参考文献
[1]刘学观,郭辉萍.微波技术与天线[M].西安:西安电子科技大学出版社,2001.
[2]森荣二.LC滤波器设计与制作[M].薛培鼎,译.北京:科学出版社,2006.
[3]廖承恩.微波技术基础[M].西安:西安电子科技大学出版社,1994.
[4]李言荣,恽正中.电子材料导论[M].北京:清华大学出版社,2001.
[5]徐廷献.电子陶瓷材料[M].天津:天津大学出版社,1993.
[6]SEBASTIAN M T.Dielectric Materials for Wireless Communication[M],Elsevier,2008.
[7]李标荣,王筱珍,张绪礼.无机电介质[M].武汉:华中理工大学出版社,1995.
[8]JEAN JH,GUPTA T K.Design of low dielectric glass+ceramics for multilayer ceramic substrate[J].Components Packaging and Manufacturing Technology,1994,17:228-233.
[9]GUREVICH V L,TAGANTSEV A K.Intrinsic dielectric loss in crystals[J].Advances in Physics,1991,40(6):719-767.
[10]BRAGINSKY V B,ILCHENKO Vs,BAGDASSAROV Ks.Experimental observation of fundamental microwave absorption in high-quality dielectric crystals[J].Physics Letters A,1987,120(6):300-305.
[11]PENNs J,ALFORD N M N,TEMPLETON A,et al.Effect of porosity and grain size on the microwave dielectric properties of sintered alumina [J].Journal of the American Ceramic Society,1997,80(7):1885-1888.
[12]HONG Ks,KIM I T,KIM C D.Order-disorder phase formation in the complex perovskite compounds Ba(Ni1/3Nb2/3)O3and Ba(Zn1/3Nb2/3)O3[J].Journal of the American Ceramic Society,1996,79(12):3218-3224.
[13]KAWASHIMAs,NISHIDA M,UEDA I.Ba(Zn1/3Ta2/3)O3ceramics with low dielectric loss at microwave frequencies[J].Journal of the American Ceramic Society,1983,66(6):421-423.
[14]KIM I T,KIM Y H,CHUNGs J.Ordering and microwave dielectric properties of Ba(Ni1/3Nb2/3)O3ceramics[J].Journal of Materials Research,1997,12(02):518-525.
[15]KIM Es,PARK Hs,YOON K H.Porosity dependence of microwave dielectric properties of complex perovskite(Pb0.5Ca0.5)(Fe0.5Ta0.5)O3ceramics[J].Materials Chemistry and Physics,2003,79(2-3):213-217.
[16]TEMPLETON A,WANG X,PENNs J,et al.Microwave dielectric loss of titanium oxide[J].Journal of the American Ceramic Society,2000,83(1):95-100.
[17]YOON K H,KIM Es.Dielectric characteristics of zirconium tin titanate ceramics at microwave frequencies[J].Materials Research Bulletin,1995,30(7):813-820.
[18]IDDLES D M,BELL A J,MOULSON A J.Relationships between dopants,microstructure and the microwave dielectric properties of ZrO2-TiO2-SnO2ceramics[J].Journal of Materials Science,1992,27(23):6303-6310.
[19]CHOU C C,TSAI Ds,LIN I N,et al.Microstructural defects in Ba(Mg1/3Ta2/3)O3microwave dielectric materials[J].Materials Chemistry and Physics,2003,79(2):218-221.
[20]KIM Ws,YOON K H,KIM Es.Microwave dielectric properties and far-infrared reflectivity characteristics of the CaTiO3-Li(1/2)-3xSm(1/2)+xTiO3ceramics[J].Journal of the American Ceramic Society,2000,83(9):2327-2329.
[21]FERREIRA V M,AZOUGH F,FREER R,et al.The effect of Cr and La on MgTiO3and MgTiO3-CaTiO3microwave dielectric ceramics [J].Journal of Materials Research,1997,12(12):3293-3299.
[22]MOUSSAs M,CLARIDGE J B,ROSSEINSKY M J,et al.Ba8ZnTa6O24:a high-Q microwave dielectric from a potentially diverse homologous series[J].Applied Physics Letters,2003,82(25):4537-4539.
[23]BIERINGER M,MOUSSAs M,NOAILLES L D,et al.Cation ordering,domain growth,and zinc loss in the microwave dielectric oxide Ba3ZnTa2O9-δ[J].Chemistry of Materials,2003,15(2):586-597.
[24]HUANG C L,TSAI J T,CHEN Y B.Dielectric properties of(1-y)Ca1--xLa2x/3TiO3-y(Li,Nd)1/2TiO3ceramic system at microwave frequency[J].Materials Research Bulletin,2001,36(3-4):547-556.
[25]YOON K H,KIM Ws,KIM Es.Dependence of the octahedral bond valence on microwavedielectric properties of Ca1-xSm2x/3TiO3ceramics[J].Materials Science and Engineering B,2003,99(1-3):112-115.
