Synergistic effect of rare-earth elements on the dielectric properties and reliability of BaTiO3-based ceramics for multilayer ceramic capacitors
暂无分享,去创建一个
[1] Longtu Li,et al. Grain size effect on electrical and reliability characteristics of modified fine-grained BaTiO3 ceramics for MLCCs , 2014 .
[2] Longtu Li,et al. Grain size effect on piezoelectric and ferroelectric properties of BaTiO3 ceramics , 2014 .
[3] Longtu Li,et al. High Performance BaTiO3‐Based BME‐MLCC Nanopowder Prepared by Aqueous Chemical Coating Method , 2012 .
[4] X. Yao,et al. Studies of dielectric properties of rare earth (Dy, Tb, Eu) doped barium titanate sintered in pure nitrogen , 2012 .
[5] C. Randall,et al. Kinetics of Oxygen Diffusion into Multilayer Ceramic Capacitors During the Re‐oxidation Process and its Implications on Dielectric Properties , 2011 .
[6] K. Hui,et al. Selective substitution and tetragonality by Co-doping of dysprosium and thulium on dielectric properties of barium titanate ceramics , 2011 .
[7] Heesoo Lee,et al. Effect of dysprosium oxide addition on the microstructure and dielectric properties of BaTiO3 ceramics , 2010 .
[8] C. Randall,et al. Effect of acceptor concentration on the bulk electrical conduction in acceptor (Mg)-doped BaTiO3 , 2010 .
[9] C. Randall,et al. Mixed conduction and chemical diffusion in a Pb(Zr0.53, Ti0.47)O3 buried capacitor structure , 2010 .
[10] V. Pavlović,et al. Influence of Rare-Earth Dopants on Barium Titanate Ceramics Microstructure and Corresponding Electrical Properties , 2010 .
[11] T. Song,et al. Preparation of Nano BaTiO3-Based Ceramics for Multilayer Ceramic Capacitor Application by Chemical Coating Method , 2009 .
[12] T. Song,et al. Microstructures and Dielectric Characteristics of Ultrafine-Grained Barium Titanate-Based Ceramics for Base-Metal-Electrode Multilayer Ceramic Capacitors Applications , 2007 .
[13] J. Mizuki,et al. Core–Shell Structure Analysis of BaTiO3 Ceramics by Synchrotron X‐Ray Diffraction , 2007 .
[14] Kang-Heon Hur,et al. Formation of Core-Shell Structure of BaTiO3 Grains in MLCC , 2007, 2007 Sixteenth IEEE International Symposium on the Applications of Ferroelectrics.
[15] D. Hennings,et al. Temperature‐Stable Dielectrics Based on Chemically Inhomogeneous BaTiO3 , 2006 .
[16] L. Mitoseriu,et al. Grain size and grain boundary-related effects on the properties of nanocrystalline barium titanate ceramics , 2006 .
[17] Sossina M. Haile,et al. Impedance Spectroscopy as a Tool for Chemical and Electrochemical Analysis of Mixed Conductors: A Case Study of Ceria , 2005 .
[18] Daniel E. Barber,et al. Oxygen nonstoichiometry and dielectric evolution of BaTiO3. Part I—improvement of insulation resistance with reoxidation , 2004 .
[19] C. Randall,et al. Modulated and ordered defect structures in electrically degraded Ni-BaTiO3 multilayer ceramic capacitors , 2003 .
[20] Hiroshi Kishi,et al. Base-Metal Electrode-Multilayer Ceramic Capacitors: Past, Present and Future Perspectives , 2003 .
[21] T. Dunbar,et al. Crystal and Defect Chemistry of Rare Earth Cations in BaTiO3 , 2001 .
[22] Xin Guo,et al. Separation of Electronic and Ionic Contributions to the Grain Boundary Conductivity in Acceptor-Doped SrTiO3 , 2001 .
[23] C. Metzmacher,et al. Microstructural investigations of barium titanate-based material for base metal electrode ceramic multilayer capacitor , 2001 .
[24] C. Randall,et al. Site Occupancy of Rare-Earth Cations in BaTiO3 , 2001 .
[25] D. Hennings. Dielectric materials for sintering in reducing atmospheres , 2001 .
[26] H. Kishi,et al. Sintering Characteristics in the BaTiO3–Nb2O5–Co3O4 Ternary System: II, Stability of So-called “Core–Shell” Structure , 2000 .
[27] J. Jamnik,et al. Treatment of the Impedance of Mixed Conductors Equivalent Circuit Model and Explicit Approximate Solutions , 1999 .
[28] Junichi Sugino,et al. Effect of Occupational Sites of Rare-Earth Elements on the Microstructure in BaTiO3 , 1999 .
[29] Hiroshi Kishi,et al. Influence of the Microstructure Evolution on Electrical Properties of Multilayer Capacitor with Ni Electrode , 1998 .
[30] T. Okuda,et al. The Effect of MgO and Rare-Earth Oxide on Formation Behavior of Core-Shell Structure in BaTiO3 , 1997 .
[31] Takeshi Nomura,et al. Reliability of multilayer ceramic capacitors with nickel electrodes , 1996 .
[32] Hiroshi Kishi,et al. X7R Multilayer Ceramic Capacitors with Nickel Electrodes , 1991 .
[33] D. Sinclair,et al. Electroceramics: Characterization by Impedance Spectroscopy , 1990 .
[34] D. Sinclair,et al. Impedance and modulus spectroscopy of semiconducting BaTiO3 showing positive temperature coefficient of resistance , 1989 .
[35] J. Rödel,et al. Degradation of Mn-doped BaTiO3 ceramic under a high d.c. electric field , 1984 .
[36] H.-J. Hagemann,et al. Valence change and phase stability of 3 d -doped BaTi O 3 annealed in oxygen and hydrogen , 1979 .
[37] G. Maher,et al. High resistivity BaTiO3 ceramics sintered in CO-CO2 atmospheres , 1975 .
[38] J. Herbert. Thin ceramic dielectrics combined with nickel electrodes , 1965 .