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NTIS 바로가기Ferroelectrics, v.333 no.1, 2006년, pp.259 - 264
Kim, Tae Joong (Yeungnam University, Gyeongsan, Korea) , Lee, Hee Young (Yeungnam University, Gyeongsan, Korea) , Kim, Jeong-Joo (Kyungpook National University, Daegu, Korea)
The effects of strontium substitution, alumina addition and calcination temperature on the phase development and the microwave dielectric properties of BSSmT ceramics prepared by the conventional mixed oxide process with the nominal composition, (Ba1- xSrx)2Sm2Ti9O23 (x ≤ 0.07) were investigated...
WAKINO, K., MINAI, K., TAMURA, H.. Microwave Characteristics of (Zr, Sn)TiO4 and BaO‐PbO‐Nd2O3‐TiO2 Dielectric Resonators. Journal of the American Ceramic Society, vol.67, no.4, 278-281.
Am. Ceram. Soc. Bull. Nishigaki S. 1405 66 1987
Wu, Jenn‐Ming, Chang, Ming‐Chu, Yao, Pei‐Chih. Reaction Sequence and Effects of Calcination and Sintering on Microwave Properties of (Ba,Sr)O‐Sm2O3‐TiO2 Ceramics. Journal of the American Ceramic Society, vol.73, no.6, 1599-1605.
Takahashi, Junichi, Ikegami, Takashi, Kageyama, Keisuke. Occurrence of Dielectric 1:1:4 Compound in the Ternary System BaO—Ln2O3—TiO2 (Ln = La, Nd, and Sm): II, Reexamination of Formation of Isostructural Ternary Compounds in Identical Systems. Journal of the American Ceramic Society, vol.74, no.8, 1873-1879.
Ohsato, Hitoshi, Kato, Hiromichi, Mizuta, Makoto, Nishigaki, Susumu, Okuda, Takashi. Microwave Dielectric Properties of the Ba6-3x(Sm 1-y, Ry) 8+2xTi 18O 54 (R=Nd and La) Solid Solutions with Zero Temperature Coefficient of the Resonant Frequency. Japanese journal of applied physics. Part 1, Regular papers, short notes and review papers, vol.34, no.b9, 5413-5417.
Mizuta, Makoto, Uenoyama, Koji, Ohsato, Hitoshi, Nishigaki, Susumu, Okuda, Takashi. Formation of Tungsten Bronze-Type (Ba 6- 3xSm 8+ 2x)αTi 18-yAlyO 54 (α=1+ y/36) Solid Solutions and Microwave Dielectric Properties. Japanese journal of applied physics. Part 1, Regular papers, short notes and review papers, vol.35, no.b9, 5065-5068.
Yang, Cheng-Fu. Microwave Properties of (Ba1-xSrx)Sm2Ti4O12 Ceramics and Its Application in Dielectric Resonator Antenna. Japanese journal of applied physics. Part 1, Regular papers, short notes and review papers, vol.39, no.a3, 1430-1434.
Ohsato, H.. Science of tungstenbronze-type like Ba6–3xR8+2xTi18O54 (R=rare earth) microwave dielectric solid solutions. Journal of the European Ceramic Society, vol.21, no.15, 2703-2711.
Kim, Tae Joong, Park, Jin Hyun, Kim, Seon Yun, Lim, Sung Soo, Yoon, Dong Hyun, Kim, Jeong-Joo, Han, Joo Hwan, Lee, Jai Yeoul, Lee, Hee Young. Effect of Impurity on the Microwave Dielectric Properties of (Ba 0.93 Sr 0.07 ) 2 Sm 2 Ti 9 O 23 Ceramic. Ferroelectrics, vol.272, no.1, 339-344.
Jung, Sung-Wook, Lee, Joon-Hyung, Kim, Jeong-Joo, Lee, Hee Young, Cho, Sang-Hee. Phase development and microwave dielectric properties of BaO–xSm2O3–4.5TiO2 (x = 0–1.25) ceramics. Materials chemistry and physics, vol.79, no.2, 282-285.
WU, JENN‐MING, WANG, HONG‐WEN. Factors Affecting the Formation of Ba2Ti9O20. Journal of the American Ceramic Society, vol.71, no.10, 869-875.
Fang, T.-T., Shiue, J.-T., Liou, S.-C.. Formation mechanism and sintering behavior of Ba2Ti9O20. Journal of the European Ceramic Society, vol.22, no.1, 79-85.
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