[26]YOON K H,CHANG Y H,KIM Ws,et al.Dielectric properties of Ca1-xSm2x/3TiO3-Li1/2Ln1/2TiO3ceramics[J].Japanese Journal of Applied Physics,1996,35(9B):5145-5149.
[27]DESUs B,O'BRYAN H M.Microwave loss quality of Ba1/3Ta2/3O3ceramics[J].Journal of the American Ceramic Society,1985,68(10):546-551.
[28]SURENDRAN K P,SEBASTIAN M T,MOHANAN P,et al.Effect of nonstoichiometry on the structure and microwave dielectric properties of Ba(Mg0.33Ta0.67)O3[J].Chemistry of Materials,2005,17(1):142-151.
[29]TODD M G,SHI F G.Validation of a novel dielectric constant simulation model and the determination of its physical parameters [J].Microelectronics Journal,2002,33(8):627-632.
[30]JAYASUNDERE N,SMITH B V.Dielectric constant for binary piezoelectric 0-3 composites[J].Journal of Applied Physics,1993,73(5):2462-2466.
[31]KIM D W,PARK B,CHUNG J H,et al.Mixture behavior and microwave dielectric properties in the low-fired TiO2-CuO system[J].Japanese Journal of Applied Physics,2000,39(5R):2696-2700.
[32]WAKINO K.Recent development of dielectric resonator materials and filters in Japan[J].Ferroelectrics,1989,91(1):69-86.
[33]WU J M,HUANG H L.Microwave properties of zinc,barium and lead borosilicate glasses[J].Journal of Non-crystalline Solids,1999,260(1):116-124.
[34]LIANG J,LU W Z.Microwave dielectric properties of Li2TiO3ceramics doped with ZnO-B2O3frit[J].Journal of the American Ceramic Society,2009,92(4):952-954.
[35]LU C H,HUANG Y H.Densification and dielectric properties of barium neodymium titanium oxide ceramics[J].Materials Science and Engineering:B,2003,98(1):33-37.
[36]HUANG C L,WENG M H,SHAN G M.Effect of V2O5and CuO additives on sintering behavior and microwave dielectric properties of BiNbO4ceramics[J].Journal of Materials Science,2000,35(21):5443-5447.
[37]WANGs F,YANG T C K,HUEBNER W,et al.Liquid-phase sintering and chemical inhomogeneity in the BaTiO3-BaCO3-LiF system[J].Journal of Materials Research,2000,15(02):407-416.
[38]PACKARD Ks.The origin of waveguides:a case of multiple rediscovery[J].Microwave Theory and Techniques,IEEE Transactions on,1984,32(9):961 -969.
[39]SOUTHWORTH G C.Transmission of guided waves:US,2106769[P].1938-2-1.
[40]RICHTMYER R D.Dielectric resonators [J].Journal of Applied Physics,1939,10(6):391-398.
[41]HAKKI B W,COLEMAN P D.A dielectric resonator method of measuring inductive capacities in the millimeter range[J].Microwave Theory and Techniques,IRE Transactions on,1960,8(4):402-410.
[42]OKAYA A,BARASH L F.The dielectric microwave resonator[J].Proceedings of the IRE,1962,50(10):2081 -2092.
[43]COHNs B.Microwave bandpass filters containing high-Q dielectric resonators[J].Microwave Theory and Techniques,IEEE Transactions on,1968,16(4):218 -227.
[44]JONKER G H,KWESTROO W.The ternary systems BaO-TiO2-SnO2and BaO-TiO2-ZrO2[J].Journal of the American Ceramic Society,1958,41(10):390-394.
[45]BUNTING E N,SHELTON G R,CREAMER As.Properties of barium-strontium titanate dielectrics[J].Journal of the American Ceramic Society,1947,30(4):114-125.
[46]MASSE D J,PUCEL R A,READEY D W,et al.A new low-loss high-κ temperature-compensated dielectric for microwave applications [J].Proceedings of the IEEE,1971,59(11):1628 -1629.
[47]O'BRYAN H M J,THOMSON J,PLOURDE J K.A new BaO-TiO2compound with temperature-stable high permittivity and low microwave Loss[J].Journal of the American Ceramic Society,1974,57(10):450-453.
[48]PLOURDE J K,LINN D F,O'BRYAN H M J,et al.Ba2Ti9O20as a microwave dielectric resonator[J].Journal of the American Ceramic Society,1975,58(9-10):418-420.
[49]FIEDZIUSZKOs J,HUNTER I C,ITOH T,et al.Dielectric materials,devices,and circuits[J].Microwave Theory and Techniques,IEEE Transactions on,2002,50(3):706 -720.
[50]中商情报网.2010~2015年中国微波介质陶瓷行业投资分析及深度研究咨询报告[EB/OL].http://www.askci.com/reports/2010-10/20101013152635.html,2010-10-13/2016-2-1.
[51]国务院办公厅.电子信息产业调整和振兴规划[EB/OL].http://www.gov.cn/zwgk/2009-04/15/content_1282430.htm,2009-04-15/2016-2-5.
