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具有高介电常数(k)的钛酸钡/聚合物复合材料,兼有钛酸钡陶瓷和聚合物的各自优势,是一种有广泛应用前景的电子材料,因而备受关注。综合给出了近5年来高性能钛酸钡/聚合物复合材料的研究进展,分析指出了原材料选择、制备工艺及其对复合材料介电性能的影响,概括介绍了这类复合材料的主要应用,预测展望了其未来的发展趋势。

Barium titanate/polymer composites with high dielectric constant (k) were very promising electronic materials because the composites combined the advantages of barium titanate ceramics and polymers individual- ly. In this paper, the research progresses of high performance barium titanate/polymer composites in recent five years are outlined, the choosing of raw materials and the preparation technologies and their influence on the die- lectric properties of the composites are pointed out, the major applications of the composites are introduced, and the development trend and the future prospect of barium titanate/polymer composites are reviewed.

参考文献

[1] Kakimoto M;Takahashi A;Tsurumi T et al.[J].Materials Science and Engineering B:Solid State Materials for Advanced Technology,2006,132(1-2):74-78.
[2] Tang Hailong;Zhong Jiachun;Yang Jian et al.[J].Journal of Electronic Materials,2011,40(02):141-148.
[3] 李珂,张德,周飞.钛酸钡系无铅压电陶瓷的研究进展[J].中国陶瓷,2007(12):17-20,8.
[4] Hanemann .T;Gesswein H;Schumacher B .[J].Microsystem Technologies,2011,17:195-201.
[5] 肖长江,王春华.钛酸钡结构和性能尺寸效应的研究进展[J].硅酸盐通报,2008(01):111-114.
[6] 张凯,黄渝鸿,郝晓东,周德惠.环氧树脂改性技术研究进展[J].化学推进剂与高分子材料,2004(01):12-14.
[7] 王志远,陈福林,张兴华.国内PET改性研究的最新进展[J].聚酯工业,2006(03):1-4.
[8] 朱小兰;唐建军 .[J].科技传播,2010,21(上):86-88.
[9] 黄佳佳,张勇,陈继春.高储能密度介电材料的研究进展[J].材料导报,2009(z2):307-312,321.
[10] Dang Zhimin;Zheng Yang;Xu Haiping et al.[J].Journal of Applied Polymer Science,2008,110:3473-3479.
[11] Tang Hailong;Ma Zhen;Zhong Jiachun et al.[J].Colloids and Surface A Physicochemical and Engineer-ing Aspects,2011,384:311-317.
[12] Eduard A;Stefanescu;Tan Xiaoli et al.[J].Polymer,2011,52:2016-2024.
[13] Dang Zhimin;Lin Youqin;Xu Haiping et al.[J].Advanced Functional Materials,2008,18:1509-1517.
[14] 申玉芳,邹正光,李含,龙飞,吴一.高介电聚合物/无机复合材料研究进展[J].材料导报,2009(03):29-34.
[15] Lu Jiongxin;Wong C P .[J].IEEE Transactions on Di-electrics and Electrical Insulation,2008,15(05):1322-1328.
[16] Rao Y;Ogitani Y;Kohl P et al.[J].Jourani of Ap- plied Polymer Science,2002,83(05):1084-1090.
[17] Lu J;Moon K S;Wong C P et al.[J].Polymer,2007,48:1510-1516.
[18] 党志敏;王海燕;彭勃 .[J].中国电机工程学报,2006,26(15):100-104.
[19] Chao Fen;Liang Guozheng .[J].Mater Electron,2009,20:560-564.
[20] 罗隧斌;于淑会;孙蓉 等.[J].电子元件与材料,2011,30(01):46-49.
[21] Yshio K;Akira K;Daisuke N.[J].Polymer Com- posites,2010:1178-1183.
[22] Joohyun L;Youngjun K;Jinhwan K .[J].Macromolec- ular Research,2010,18(02):200-203.
[23] 卢鹏荐,王一龙,孙志刚,官建国.高介电常数、低介电损耗的聚合物基复合材料[J].化学进展,2010(08):1619-1625.
[24] 党志敏;王海燕;王岚 .[J].复合材料学报,2005,22(05):9-15.
[25] Dang Zhimin;Xia Bing;Yao Shenghong et al.[J].Applied Physics Letters,2009,94:042902.
[26] Dang Z M;Shen Y;Nan C W .[J].Applied Physics Letters,2002,81(25):4814-4816.
[27] Bae, M.J.;Kim, J.-Y.;Park, S.H.;Jeong, T.;Song, S.;Lee, J.;Han, I.;Jung, D.;Yoo, J.B.;Liu, C.;Yu, S. .High performance dielectric film using SiO2-coated short carbon nanotubes in BaTiO3-polymer composite[J].Electronics Letters,2011(11):664-665.
[28] Yao Shenghong;Yuan Jinkai;Dang Zhimin et al.[J].Materials Letters,2010,64:2682-2684.
[29] Ioannou G;Patsidis A;Psarras G C .[J].Composites Part A:Applied Science and Manufacturing,2011,42:104-110.
[30] Guo Z;Lee S E;Kim H et al.[J].Acta Materialia,2009,57:267-277.
[31] Gorzkowski Edward P;Pan Mingjen .[J].IEEE Trans- actions on Ultrasonics Ferroelectrics and Frequency Control,2009,56(08):1613-1616.
[32] 刘源波,王琪.固相剪切碾磨方法制备聚丙烯/钛酸钡高介电常数复合材料[J].功能高分子学报,2007(02):117-121.
[33] Benedikt S;Holge G;Jtirgen H et al.[J].Microelec- tronic Engineering,2010,87:1978-1983.
[34] Sumesh G;Thomas S M .[J].Composites Science and Technology,2009,69:1298-1302.
[35] Mailadil T S;Heli J .[J].International Journal of Ap-plied Ceramic Technology,2010,7(04):415-434.
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