal injection moulded tungsten-copper
Metal Powder Report. 1997;52(3):42   Crossref logo
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Sintering atmospheres for iron-carbon-copper parts
Metal Powder Report. 1996;51(12):38   Crossref logo
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Investigation of structural, optical, antibacterial, and dielectric properties of V-doped copper oxide thin films: Comparison with undoped copper oxide thin films
Advanced Powder Technology. 2021;   Crossref logo
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ChemInform Abstract: THE APPLICATION OF MOESSBAUER SPECTROSCOPY TO THE STUDY OF THE INTERACTION OF THE COPPER(II) OXIDE-IRON OXIDE (FE3O4), COPPER(I) OXIDE-IRON OXIDE (FE3O4), AND COPPER(I) OXIDE-ZINC OXIDE-IRON OXIDE (FE3O4) SYSTEMS
Chemischer Informationsdienst. 1980;11(9):   Crossref logo
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Characteristics of Anodically Electrolyzed Water — Dissolution Behavior of Copper or Copper Oxide Film
Metal Finishing. 2013;111(6):20-42   Crossref logo
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Chemical States of Copper and Tin in Copper Glazes Fired under Various Atmospheres
Journal of the American Ceramic Society. 1989;72(1):16-19   Crossref logo
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