[52]ALFORD N M N,PENNs J.Sintered alumina with low dielectric loss[J].Journal of Applied Physics,1996,80(10):5895-5898.
[53]OHISHI Y,MIYAUCHI Y,OHSATO H,et al.Controlled temperature coefficient of resonant frequency of Al2O3-TiO2ceramics by annealing treatment[J].Japanese Journal of Applied Physics,2004,43(6A):749-751.
[54]MISIRLI Z,ERKALFA H,ÖZKAN O T.Effect of B2O3addition on the sintering of α-Al2O3[J].Ceramics International,1996,22(1):33-37.
[55]TZOU W C,CHANGs L,YANG C F,et al.Sintering and dielectric properties of 0.88 Al2O3-0.12 TiO2microwave ceramics by glass addition [J].Materials Research Bulletin,2003,38(6):981-989.
[56]VALANT M,SUVOROV D.Glass-free low-temperature cofired ceramics:calcium germanates,silicates and tellurates [J].Journal of the European Ceramic Society,2004,24(6):1715-1719.
[57]孙慧萍,张启龙,杨辉,等.烧结助剂对CaO-B2O3-SiO2介电陶瓷结构与性能的影响[J].硅酸盐通报,2004,23(5):116-118.
[58]WANG H,ZHANG Q,YANG H,et al.Synthesis and microwave dielectric properties of CaSiO3nanopowder by the sol-gel process[J].Ceramics International,2008,34(6):1405-1408.
[59]TSUNOOKA T,ANDROU M,HIGASHIDA Y,et al.Effects of TiO2on sinterability and dielectric properties of high-Q forsterite ceramics[J].Journal of the European Ceramic Society,2003,23(14):2573-2578.
[60]TSUNOOKA T,SUGIYAMA H,KAKIMOTO K,et al.Zero temperature coefficient τfand sinterability of forsterite ceramics by rutile addition[J].Journal of Biochemistry,2004,116(2):315-320.
[61]SUGIHARA J,KAKIMOTO K,KAGOMIYA I,et al.Microwave dielectric properties of porous Mg2SiO4filling with TiO2prepared by a liquid phase deposition process[J].Journal of the European Ceramic Society,2007,27(8):3105-3108.
[62]OVCHAR O V,V'YUNOV O I,DURILIN D A,et al.Synthesis and microwave dielectric properties of MgO-TiO2-SiO2ceramics[J].Inorganic Materials,2004,40(10):1116-1121.
[63]GUO Y,OHSATO H,KAKIMOTO K.Characterization and dielectric behavior of willemite and TiO2-doped willemite ceramics at millimeter-wave frequency[J].Journal of the European Ceramic Society,2006,26(10):1827-1830.
[64]DONG M,YUE Z,ZHUANG H,et al.Microstructure and microwave dielectric properties of TiO2-doped Zn2SiO4ceramics synthesized through the sol-gel process[J].Journal of the American Ceramic Society,2008,91(12):3981-3985.
[65]NGUYEN N H,LIM J B,NAHMs,et al.Effect of Zn/Si ratio on the microstructural and microwave dielectric properties of Zn2SiO4ceramics[J].Journal of the American Ceramic Society,2007,90(10):3127-3130.
[66]OKAMURA T,KISHINO T.Dielectric properties of rare-earth-added cordierite at microwave and millimeter wave frequencies [J].Japanese Journal of Applied Physics,1998,37(9):5364-5366.
[67]TERADA M,KAWAMURA K,KAGOMIYA I,et al.Effect of Ni substitution on the microwave dielectric properties of cordierite[J].Journal of the European Ceramic Society,2007,27(8):3045-3048.
[68]YOKOI A,OGAWA H,KAN A,et al.Relationship between crystal structure and microwave dielectric properties of melilite-type ceramic[J].Journal of the European Ceramic Society,2007,27(8):2989-2993.
[69]JOSEPH T,SEBASTIAN M T.Microwave dielectric properties of(Sr1-xAx)2(Zn1-xBx)Si2O7ceramics(A=Ca,Ba and B=Co,Mg,Mn,Ni)[J].Journal of the American Ceramic Society,2010,93(1):147-154.
[70]SURENDRAN K P,SANTHA N,MOHANAN P,et al.Temperature stable low loss ceramic dielectrics in(1-x)ZnAl2O4-xTiO2system for microwave substrate applications[J].The European Physical Journal B-Condensed Matter and Complex Systems,2004,41(3):301-306.
[71]SURENDRAN K P,BIJUMON P V,MOHANAN P,et al.(1-x)MgAl2O4-xTiO2dielectrics for microwave and millimeter wave applications [J].Applied Physics A,2005,81(4):823-826.
[72]SURENDRAN K P,SEBASTIAN M T,MANJUSHA M V,et al.A low loss,dielectric substrate in ZnAl2O4-TiO2system for microelectronic applications [J].Journal of Applied Physics,2005,98(4):044101.
