The influence of micronization on the properties of Pr-ZrSiO4 pigment
暂无分享,去创建一个
Pinggen Rao | Yanhui Chu | Yi Zhang | Qing Yang | Chen Pengcheng | D. Guo
[1] A. Han,et al. Synthesis and characterization of environmentally benign inorganic pigments with high NIR reflectance: Lanthanum-doped BiFeO3 , 2018 .
[2] J. Alarcón,et al. V-containing ZrO2 inorganic yellow nano-pigments prepared by hydrothermal approach , 2017 .
[3] Yanmin Wang,et al. Prediction of aggregation behavior of submicron-sized particles of praseodymium-doped zirconium silicate in aqueous suspension by population balance model , 2016 .
[4] Yanmin Wang,et al. Recent development on preparation of ceramic inks in ink-jet printing , 2015 .
[5] M. Dondi,et al. Micronizing ceramic pigments for inkjet printing: Part I. Grindability and particle size distribution , 2015 .
[6] M. Dondi,et al. Micronizing ceramic pigments for inkjet printing: Part II. Effect on phase composition and color , 2015 .
[7] Jin-ho Kim,et al. Recent Advances in the Ink-Jet Printing Ceramic Tile Using Colorant Ceramic-ink , 2013 .
[8] J. Niinimäki,et al. Effect of operational parameters and stress energies on the particle size distribution of TiO2 pigment in stirred media milling , 2013 .
[9] Z. Dohcevic-Mitrovic,et al. Suppression of inherent ferromagnetism in Pr-doped CeO₂ nanocrystals. , 2012, Nanoscale.
[10] Noemí Montoya,et al. Microstructural Evolution from Praseodymium‐Containing Zircon Gels to Prx‐ZrSiO4 Solid Solutions , 2012 .
[11] Noemí Montoya,et al. Synthesis and characterization of praseodymium-containing ZrSiO4 solid solutions from gels , 2011 .
[12] S. Sain,et al. Mechanochemical solid state synthesis of (Cd0.8Zn0.2)S quantum dots: Microstructure and optical characterizations , 2011 .
[13] M. Dondi,et al. CERAMIC PIGMENTS FOR DIGITAL DECORATION INKS : AN OVERVIEW , 2011 .
[14] K. Venkateswarlu,et al. X-ray peak broadening studies of nanocrystalline hydroxyapatite by Williamson-Hall analysis , 2010 .
[15] I. Hutchings. Ink-jet printing for the decoration of ceramic tiles: technology and opportunities , 2010 .
[16] Michele Dondi,et al. Microwave-assisted synthesis of Pr-ZrSiO4, V-ZrSiO4 and Cr-YAlO3 ceramic pigments , 2009 .
[17] Katsuhiko Ariga,et al. X-ray peak broadening analysis in ZnO nanoparticles , 2009 .
[18] Byung-Ha Lee,et al. The Influence of Firing Conditions on the Color Properties of Pr-ZrSiO₄ Pigments Synthesized Using Rice Husk Ash , 2009 .
[19] B. T. Bell. The Development of Colorants for Ceramics , 2008 .
[20] C. Falcony,et al. Photoluminescent emission of Pr3+ ions in different zirconia crystalline forms , 2008 .
[21] C. Decker. The Stability of Zirconium Vanadium and Zirconium Praseodymium Yellow Pigments in a Fast‐Fire System , 2008 .
[22] J. Szpunar,et al. Relationship between microstrain and lattice parameter change in nanocrystalline materials , 2008 .
[23] F. Andreola,et al. Effect of rice husk ash (RHA) in the synthesis of (Pr,Zr)SiO4 ceramic pigment , 2007 .
[24] Chang Woo Kim,et al. Characterization and magnetic behavior of fe and Nd-Fe-B nanoparticles by surfactant-capped high-energy ball mill , 2007 .
[25] J. Ding,et al. Strain-induced high coercivity in CoFe2O4 powders , 2006 .
[26] S. K. Pradhan,et al. Microstructure characterization of nanocrystalline ZrSiO4 synthesized by ball-milling and high-temperature annealing , 2005 .
[27] C. Bowen,et al. Processing and characterisation of Pr–zircon pigment powder , 2005 .
[28] S. Ardizzone,et al. Yellow Pr-zircon pigments: The role of praseodymium and of the mineralizer , 2004 .
[29] T. Ungár. Microstructural parameters from X-ray diffraction peak broadening , 2004 .
[30] R. Borzi,et al. Effects of milling-induced disorder on the lattice parameters and magnetic properties of hematite , 2003 .
[31] S. K. Pradhan,et al. Preparation and microstructure characterization of ball-milled ZrO2 powder by the Rietveld method: monoclinic to cubic phase transformation without any additive , 2002 .
[32] M. Llusar,et al. The nature of Pr-ZrSiO4 yellow ceramic pigment , 2002 .
[33] S. K. Pabi,et al. A mathematical analysis of milling mechanics in a planetary ball mill , 2001 .
[34] L. Lutterotti. Maud: a Rietveld analysis program designed for the internet and experiment integration , 2000 .
[35] A. Ferrari,et al. Environmental Scanning Electron Microscopy (ESEM) Investigation of the Reaction Mechanism in Praseodymium‐Doped Zircon , 2000 .
[36] A. Ferrari,et al. Hyperfine Characterization of Pure and Doped Zircons , 2000 .
[37] C. Serna,et al. The effects of the NaF flux on the oxidation state and localisation of praseodymium in Pr-doped zircon pigments , 1999 .
[38] C. Serna,et al. Valence and Localization of Praseodymium in Pr-Doped Zircon☆ , 1998 .
[39] H. Nasu,et al. Preparation of Rare Earth-Zircon Pigments by the Sol-Gel Method , 1998 .
[40] K. Lu,et al. STRUCTURE CHARACTERISTICS OF NANOCRYSTALLINE ELEMENT SELENIUM WITH DIFFERENT GRAIN SIZES , 1997 .
[41] Neumann,et al. 3d and 4d x-ray-photoelectron spectra of Pr under gradual oxidation. , 1995, Physical review. B, Condensed matter.
[42] X. D. Liu,et al. The lattice expansion in nanometre-sized Ni polycrystals , 1994 .
[43] B. Lönnberg. Characterization of milled Si3N4 powder using X-ray peak broadening and surface area analysis , 1994, Journal of Materials Science.
[44] S. Kemmler‐sack,et al. Praseodymium Zircon Yellow , 1992 .
[45] G. Sawatzky,et al. Praseodymium 3d- and 4d-core photoemission spectra of Pr2O3. , 1991, Physical review. B, Condensed matter.
[46] Paolo Scardi,et al. Simultaneous structure and size-strain refinement by the Rietveld method , 1990 .
[47] M. Trojan. Synthesis of a yellow zircon pigment , 1988 .
[48] R. Eppler. Zirconia-based colors for ceramic glazes , 1977 .
[49] R. Eppler. Mechanism of Formation of Zircon Stains , 1970 .