The effects of heat-treatment on the structure evolution and crystallinity of ZnTiO3 nano-crystals prepared by Pechini process
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[1] Yoonho Kim,et al. Low‐Fired (Zn,Mg)TiO3 Microwave Dielectrics , 2004 .
[2] Yen-Hwei Chang,et al. Synthesis and characterization of zinc titanate doped with magnesium , 2003 .
[3] D. Yuan,et al. Photoluminescence of sol–gel derived ZnTiO3:Ni2+ nanocrystals , 2003 .
[4] Sean Wu,et al. The structure and properties of zinc titanate doped with strontium , 2003 .
[5] D. Yuan,et al. Photoluminescence characteristics of Pb2+ ion in sol–gel derived ZnTiO3 nanocrystals , 2003 .
[6] In-Gann Chen,et al. Synthesis and characterization of zinc titanate nano-crystal powders by sol–gel technique , 2002 .
[7] J. Tartaj,et al. Heating-rate effect on the BaTiO3 formation by thermal decomposition of metal citrate polymeric precursors , 2001 .
[8] T. Bardakci,et al. Hydrogen sulfide removal from coal gas by zinc titanate sorbent , 1999 .
[9] W. Cho. Structural evolution and characterization of BaTiO3 nanoparticles synthesized from polymeric precursor , 1998 .
[10] Yet-Ming Chiang,et al. Physical ceramics : principles for ceramic science and engineering / Yet-Ming Chiang, Dunbar P. Birnie, W. David Kingery , 1996 .
[11] M. Rajendran,et al. Formation of BaTiO3 from Citrate Precursor , 1994 .
[12] A. Baumgarte,et al. Isothermal sections in the systems ZnOAO2Nb2O5 (A Ti, Zr, Sn) at 1473 K , 1994 .
[13] R. Clement,et al. Emissions from combustion processes : origin, measurement, control , 1990 .
[14] D. Hennings,et al. Thermal decomposition of (BaTi) citrates into barium titanate , 1978 .
[15] Hidehito Obayashi,et al. Perovskite-type oxides as ethanol sensors , 1976 .
[16] R. A. Slepetys,et al. Compound Formation and Crystal Structure in the System ZnO‐TiO2 , 1961 .
[17] D. Rase,et al. Phase Equilibria in the System ZnO—TiO2 , 1960 .
[18] B. Cullity,et al. Elements of X-ray diffraction , 1957 .