[73]ZHENG C W,WUs Y,CHEN X M,et al.Modification of MgAl2O4microwave dielectric ceramics by Zn substitution[J].Journal of the American Ceramic Society,2007,90(5):1483-1486.
[74]HUANG C L,YANG T J,HUANG C C.Low dielectric loss ceramics in the ZnAl2O4-TiO2system as a τfcompensator[J].Journal of the American Ceramic Society,2009,92(1):119-124.
[75]BELOUS A,OVCHAR O,DURILIN D,et al.High-Q Microwave Dielectric Materials Based on the Spinel Mg2TiO4[J].Journal of the American Ceramic Society,2006,89(11):3441-3445.
[76]REANEY I M,COLLA E L,SETTER N.Dielectric and structural characteristics of Ba-and Sr-based complex perovskites as a function of tolerance factor[J].Japanese Journal of Applied Physics,1994,33(7A):3984-3990.
[77]COLLA E L,REANEY I M,SETTER N.Effect of structural changes in complex perovskites on the temperature coefficient of the relative permittivity[J].Journal of Applied Physics,1993,74(5):3414-3425.
[78]SAGALA D A,NAMBUs.Microscopic calculation of dielectric loss at microwave frequencies for complex perovskite Ba(Zn1/3Ta2/3)O3[J].Journal of the American Ceramic Society,1992,75(9):2573-2575.
[79]GALASSO F,PYLE J.Ordering in compounds of the A(B(Ta0.67)O3type[J].Inorganic Chemistry,1963,2(3):482-484.
[80]TAMURA H,KONOIKE T,SAKABE Y,et al.Improved high-Q dielectric resonator with complex perovskite structure[J].Journal of the American Ceramic Society,1984,67(4):c59-c61.
[81]KIM Js,KIM J W,CHEON C I,et al.Effect of chemical element doping and sintering atmosphere on the microwave dielectric properties of barium zinc tantalates[J].Journal of the European Ceramic Society,2001,21(15):2599-2604.
[82]REANEY I M,WISE P L,QAZI I,et al.Ordering and quality factor in 0.95 BaZn1/3Ta2/3O3-0.05 SrGa1/2Ta1/2O3production resonators [J].Journal of the European Ceramic Society,2003,23(16):3021-3034.
[83]YANG J I,NAHMs,CHOI C H,et al.Effect of Ga2O3on microstructure and microwave dielectric properties of Ba(Zn1/3Ta2/3)O3ceramics[J].Japanese Journal of Applied Physics,2002,41(2A):702-706.
[84]YANG J I,NAHMs,CHOI C H,et al.Microstructure and microwave dielectric properties of Ba(Zn1/3Ta2/3)O3ceramics with ZrO2addition[J].Journal of the American Ceramic Society,2002,85(1):165-168.
[85]KIM M H,KIM B J,NAHMs,et al.Microstructure and microwave dielectric properties of SnO2-added Ba(Zn1/3Ta2/3)O3ceramics[J].Japanese Journal of Applied Physics,2004,43(7A):4259-4262.
[86]KIM M H,NAHMs,LEE Ws,et al.Effect of microstructure on microwave dielectric properties of Al2O3-added Ba(Zn1/3Ta2/3)O3ceramics[J].Japanese Journal of Applied Physics,2004,43(4R):1438-1441.
[87]JEONG Y H,KIM M H,NAHMs,et al.Effect of Ta2O5on microstructure and microwave dielectric properties of Ba(Zn1/3Ta2/3)O3ceramics[J].Japanese Journal of Applied Physics,2005,44(2A):702-706.
[88]KIM M H,NAHMs,LEE Ws,et al.Effect of B2O3and CuO on the sintering temperature and microwave dielectric properties of Ba(Zn1/3Ta2/3)O3ceramics[J].Japanese Journal of Applied Physics,2005,44(5A):3091-3094.
[89]NOMURAs,TOYAMA K,KANETA K.Ba(Mg1/3Ta2/3)O3ceramics with temperature-stable high dielectric constant and low microwave loss[J].Japanese Journal of Applied Physics,1982,21(10A):624-626.
[90]MATSUMOTO H,TAMURA H,WAKINO K.Ba(Mg,Ta)O3-BaSnO3high-Q dielectric resonator[J].Japanese Journal of Applied Physics,1991,30(9S):2347-2349.
[91]SURENDRAN K P,MOHANAN P,SEBASTIAN M T.The effect of glass additives on the microwave dielectric properties of Ba(Mg1/3Ta2/3)O3ceramics[J].Journal of Solid State Chemistry,2004,177(11):4031-4046.
[92]YOUN H J,KIM K Y,KIM H.Microstructural characteristics of Ba(Mg1/3Ta2/3)O3ceramics and its related microwave dielectric properties [J].Japanese Journal of Applied Physics,1996,35(7R):3947-3953.
