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Section III: Contributed papers IIIa. Dielectrics/Dornains/Microstructure

DiC12: Magnesium titanate microwave dielectric ceramics

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Pages 127-132 | Published online: 10 Feb 2011

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Akira Sakai, Genki Anzou, Atsushi Kikuchi & Osami Seri. (2017) Raman scattering study of microcrystals of perovskite titanates. Ferroelectrics 512:1, pages 45-51.
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Yih-Chien Chen, Kuei-Chien Chen & Kai-Hao Chen. (2011) Dielectric Properties of (1-x)La(Mg0.5Sn0.5)O3-xCa0.8Sr0.2TiO3 Ceramic System at Microwave Frequencies. Ferroelectrics 423:1, pages 86-93.
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Yih-Chien Chen, Kuei-Chien Chen, Kai-Hao Chen & Zhi-Xing Lin. (2011) Microwave Dielectric Properties of V2O5–Doped (1-x)La(Mg0.5Sn0.5)O3-xCaTiO3 Ceramic System. Ferroelectrics 413:1, pages 54-64.
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Yih-Chien Chen, Shun-Chung Wang & Kai-Hao Chen. (2010) Effect of B2O3 Additions and Sintering Temperature on Microwave Dielectric Properties of (1 − x)La(Mg0.5Sn0.5)O3-xCa0.8Sr0.2TiO3 Ceramic. Ferroelectrics Letters Section 37:5, pages 90-100.
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Yih-Chien Chen, Kuei-Chien Chen & Shun-Chung Wang. (2010) Enhancement the Quality Factor of CaLa4Ti5O17 Microwave Ceramics Replacing La3+ with Nd3+ for Application in Rectenna. Ferroelectrics Letters Section 37:5, pages 83-89.
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Shun-Chung Wang, Yih-Chien Chen, Kai-Hao Chen & Yun-Shen Lin. (2010) Microwave Dielectric Properties of (1-x)La(Mg0.5Sn0.5)O3-xCaTiO3 Ceramic System. Ferroelectrics Letters Section 37:1, pages 10-20.
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A.N. Salak, D.D. Khalyavin, A.M. R. Senos, P.Q. Mantas & V.M. Ferreira. (2006) Structure and Dielectric Behavior of the (1−x)La(Mg1/2Ti1/2)O3 < eqid1 > xBa(Mg1/2W1/2)O3 Microwave Ceramics. Ferroelectrics 333:1, pages 213-219.
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Noboru Ichinose & Hirobumi Yamamoto. (1997) Effect of additives on microwave dielectric properties in low-temperature firing (Mg,Ca)TiO3 based ceramics. Ferroelectrics 201:1, pages 255-262.
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Chandra Prakash, A.S. Bhalla & Pran Kishan. (1994) Synthesis of spinel magnesium-aluminum titanates for microwave applications. Ferroelectrics Letters Section 18:3-4, pages 83-90.
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Cheng-Hsing Hsu & Chia-Hao Chang. (2015) A temperature-stable and high-Q microwave dielectric ceramic of the MgTiO3–(Ca0.8Sr0.2)(Zr0.1Ti0.9)O3 system. Ceramics International 41:5, pages 6965-6969.
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Wen-Ruei Yang, Po-Zhan Huang & Cheng-Liang Huang. (2015) Microwave dielectric properties of low-loss (Zn1−xCox)3Nb2O8 ceramics for LTCC applications. Journal of Alloys and Compounds 620, pages 18-23.
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Ching-Fang Tseng & Chih-Wen Lee. (2014) Influences of acetylacetone and annealing treatment on the synthesis of Mg(Zr 0.05 Ti 0.95 )O 3 dielectric thin films by sol–gel method . Japanese Journal of Applied Physics 53:11S, pages 11RG02.
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Chung Long Pan, Chun Hsu Shen, Wei Cheng Lin & Shin Hung Lin. (2014) Effect of B<sub>2</sub>O<sub>3</sub> Glass on the Sintering and Microwave Dielectric Properties of MgTiO<sub>3</sub>–CaTiO<sub>3</sub>. Applied Mechanics and Materials 666, pages 27-30.
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B.B. Patil & S. Basu. (2014) Synthesis and Characterization of PdO-NiO-SDC Nano-powder by Glycine-Nitrate Combustion Synthesis for Anode of IT-SOFC. Energy Procedia 54, pages 669-679.
