GIANT DIELECTRIC BEHAVIOR OF BaFe0.5Nb0.5O3 PEROVSKITE CERAMIC

Author(s):  
URAIWAN INTATHA ◽  
SUKUM EITSSAYEAM ◽  
TAWEE TUNKASIRI
2008 ◽  
Vol 22 (25n26) ◽  
pp. 4717-4723 ◽  
Author(s):  
URAIWAN INTATHA ◽  
SUKUM EITSSAYEAM ◽  
TAWEE TUNKASIRI

Single-phase cubic Ba ( Fe , Nb )0.5 O 3 (BFN) powder was synthesized by solid-state reaction at 1443 K for 4 hour in air. X-ray diffraction indicated that the BFN oxide mixture calcined at 1200°C crystallizes to the pure cubic perovskite phase. BFN ceramics were produced from this powder by sintering at 1623–1673 K for 4 hrs in air. Samples prepared under these conditions achieved up to 94.7% of the theoretical density. The temperature dependence of their dielectric constant and loss tangent, measured at difference frequencies, shows an increase in the dielectric constant with temperature which is probably due to disorder on the B site ion of the perovskite. Non-Debye type of relaxation phenomena has been observed in the BFN ceramics as confirmed by Cole–Cole plots. The higher value of ɛ′ at the lower frequency is explained on the basis of the Maxwell–Wagner (MW) polarization model.


2015 ◽  
Vol 120 (1) ◽  
pp. 89-95 ◽  
Author(s):  
Jakkree Boonlakhorn ◽  
Pinit Kidkhunthod ◽  
Bundit Putasaeng ◽  
Teerapon Yamwong ◽  
Prasit Thongbai ◽  
...  

2010 ◽  
Vol 10 (1) ◽  
pp. 21-25 ◽  
Author(s):  
Uraiwan Intatha ◽  
Sukum Eitssayeam ◽  
John Wang ◽  
Tawee Tunkasiri

2013 ◽  
Vol 9 (3) ◽  
pp. 347-351 ◽  
Author(s):  
Natkrita Prasoetsopha ◽  
Supree Pinitsoontorn ◽  
Prasit Thongbai ◽  
Teerapon Yamwong

2012 ◽  
Vol 85 (24) ◽  
Author(s):  
C. H. Kim ◽  
Y. H. Jang ◽  
S. J. Seo ◽  
C. H. Song ◽  
J. Y. Son ◽  
...  

2016 ◽  
Vol 168 ◽  
pp. 163-165 ◽  
Author(s):  
J. Zhang ◽  
Y. Li ◽  
D. Zhang ◽  
H.C. Qi ◽  
X.X. Xu ◽  
...  

Molecules ◽  
2021 ◽  
Vol 26 (22) ◽  
pp. 7041
Author(s):  
Noppakorn Thanamoon ◽  
Narong Chanlek ◽  
Pornjuk Srepusharawoot ◽  
Ekaphan Swatsitang ◽  
Prasit Thongbai

Giant dielectric (GD) oxides exhibiting extremely large dielectric permittivities (ε’ > 104) have been extensively studied because of their potential for use in passive electronic devices. However, the unacceptable loss tangents (tanδ) and temperature instability with respect to ε’ continue to be a significant hindrance to their development. In this study, a novel GD oxide, exhibiting an extremely large ε’ value of approximately 7.55 × 104 and an extremely low tanδ value of approximately 0.007 at 103 Hz, has been reported. These remarkable properties were attributed to the synthesis of a Lu3+/Nb5+ co-doped TiO2 (LuNTO) ceramic containing an appropriate co-dopant concentration. Furthermore, the variation in the ε’ values between the temperatures of −60 °C and 210 °C did not exceed ±15% of the reference value obtained at 25 °C. The effects of the grains, grain boundaries, and second phase particles on the dielectric properties were evaluated to determine the dielectric properties exhibited by LuNTO ceramics. A highly dense microstructure was obtained in the as-sintered ceramics. The existence of a LuNbTiO6 microwave-dielectric phase was confirmed when the co-dopant concentration was increased to 1%, thereby affecting the dielectric behavior of the LuNTO ceramics. The excellent dielectric properties exhibited by the LuNTO ceramics were attributed to their inhomogeneous microstructure. The microstructure was composed of semiconducting grains, consisting of Ti3+ ions formed by Nb5+ dopant ions, alongside ultra-high-resistance grain boundaries. The effects of the semiconducting grains, insulating grain boundaries (GBs), and secondary microwave phase particles on the dielectric relaxations are explained based on their interfacial polarizations. The results suggest that a significant enhancement of the GB properties is the key toward improvement of the GD properties, while the presence of second phase particles may not always be effective.


2008 ◽  
Vol 109 (2-3) ◽  
pp. 262-270 ◽  
Author(s):  
Chivalrat Masingboon ◽  
Prasit Thongbai ◽  
Santi Maensiri ◽  
Teerapon Yamwong ◽  
Supapan Seraphin

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