[93]RENOULT O,BOILOT J P,CHAPUT F,et al.Sol-gel processing and microwave characteristics of Ba(Mg1/3Ta2/3)O3dielectrics[J].Journal of the American Ceramic Society,1992,75(12):3337-3340.
[94]MACLAREN I,PONTON C B.Low temperature hydrothermal synthesis of Ba(Mg1/3Ta2/3)O3sol-derived powders[J].Journal of Materials Science,1998,33(1):17-22.
[95]LEE Y C,LIANG M H,HU C T,et al.Microwave dielectric properties of Ba(Mg1/3Ta2/3)O3materials synthesized by inverse-microemulsion process[J].Journal of the European Ceramic Society,2001,21(15):2755-2758.
[96]ONODA M,KUWATA J,KANETA K,et al.Ba(Zn1/3Nb2/3)O3-Sr(Zn1/3Nb2/3)O3solid solution ceramics with temperature-stable high dielectric constant and low microwave loss[J].Japanese Journal of Applied Physics,1982,21(12):1707-1710.
[97]AHN C W,JANG H J,NAHMs,et al.Effects of microstructure on the microwave dielectric properties of Ba(Co1/3Nb2/3)O3and(1-x)Ba(Co1/3Nb2/3)O3-xBa(Zn1/3Nb2/3)O3ceramics[J].Journal of the European Ceramic Society,2003,23(14):2473-2478.
[98]AZOUGH F,LEACH C,FREER R.Effect of nonstoichiometry on the structure and microwave dielectric properties of Ba(Co1/3Nb2/3)O3ceramics[J].Journal of the European Ceramic Society,2006,26(14):2877-2884.
[99]MHAISALKARs G,READEY D W,AKBARs A.Microwave dielectric properties of doped BaTi4O9[J].Journal of the American Ceramic Society,1991,74(8):1894-1898.
[100]O'BRYAN H M,THOMSON J.Ba2Ti9O20phase equilibria [J].Journal of the American Ceramic Society,1983,66(1):66-68.
[101]FANG T T,SHIUE J T,LIOUs C.Formation mechanism and sintering behavior of Ba2Ti9O20[J].Journal of the European Ceramic Society,2002,22(1):79-85.
[102]LIN W,SPEYER R F.Fabrication of undoped near-monophase Ba2Ti9O20via rapid thermal processing[J].Journal of Materials Research,1999,14(05):1939-1943.
[103]MHAISALKARs G,LEE W E,READEY D W.Processing and characterization of BaTi4O9[J].Journal of the American Ceramic Society,1989,72(11):2154-2158.
[104]WU J M,WANG H W.Factors affecting the formation of Ba2Ti9O20[J].Journal of the American Ceramic Society,1988,71(10):869-875.
[105]LIN W Y,SPEYER R F,HACKENBERGER Ws,et al.Microwave properties of Ba2Ti9O20doped with zirconium and tin oxides [J].Journal of the American Ceramic Society,1999,82(5):1207-1211.
[106]WENG M H,LIANG T J,HUANG C L.Lowering of sintering temperature and microwave dielectric properties of BaTi4O9ceramics prepared by the polymeric precursor method[J].Journal of the European Ceramic Society,2002,22(9):1693-1698.
[107]CHOY J H,HAN Ys,SOHN J H,et al.Microwave characteristics of BaO-TiO2ceramics prepared via a citrate route [J].Journal of the American Ceramic Society,1995,78(5):1169-1172.
[108]NISHIGAKIs,YANOs,KATO H,et al.BaO-TiO2-WO3microwave ceramics and crystalline BaWO4[J].Journal of the American Ceramic Society,1988,71(1):11-17.
[109]TAKADA T,WANGs F,YOSHIKAWAs,et al.Effect of glass additions on BaO-TiO2-WO3microwave ceramics[J].Journal of the American Ceramic Society,1994,77(7):1909–1916.
[110]KIM D J,HAHN J W,HAN G P,et al.Effects of alkaline-earth-metal addition on the sinterability and microwave characteristics of(Zr,Sn)TiO4dielectrics[J].Journal of the American Ceramic Society,2000,83(4):1010-1012.
[111]HUANG C L,WENG M H.Liquid phase sintering of(Zr,Sn)TiO4microwave dielectric ceramics[J].Materials Research Bulletin,2000,35(11):1881-1888.
[112]HUANG C L,HSU Cs,LIN R J.Improved high-Q microwave dielectric resonator using ZnO and WO3-doped Zr0.8Sn0.2TiO4ceramics[J].Materials Research Bulletin,2001,36(11):1985-1993.
[113]ZHANGs X,LI J B,ZHAI H Z,et al.Low temperature sintering and dielectric properties of(Zr0.8Sn0.2)TiO4microwave ceramics using La2O3/BaO additives[J].Materials chemistry and physics,2003,77(2):470-475.
[114]JEAN J H,LINs C.Low-fire processing of ZrO2-SnO2-TiO2ceramics [J].Journal of the American Ceramic Society,2000,83(6):1417-1422.