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Ching Fang Tseng & Chih Wen Lee. (2013) Investigation of Chelating Agents on Structural and Optical Properties of Mg(Zr<sub>0.05</sub>Ti<sub>0.95</sub>)O<sub>3</sub> Thin Film on ITO/Glass Substrate. Applied Mechanics and Materials 278-280, pages 393-396.
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VISHNU SHANKER, SANTOSH KUMAR & T SURENDAR. (2013) Dielectric behaviour of sodium and potassium doped magnesium titanate. Bulletin of Materials Science 35:7, pages 1165-1171.
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Madukayil Kunjoonju Suresh, Jijimon Kumpukattu Thomas, Hariharan Sreemoolanadhan, Chandy Nellimmoottil George, Annamma John, Sam Solomon, Palakkattumala Ramachandra Sobhana Wariar & Jacob Koshy. (2012) Structural and Dielectric Studies of Nanocrystalline Calcium Substituted Magnesium Titanate Synthesized Through an Auto‐Igniting Combustion Technique. International Journal of Applied Ceramic Technology 9:2, pages 366-373.
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M. Biswas & S. Bandyopadhyay. (2012) Synthesis of La3+ doped nanocrystalline ceria powder by urea–formaldehyde gel combustion route. Materials Research Bulletin 47:3, pages 544-550.
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Ching Fang Tseng, Cheng Hsing Hsu, Ci Jie Huang & Chun Hung Lai. (2012) Influences of Pressure Conditions on Synthesis of Mg(Zr<sub>0.05</sub>Ti<sub>0.95</sub>)O<sub>3</sub> Dielectric Ceramics. Advanced Materials Research 430-432, pages 692-695.
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Cheng-Liang Huang, Shih-Sheng Liu & Shih-Hsuan Chen. (2011) The effect of non-stoichiometry on the microstructure and microwave dielectric properties of the Mg1+δTiO3+δ ceramics. Journal of Alloys and Compounds 509:40, pages 9702-9707.
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Ching-Fang Tseng. (2011) Relationships between Zr substitution for Ti and microwave dielectric properties in Mg(ZrxTi1−x)O3 ceramics. Journal of Alloys and Compounds 509:39, pages 9447-9450.
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Ching-Fang Tseng, Wen-Shiush Chen & Chih-Wen Lee. (2011) Microstructure, electrical and optical characteristics of Mg(Zr0.05Ti0.95)O3 thin films grown on Si substrate by sol–gel method. Thin Solid Films 519:15, pages 5026-5029.
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Wenjun Dong, Bingjie Li, Yang Li, Xuebin Wang, Lina An, Chaorong Li, Benyong Chen, Ge Wang & Zhan Shi. (2011) General Approach to Well-Defined Perovskite MTiO 3 (M = Ba, Sr, Ca, and Mg) Nanostructures . The Journal of Physical Chemistry C 115:10, pages 3918-3925.
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Ching Fang Tseng, Chun Hung Lai & Chih Wen Lee. (2011) Effect of Annealing Treatments on Mg(Zr<sub>0.05</sub>Ti<sub>0.95</sub>)O<sub>3</sub> Thin Films by Sol-Gel Method. Advanced Materials Research 216, pages 518-522.
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Y. Fujioka, J. Frantti & R. M. Nieminen. (2011) Itinerant-Electron Ferromagnetism in a Titanium-Rich Magnesium Titanate Ilmenite Solid Solution. The Journal of Physical Chemistry C 115:5, pages 1457-1463.
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Ching Fang Tseng, Pai Chuan Yang, Chun Hung Lai & Chih Wen Lee. (2011) Study of Mg(Zr<sub>0.05</sub>Ti<sub>0.95</sub>)O<sub>3</sub> Dielectric Thin Films by Sol-Gel Method. Advanced Materials Research 194-196, pages 2249-2253.
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Yih‐Chien Chen, Yen‐Nien Wang & Kai‐Hao Chen. (2010) Microwave dielectric properties of (1‐x)La(Mg 0.5 Sn 0.5 )O 3 ‐x(Sr 0.8 Ca 0.2 ) 3 Ti 2 O 7 ceramic system with a near zero temperature coefficient of resonant frequency . Crystal Research and Technology 45:8, pages 830-834.
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Jun-Jie Wang. (2009) Study of (1−x)(Mg0.6Zn0.4)0.95Co0.05TiO3–xCa0.61Nd0.26TiO3 microwave dielectrics. Journal of Alloys and Compounds 486:1-2, pages 423-426.
