JEFFERSON D, UPPAL M, RAO C, et al. Elastic strain at thesolid-solid interface in intergrowth structures:A novel example ofpartial structure refinement by HREM [J]. Mater Res Bull, 1984,19(11): 1403–1409.
[3]
MERCURIO D, TROLLIARD G, HANSEN T, et al. Crystal structureof the ferroelectric mixed Aurivillius phase Bi7Ti4NbO21[J]. Int J InorgMater, 2000, 2(5): 397–406.
[4]
LUO S, NOGUCHI Y, MIYAYAMA M, et al. Rietveld analysis anddielectric properties of Bi2WO6-Bi4Ti3O12 ferroelectric system [J].Mater Res Bull, 2001, 36(3-4): 531–540.
[5]
YUJI Noguchi, MASARU Miyayama, TETSUICHI Kudo, et al.Ferroelectric properties of intergrowth Bi4Ti3O12-SrBi4Ti4O15ceramics[J]. Appl Phys Lett, 2000, 77(22): 3639–3641.
NOGUCHI Y, MIYAYAMS M, OIKAWA K, et al. Cation-vacancyinducedlow coercive filed in La-modified SrBi2Ta2O9[J]. J Appl Phys,2004, 95(8): 4261–4266.
[8]
YAN H X, LI C E, ZHOU J G. Effects of A-site (NaCe)substitutionwith Na-deficiency on structures and properties of CaBi4Ti4O15-basedhigh-curie-temperature ceramis [J]. Jpn J Appl Phys, 2001, 40(11):6501–6505.
MA L, ZHAO K, LI J X, et al. Dielectric and piezoelectric propertiesof (Li,Ce) modified NaBi5Ti5O18 composite ceramics[J]. J Rare Earths,2009, 27(3): 496–500.
[12]
WANG C M, WANG J F, MAO C L, et al. Enhanced dielectric andpiezoelectric properties of Aurivillius-type potassium bismuth titanceceramics by cerium modification [J]. J Am Ceram Soc, 2008, 91(9):3094–3097.
[13]
WANG C M, LU Y Q, WANG D, et al. Piezoelectric and dielectricproperties of cerium-modified Aurivillius type Na0.5La0.5Bi4Ti4O15ceramics[J]. Mater Chem Phys, 2009, 114(2/3): 1004–1007.
[14]
CHEN Q, XU Z J, CHU R Q, et al. Ferroelectric and dielectricproperties of Sr2–x(Na,K)xBi4Ti5O18 lead-free piezoelectric ceramics[J].Phys B:Condnsed Matter, 2010, 405(13): 2781–2784.
[15]
SHIMAKAWA Y, KUBO Y, TAUCHI Y, et al. Crystal and electronicstrucyures of Bi4–xLaxTi3O12 ferroelectric materials[J]. Appl Phys Lett,2001, 79(17): 2971–2973.
[16]
张丽娜, 李国荣, 赵苏串, 等. Nb 掺杂Bi4Ti3O12 层状结构铁电陶瓷的电行为特性研究[J]. 无机材料学报, 2005, 20(6): 1389–1395.ZHANG L N, LI G R, ZHAO S C, et al. J Inorg Mater (in Chinese),2005, 20(6): 1389–1395.
WANG W, SHAN D, SUN J B, et al. Aliovalent B-site modification onthree-and four-layer Aurivillius intergrowth[J]. J Appl Phys, 2008,103(4): 044102.
[19]
冯元元. 高温铋层状压电陶瓷Na0.5Bi4Ti5O15 和Na0.5Bi2.5Nb2O9 的改性研究[D]. 济南: 山东大学, 2012.FENG Yuanyuan. Study on modification of high temperature Aurivilliusphase piezoelectric ceramics Na0.5Bi4Ti5O15 and Na0.5Bi2.5Nb2O9 (inChinese, dissatation). Jinan: Shandong University, 2012.
[20]
郭振雷. 高温铋层状结构压电陶瓷的电学性能研究[D]. 济南: 山东大学, 2013.GUO Zhenlei. The electrical properties of high temperature bismuthlayer-structured piezoelectric ceramics(in Chinese, dissatation). Jinan:Shandong University, 2013.