[115]WANG Y R,WANGs F,WEN C K.Low-fire of(Zr0.8,Sn0.2)TiO4with glass additives[J].Materials Science and Engineering:A,2006,426(1):143-146.
[116]MATVEEVA R G,VARFOLOMEEV M B,ILYUSHCHENKO Ls.Refinement of the composition and crystalline-structure of Ba3.75Pr9.5Ti18O54[J].Zhurnal Neorganicheskoi Khimii,1984,29(1):31-34.
[117]OHSATO H,OHHASHI T,NISHIGAKIs,et al.Formation of solid solutions of new tungsten bronze-type microwave dielectric compounds Ba6--3xR8+2xTi18O54(R=Nd and Sm,0≤x≤1)[J].Japanese Journal of Applied Physics,1993,32(9):4323-4326.
[118]OHSATO H,IMAEDA M,TAKAGI Y,et al.Microwave quality factor improved by ordering of Ba and rare-earth on the tungsten bronze-type Ba6--3xR8+2xTi18O54(R=La,Nd and Sm)solid solutions[A].Applications of Ferroelectrics,1998.ISAF 98.Proceedings of the Eleventh IEEE International Symposium on[C].IEEE,1998:509-512.
[119]CHEN X M,LI Y.A-and B Site cosubstituted Ba6--3xSm8+2xTi18O54microwave dielectric ceramics[J].Journal of the American Ceramic Society,2002,85(3):579-584.
[120]ZUO M W,LI W,SHI J L,et al.Influence of CuO addition to BaSm2Ti4O12microwave ceramics on sintering behavior and dielectric properties [J].Materials Research Bulletin,2006,41(6):1127-1132.
[121]OTA Y,KAKIMOTO K,OHSATO H,et al.Low-temperature sintering of Ba6-3xSm8+2xTi18O54microwave dielectric ceramics by B2O3and Ge O2addition[J].Journal of the European Ceramic Society,2004,24(6):1755-1760.
[122]UBIC R,REANEY I M,LEE W E,et al.Properties of the microwave dielectric phase Ba6-3xNd8+2xTi18O54[J].Ferroelectrics,1999,228(1):271-282.
[123]BILOUS A,OVCHAR O.Pb-induced temperature stabilization of high dielectric constant in barium neodymium titanates [J].Ferroelectrics,2000,238(1):9-16.
[124]WU Y J,CHEN X M.Bismuth/Samarium cosubstituted Ba6-3xNd8+2xTi18O54microwave dielectric ceramics[J].Journal of the American Ceramic Society,2000,83(7):1837-1839.
[125]NARANGs B,KAUR D,BAHELs.Dielectric properties of lanthanum substituted barium titanate microwave ceramics [J].Materials Letters,2006,60(25):3179-3182.
[126]KATO J,KAGATA H,NISHIMOTO K.Dielectric properties of lead alkaline-earth zirconate at microwave frequencies[J].Japanese Journal of Applied Physics,1991,30(9B):2343-2346.
[127]KATO J,KAGATA H,NISHIMOTO K.Dielectric properties of(PbCa)(MeNb)O3at microwave frequencies[J].Japanese Journal of Applied Physics,1992,31(9S):3144-3147.
[128]LIU C L,WU T B.Effects of calcium substitution on the structural and microwave dielectric characteristics of [(Pb1-xCax)1/2La1/2](Mg1/2Nb1/2)O3ceramics[J].Journal of the American Ceramic Society,2001,84(6):1291-1295.
[129]HUANG C L,WENG M H.The effect of PbO loss on microwave dielectric properties of(Pb,Ca)(Zr,Ti)O3ceramics[J].Materials Research Bulletin,2001,36(3):683-691.
[130]HU M Z,ZHOU D X,GU Hs,et al.Influence of Bi2O3and MnO2doping on microwave properties of [(Pb,Ca)La](Fe,Nb)O3dielectric ceramics[J].Materials Science and Engineering:B,2005,117(2):199-204.
[131]QIN C,YUE Z,GUI Z,et al.Low-fired(PbCa)(FeNb)O3ceramics for multilayer microwave filter applications[J].Materials Science and Engineering:B,2003,99(1):286-289.
[132]赵梅瑜,王依琳.高介电常数微波陶瓷材料的研究进展[J].电子元件与材料,2006,24(12):50-54.
[133]YOSHIDA M,HARA N,TAKADA T,et al.Structure and dielectric properties of(Ca1-xNd2x/3)TiO3[J].Japanese Journal of Applied Physics,1997,36(11):6818-6823.
[134]TAKAHASHI H,BABA Y,EZAKI K,et al.Dielectric characteristics of(A1/2+·A1/23+)TiO3ceramics at microwave frequencies[J].Japanese Journal of Applied Physics,1991,30(9B):2339-2342.