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Deuk-Ho Yeon, Chan-Su Han, Sung-Hoon Key, Hyo-Eun Kim, Jong-Yun Kang & Yong-Soo Cho. (2009) Physical and Microwave Dielectric Properties of the MgO-SiO 2 System . Korean Journal of Materials Research 19:10, pages 550-554.
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Chun‐Hsu Shen, Cheng‐Liang Huang, Chuan‐Feng Shih & Chih‐Ming Huang. (2009) A Novel Temperature‐Compensated Microwave Dielectric (1− x )(Mg 0.95 Ni 0.05 )TiO 3 − x Ca 0.6 La 0.8/3 TiO 3 Ceramics System . International Journal of Applied Ceramic Technology 6:5, pages 562-570.
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Jun-Jie Wang, Chun-Huy Wang & Ting-Kuei Hsu. (2009) Investigation of (1- x )(Mg 0.6 Zn 0.4 ) 0.95 Co 0.05 TiO 3 – x SrTiO 3 Microwave Dielectrics . Japanese Journal of Applied Physics 48:8, pages 081402.
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Yuan-Bin Chen, Cheng-Liang Huang & Shih-Hung Lin. (2009) The effect of deposition temperature and chamber pressure on the electrical and physical properties of the MgTiO3 thin films. Journal of Alloys and Compounds 480:2, pages 897-902.
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Yuan-Bin Chen. (2009) Improved high Q value of MgTiO3–CaTiO3 microwave dielectric resonator using WO3-doped at lower sintering temperature for microwave applications. Journal of Alloys and Compounds 478:1-2, pages 657-660.
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Ching‐Fang Tseng & Cheng‐Hsing Hsu. (2009) A New Compound with Ultra Low Dielectric Loss at Microwave Frequencies. Journal of the American Ceramic Society 92:5, pages 1149-1152.
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Cheng-Liang Huang, Yuan-Bin Chen & Shih-Hung Lin. (2009) New dielectric material system of Mg0.95Co0.05TiO3−Zn0.975Ca0.025TiO3 at microwave frequencies. Journal of Alloys and Compounds 477:1-2, pages 712-715.
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Chun-Hsu Shen, Cheng-Liang Huang, Chuan-Feng Shih & Chih-Ming Huang. (2009) The effect of Ca0.61Nd0.26TiO3 addition on the microwave dielectric properties of (Mg0.95Ni0.05)TiO3 ceramics. Journal of Alloys and Compounds 475:1-2, pages 391-395.
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Samit K. Nandi, Biswanath Kundu, Samir K. Ghosh, Tapan K. Mandal, Someswar Datta, Dipak K. De & Debabrata Basu. (2009) Cefuroxime-impregnated calcium phosphates as an implantable delivery system in experimental osteomyelitis. Ceramics International 35:4, pages 1367-1376.
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Cheng-Liang Huang, Gung-Jie Li & Jun-Jie Wang. (2009) Microwave dielectric properties of (1−x)(Mg0.95Zn0.05)TiO3–x(Na0.5La0.5)TiO3 ceramic system. Journal of Alloys and Compounds 472:1-2, pages 497-501.
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Cheng-Liang Huang & Shih-Sheng Liu. (2009) Dielectric characteristics of the (1−x)Mg2TiO4–xSrTiO3 ceramic system at microwave frequencies. Journal of Alloys and Compounds 471:1-2, pages L9-L12.
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A. F. L. Almeida, P. B. A. Fechine, M. P. F. Graça, M. A. Valente & A. S. B. Sombra. (2008) Structural and electrical study of CaCu3Ti4O12 (CCTO) obtained in a new ceramic procedure. Journal of Materials Science: Materials in Electronics 20:2, pages 163-170.
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Ching‐Fang Tseng. (2008) Microwave Dielectric Properties of a New Ultra Low Loss Pervoskite Ceramic. Journal of the American Ceramic Society 91:12, pages 4125-4128.
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Sun-Hi Yoo, Ki Hyun Yoon & Ji-Won Choi. (2007) Microwave dielectric loss of thermally stressed MgTiO3 via TEM observation. Journal of Electroceramics 21:1-4, pages 8-11.
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Chun-Hai Wang, Xi-Ping Jing, Wei Feng & Jing Lu. (2008) Assignment of Raman-active vibrational modes of MgTiO3. Journal of Applied Physics 104:3.
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Samir K. Ghosh, Samit K. Nandi, Biswanath Kundu, Someswar Datta, Dipak K. De, Sujit K. Roy & Debabrata Basu. (2007) In vivo response of porous hydroxyapatite and β‐tricalcium phosphate prepared by aqueous solution combustion method and comparison with bioglass scaffolds . Journal of Biomedical Materials Research Part B: Applied Biomaterials 86B:1, pages 217-227.