[135]EZAKI K,BABA Y,TAKAHASHI H,et al.Microwave dielectric properties of CaO-Li2O-Ln2O3-TiO2ceramics[J].Japanese Journal of Applied Physics,1993,32(9):4319-4322.
[136]王焕平.溶胶-凝胶法制备低温共烧低介高频纳米陶瓷粉体及其应用技术研究[D].杭州:浙江大学,2007.
[137]DHAGEs R,RAVI V,DATEs K.Preparation of microwave dielectric,Sn0.2Zr0.8Ti4[J].Bulletin of Materials Science,2003,26(2):215-216.
[138]CHU L W,HSIUE G H,LIN I N.Improvement on the characteristic of Ba2Ti9O20microwave dielectric materials prepared by modified co-precipitation method[J].Journal of the European Ceramic Society,2006,26(10):2081-2085.
[139]XIONG Z X,HUANG J R,FANG C,et al.Hydrothermal synthesis of(Zr,Sn)TiO4nano-powders for microwave ceramics[J].Journal of the European ceramic society,2003,23(14):2515-2518.
[140]HUANG J R,XIONG Z X,FANG C,et al.Hydrothermal synthesis of Ba2Ti9O20nano-powder for microwave ceramics[J].Materials Science and Engineering:B,2003,99(1):226-229.
[141]CHOY J H,HAN Ys,HWANGs H,et al.Citrate route to Sn-Doped BaTi4O9with microwave dielectric properties[J].Journal of the American Ceramic Society,1998,81(12):3197-3204.
[142]ZHAO F,YUE Z,PEI J,et al.A novel microwave dielectric ceramic Ca2Zn4Ti16O38:preparation and dielectric properties [J].Journal of Solid State Chemistry,2006,179(6):1720-1726.
[143]ZHANG Q L,WU F,YANG H,et al.Preparation and dielectric properties of(Ca0.61,Nd0.26)TiO3nanoparticles by a sol-gel method[J].Journal of Materials Chemistry,2008,18(44):5339-5343.
[144]WU F,ZHANG Q,YANG H.Fabrication,Sintering and Electrical Properties of(Ca0.61,Nd0.26)TiO3Nanoparticles Doped with Li-Cu-B[J].Journal of Materials Science&Technology,2011,27(5):426-430.
[145]ZHANG Q L,WU F,YANG H.Sol-gel synthesis of A-site-ordered and homogeneous(Nd0.55,Li0.35)TiO3ceramic and its dielectric properties[J].Scripta Materialia,2011,65(9):842-845.
[146]HAO Y,ZHANG Q,ZHANG J,et al.Enhanced sintering characteristics and microwave dielectric properties of Li2TiO3due to nano-size and nonstoichiometry effect[J].Journal of Materials Chemistry,2012,22(45):23885-23892.
[147]曲远方.功能陶瓷材料[M].北京:化学工业出版社,2003.
[148]张锐,王海龙,许红亮.陶瓷工艺学[M].北京:化学工业出版社,2007.
[149]王树海.先进陶瓷的现代制备技术[M].北京:化学工业出版社,2007.
[150]陈振兴.特种粉体[M].北京:化学工业出版社,2004.
[151]苗鸿雁,罗宏杰.新型陶瓷材料制备技术[M].西安:陕西科学技术出版社,2003.
[152]李标荣.电子陶瓷工艺原理[M].武汉:华中理工大学出版社,1986.
[153]程鹏,郑勇,董作为,等.微波介质陶瓷制备技术研究进展[J].材料导报,2014,28(1):110-114.
[154]YOSHIDA A,OGAWA H,KAN A,et al.Sintering time dependence of microwave dielectric properties and crystal structure in Y2BaZnO5ceramic [J].Journal of European Ceramics Society,2005,25(12):2897-2900.
[155]CHEN W N,FAN H Q,LONG C B,et al.Effects of sintering time on crystal structure,dielectric properties and conductivity of(Ca0.8Sr0.2)ZrO3ceramics[J].Journal of Materials Science-Materials in Electronics,2014,25(3):1505-1511.
[156]LEI W,LU W Z,ZHU J H,et al.Effects of heating rate on microwave dielectric properties of(1-x)ZnAl2O4-xTiO2(x=0.21)[J].Ceramics International,2009,35(1):277-280.
[157]LI Z Q,GAO F,HU G X,et al.Effect of sintering parameters on the microstructure and microwave dielectric properties of Ba(Zn1/3Nb2/3)O3-ZnNb2O6ceramics[J].Journal of Materials Science-Materials in Electronics,2014,25(11):5020-5026.
[158]SHIN H K,SHIN H,BAEs T,et al,Effect of oxygen partial pressure during liquid-phase sintering on the dielectric properties of 0.9MgTiO3-0.1CaTiO3[J].Journal of American Ceramics Society,2008,91(1):132-138.
[159]ZHOU D,WANG H,YAO X,et al.Sintering behavior and microwave dielectric properties of Bi2O3-ZnO-Nb2O5based ceramics sintered under air and N2atmosphere [J].Ceramics International,2008,34(4):901-904.