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S.V. Chavan, P.U.M. Sastry & A.K. Tyagi. (2008) Combustion synthesis of nano-crystalline Nd-doped ceria and Nd2O3 and their fractal behavior as studied by small angle X-ray scattering. Journal of Alloys and Compounds 456:1-2, pages 51-56.
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K.X. Song, X.M. Chen & C.W. Zheng. (2008) Microwave dielectric characteristics of ceramics in Mg2SiO4–Zn2SiO4 system. Ceramics International 34:4, pages 917-920.
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Chun-Hai Wang, Xiao-Jun Kuang, Xi-Ping Jing, Jing Lu, Xiang Lü & Jun Shao. (2008) Far infrared reflection spectrum and IR-active modes of MgTiO3. Journal of Applied Physics 103:7.
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A.F.L. Almeida, R.R. Silva, H.H.B. Rocha, P.B.A. Fechine, F.S.A. Cavalcanti, M.A. Valente, F.N.A. Freire, R.S.T.M. Sohn & A.S.B. Sombra. (2008) Experimental and numerical investigation of a ceramic dielectric resonator (DRA): CaCu3Ti4O12 (CCTO). Physica B: Condensed Matter 403:4, pages 586-594.
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Cheng-Liang Huang, Jiun Liang Hou, Chung-Long Pan, Chi-Yuen Huang, Chun-Wei Peng, Chih-Hung Wei & Yi-Hong Huang. (2008) Effect of ZnO additive on sintering behavior and microwave dielectric properties of 0.95MgTiO3–0.05CaTiO3 ceramics. Journal of Alloys and Compounds 450:1-2, pages 359-363.
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R. Freer & F. Azough. (2008) Microstructural engineering of microwave dielectric ceramics. Journal of the European Ceramic Society 28:7, pages 1433-1441.
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MAILADIL T. SEBASTIAN. 2008. Dielectric Materials for Wireless Communication. Dielectric Materials for Wireless Communication 379 443 .
Cheng-Liang Huang, Chun-Hsu Shen & Chung-Long Pan. (2007) Characterization and dielectric behavior of V2O5-doped MgTiO3–CaTiO3 ceramic system at microwave frequency. Materials Science and Engineering: B 145:1-3, pages 91-96.
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A.N. Salak, V.M. Ferreira, L.G. Vieira, J.L. Ribeiro, R.C. Pullar & N.McN. Alford. (2011) Dielectric relaxation and microwave loss in the La(Mg 1/2 Ti 1/2 )O 3 –(Na 1/2 Bi 1/2 )TiO 3 perovskite ceramics . Journal of Materials Research 22:10, pages 2676-2684.
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K. X. Song, X. M. Chen & X. C. Fan. (2007) Effects of Mg/Si Ratio on Microwave Dielectric Characteristics of Forsterite Ceramics. Journal of the American Ceramic Society 90:6, pages 1808-1811.
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Cheng‐Liang Huang, Jun‐Jie Wang & Yu‐Pin Chang. (2007) Dielectric Properties of Low Loss (1– x )(Mg 0.95 Zn 0.05 )TiO 3 – x SrTiO 3 Ceramic System at Microwave Frequency . Journal of the American Ceramic Society 90:3, pages 858-862.
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Cheng-Liang Huang & Shi-Sheng Liu. (2007) Characterization of Extremely Low Loss Dielectrics (Mg 0.95 Zn 0.05 )TiO 3 at Microwave Frequency . Japanese Journal of Applied Physics 46:1R, pages 283.
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Yuan-Bin Chen & Cheng-Liang Huang. (2006) Effects of O2/Ar mixing and annealing on the properties of MgTiO3 films prepared by RF magnetron sputtering. Surface and Coatings Technology 201:3-4, pages 654-659.
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Jun-Jie Wang, Cheng-Liang Huang & Po-Hsin Li. (2006) Microwave Dielectric Properties of (1-x)(Mg 0.95 Zn 0.05 )TiO 3 –xCa 0.6 La 0.8/3 TiO 3 Ceramic System . Japanese Journal of Applied Physics 45:8R, pages 6352.
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S.V. Chavan, K.T. Pillai & A.K. Tyagi. (2006) Combustion synthesis of nanocrystalline yttria: Tailoring of powder properties. Materials Science and Engineering: B 132:3, pages 266-271.