[160]谭颖,沈春英,丘泰.微波烧结Ba6-3xSm8+2xTi18O54陶瓷材料的初步研究[J].压电与声光,2010,32(2):30-303.
[161]于洋,王旭升,姚熹.微波烧结BaZrxTi1-xO3陶瓷介电性能研究[J].功能材料,2013,44(1):111-114.
[162]蔡苇,符春林,胡文广,等.微波烧结制备铁酸铋陶瓷的介电性和铁电性[J].人工晶体学报,2013,42(8):1574-1579.
[163]KUMAR P,SINGHs,JUNEJA J K,et al.Improved properties of BPT ceramics using microwave sintering [J].Materials Letters,2015,142:84-86.
[164]MOHAMMADIs,SHOKROLLAHI H,BASIRI M H.Effects of Gd on the magnetic,electric and structural properties of BiFeO3nanstructures synthesized by co-precipitation followed by microwave sintering[J].Journal of Magnetism and Magnetic Materials,2015,375:38-42.
[165]CAI W,FU C,CHEN G,et al.Microstructure,dielectric and ferroelectric properties of barium zirconate titanate ceramics prepared by microwave sintering[J].Journal of Materials Science:Materials in Electronics,2014,25(11):4841-4850.
[166]汪胜祥,郑勇,刘文俊.SPS烧结技术及其在陶瓷材料制备中的应用[J].硬质合金,2004,20(4):232-236.
[167]CERNEA M,POLI G,ALDICA G V,et al.Preparation and properties of nanocrystalline BNT-BTxpiezoelectric ceramics by sol-gel and spark plasma sintering[J].Current Applied Physics,2012,12(4):1100-1105.
[168]NOH J H,JUNG Hs,LEE J K,et al.Microwave dielectric properties of nanocrystalline TiO2prepared using spark plasma sintering[J].Journal of the European Ceramic Society,2007,27(8-9):2937-2940.
[169]LI C C,WEI X Y,YAN H X,et al.Microwave dielectric properties of La3Ti2TaO11ceramics with perovskite-like layered structure[J].Journal of the European Ceramic Society,2012,32(16):4015-4020.
[170]SHIMs H,CHOI B G,YOON J W,et al,Microwave characteristics of MgTiO3-CaTiO3dielectric ceramics fabricated using spark plasma sintering [J].Japanese Journal of Applied Physics,2005,44(7A):5073-5075.
[171]LORITE I,RODRIGUEZ M A,AZOUGH F,et al.ZnAl2O4and(0.79)ZnAl2O4-(0.21)Mn2TiO4microwave dielectric ceramics prepared by hot pressing and spark plasma sintering [J].Journal of the American Ceramic Society,2012,95(3):1023-1028.
[172]CHANG C B,LEOU K C,SHU W Y,et al.Microwave dielectric properties of Ba2Ti9O20materials prepared by reaction sintering process[J].Journal of the European Ceramics Society,2006,26(10-11):2087-2091.
[173]LIN I N,CHANG C B,LEOU K C,et al.Effect of reaction sintering process on the microwave dielectric properties of Ba2Ti9O20materials [J].Journal of the European Ceramics Society,2010,30(2):159-163.
[174]朱生传,张药西.表面贴装型微波器件[J].电子元件与材料,2002,21(9):21-23.
[175]向勇,谢道华.新型片式元器件在移动通信领域的应用[J].移动通信,2001,25(10):26-28.
[176]吴坚强,郭慧锋,吴迪,等.低损耗贴片式独块状介质滤波器的设计与制作[J].电子元件与材料,2012,31(11):15-17.
[177]ASGARY R H,Zargar E T.Compact dielectric resonator antenna for PCS mobile handsets[A].Antennas and Propagation Society International Symposium,2000.IEEE[C].IEEE,2000:1670 -1673.
[178]MOON J,PARKs.Dielectric resonator antenna for dual-band PCS/IMT-2000[J].Electronics Letters,2000,36(12):1002 -1003.
[179]陈福厚.表面贴装元件的一些进展[C].电子元器件应用,2002(12):4-9.
[180]REANEY I M,IDDLES D.Microwave dielectric ceramics for resonators and filters in mobile phone networks [J].Journal of the American Ceramic Society,2006,89(7):2063-2072.
[181]汪小红,吕文中,刘坚,等.MgO对Ba0.6Sr0.4TiO3铁电陶瓷材料结构及低频特性的影响[J].硅酸盐学报,2004,32(6):738-742.
[182]孙建英,翟继卫,丑修建,等.Ba0.6Sr0.4TiO3-Mg2TiO4复合陶瓷材料的介电可调性及微波特性[J].硅酸盐学报,2007,35(11):1415-1418.
[183]REN P,FAN H,WANG X,et al.Modified tunable dielectric properties by addition of MgO on BaZr0.25Ti0.75O3ceramics[J].Materials Research Bulletin,2011,46(12):2308-2311.