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Cheng-Liang Huang & Jun-Jie Wang. (2006) Microwave dielectric properties of (1−x)(Mg0.95Co0.05)TiO3– xCa0.6La0.8/3TiO3 ceramics with V2O5 addition. Solid-State Electronics 50:7-8, pages 1349-1354.
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Cheng-Liang Huang & Yuan-Bin Chen. (2006) Structure and electrical characteristics of RF magnetron sputtered MgTiO3. Surface and Coatings Technology 200:10, pages 3319-3325.
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S. Guillemet-Fritsch, T. Lebey, M. Boulos & B. Durand. (2006) Dielectric properties of CaCu3Ti4O12 based multiphased ceramics. Journal of the European Ceramic Society 26:7, pages 1245-1257.
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R.D. Purohit, S. Saha & A.K. Tyagi. (2006) Powder characteristics and sinterability of ceria powders prepared through different routes. Ceramics International 32:2, pages 143-146.
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Cheng-Liang Huang & Yuan-Bin Chen. (2005) The effect of deposition temperature and RF power on the electrical and physical properties of the MgTiO3 thin films. Journal of Crystal Growth 285:4, pages 586-594.
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Yuan-Bin Chen & Cheng-Liang Huang. (2005) Properties of MgTiO3 thin films prepared by RF magnetron sputtering for microwave application. Journal of Crystal Growth 282:3-4, pages 482-489.
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M. P. Seabra, V. M. Ferreira, H. Zheng & I. M. Reaney. (2005) Structure property relations in La(Mg1∕2Ti1∕2)O3-based solid solutions. Journal of Applied Physics 97:3.
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Byoung Duk Lee, Hong Ryul Lee, Ki Hyun Yoon & Yong S. Cho. (2005) Microwave dielectric properties of magnesium calcium titanate thin films. Ceramics International 31:1, pages 143-146.
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Su Hao, Wu Shun-hua & Yan Hai-yang. (2004) Dielectric properties of B2O3 doped MgTiO3-CaTiO3 system ceramics. Journal of Wuhan University of Technology-Mater. Sci. Ed. 19:4, pages 62-64.
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S.V. Chavan & A.K. Tyagi. (2004) Preparation and characterization of Sr 0.09 Ce 0.91 O 1.91 , SrCeO 3 , and Sr 2 CeO 4 by glycine–nitrate combustion: Crucial role of oxidant-to-fuel ratio . Journal of Materials Research 19:11, pages 3181-3188.
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Cheng-Liang Huang & Chung-Long Pan. (2004) Structure and electrical properties of MgTiO3 thin films deposited by rf magnetron sputtering. Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films 22:6, pages 2440-2445.
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M.P. Seabra, A.N. Salak, V.M. Ferreira, J.L. Ribeiro & L.G. Vieira. (2004) Dielectric properties of (1− x )La(Mg 1/2 Ti 1/2 )O 3 – x SrTiO 3 ceramics. Journal of the European Ceramic Society 24:10-11, pages 2995-3002.
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S.V. Chavan & A.K. Tyagi. (2011) Combustion synthesis of nanocrystalline yttria-doped ceria. Journal of Materials Research 19:2, pages 474-480.
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Gulaim A. Seisenbaeva, Suresh Gohil & Vadim G. Kessler. (2004) Molecular structure design approach to perspective single-source precursors of titanate materials. Synthesis, X-ray single crystal and mass-spectrometric study of M2Ti2(acac)4(OMe)8, M=Mg, Co. Inorganic Chemistry Communications 7:1, pages 18-20.
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X.M Chen, L Li & X.Q Liu. (2003) Layered complex structures of MgTiO3 and CaTiO3 dielectric ceramics. Materials Science and Engineering: B 99:1-3, pages 255-258.
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Cheng-Liang Huang, Chung-Long Pan & Shen-Jiunn Shium. (2003) Liquid phase sintering of MgTiO3–CaTiO3 microwave dielectric ceramics. Materials Chemistry and Physics 78:1, pages 111-115.
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Cheng-Liang Huang, Chung-Long Pan & Jui-Feng Hsu. (2002) Dielectric properties of (1−x)(Mg0.95Co0.05)TiO3–xCaTiO3 ceramic system at microwave frequency. Materials Research Bulletin 37:15, pages 2483-2490.
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R.D Purohit, B.P Sharma, K.T Pillai & A.K Tyagi. (2001) Ultrafine ceria powders via glycine-nitrate combustion. Materials Research Bulletin 36:15, pages 2711-2721.
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