欢迎登录材料期刊网

材料期刊网

高级检索

回顾了压电聚合物的历史,探讨了不同结构形态聚合物的压电机理,详细综述了脂肪族聚酰胺压电性能的研究历史和现状,讨论了芳香族聚酰胺及聚酰胺复合薄膜的压电性,最后进一步指出了聚酰胺压电性能的研究方向.

参考文献

[1] 夏钟福.驻极体[M].北京:科学出版社,2001:352.
[2] Eberle G.;Schmidt H. .Piezoelectric polymer electrets[J].IEEE transactions on dielectrics and electrical insulation: A publication of the IEEE Dielectrics and Electrical Insulation Society,1996(5):624-646.
[3] Eiichi Fukada .Recent Developments of Polar Piezoelectric Polymers[J].IEEE transactions on dielectrics and electrical insulation: A publication of the IEEE Dielectrics and Electrical Insulation Society,2006(5):1110-1119.
[4] Fukada E. .History and recent progress in piezoelectric polymers[J].IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control,2000(6):1277-1290.
[5] Kawai H .The piezoelectricity of poly(vinylidene fluoride)[J].Japanese Journal of Applied Physics,1969,8:975.
[6] Zhu Guodong;Zeng Zhigang;Zhang Li .Piezoelectricity in β-phase PVDF crystals:A molecular simulation study[J].Computational Materials Science,2008,44:224.
[7] Wang X S;Iijima M;Takahashi Y et al.Dependence of piezoelectric and pyroelectric activities of aromatic polyurea thin films on monomer composition ratio[J].Japanese Journal of Applied Physics,1993,32:2768.
[8] Ueda H;CarrS H .Piezoelectricity in polyacrylnitrile[J].Polymer Journal,1984,16(09):661.
[9] Gonzalo B;Vilas JL;Breczewski T;Perez-Jubindo MA;De La Fuente MR;Rodriguez M;Leon LM .Synthesis, Characterization, and Thermal Properties of Piezoelectric Polyimides[J].Journal of Polymer Science, Part A. Polymer Chemistry,2009(3):722-730.
[10] Newman B A;Chen P;Pae K D .Piezoelectricity in nylon 11[J].Journal of Applied Physics,1980,51(10):5161.
[11] 夏钟福.压电聚合物驻极体材料的现状与动态[J].压电与声光,2005(02):124-127.
[12] Harrison J S;Ounaies Z .Piezoelectric polymers[NASA/CR-2001-211422][R].,2001.
[13] Salizer E;Fedderly J;Haucht D et al.FTIR and X-ray study of polymorphs of nylon 11 and relation to ferroelectricity[J].Journal of Polymer Science Part B:Polymer Physics,1994,32:365.
[14] 张桂芳,张华,任萍.压电高聚物尼龙11的研究进展[J].天津工业大学学报,2006(03):20-22,26.
[15] Oumies Z;Young J A;Harrison J S .Design requirements for amorphous piezoelectric polymers[NASA/TM-1999209359][R].,1999.
[16] Cheol Park;Zoubeida Ounaies;Kristopher E.Wise;Joycelyn S.Harrison .In situ poling and imidization of amorphous piezoelectric polyimides[J].Polymer: The International Journal for the Science and Technology of Polymers,2004(16):5417-5425.
[17] 胡南,刘雪宁,杨治中.聚合物压电智能材料研究新进展[J].高分子通报,2004(05):75-82.
[18] Scheinbeim J I;Lee J W;Newman B A .Ferroelectric polarization mechanisms in nylon 11[J].Macromolecules,1992,25:3729.
[19] Lee J W;Takase Y;Newman B A et al.Ferroelectric polarization switching in nylon-11[J].Journal of Polymer Science Part B:Polymer Physics,1991,29:273.
[20] Brown L F.Ferroelectric nylon-5 and nylon-7 dielectric and electromechanical properties and ultrasonic transducer performance[A].East Brunswick,N J,1996:87.
[21] Mathur S C;Scheinbeim J I;Newman B A .Piezoelectric properties and ferroelectric hysteresis effects in uniaxially stretched nylon-11 films[J].Journal of Applied Physics,1984,56(09):2419.
[22] Mei B Z;Scheinbeim J I;Newman B A .The ferroelectric behaviour of odd-numbered nylons[J].Ferroelectrics,1993,144(01):51.
[23] Takase Y;Lee J W;Schinbeim J I et al.High temperature characteristics of nylon-11 and nylon-7 piezoelectrics[J].Macromolecules,1991,24:6644.
[24] WU S.L.;SCHEINBEIM J.I.;NEWMAN B.A. .Ferroelectricity and Piezoelectricity of Nylon 11 Films with Different Draw Ratios[J].Journal of Polymer Science, Part A. Polymer Chemistry,1999(19):2737-2746.
[25] Lee J W;Takase Y;Newman B A et al.Effect of annealing on the ferroelectric behavior of nylon-11 and nylon-7[J].Journal of Polymer Science Part B:Polymer Physics,1991,29:279.
[26] Newman B A;Kim K G;Scheinbeim J I .The effects of water content on the piezoelectric properties of nylon-11 and nylon-7[J].Journal of Materials Science,1990,25:1779.
[27] Mathur S C;Sen A;Newman B A .Effects of plasticization on the piezoelectric properties of nylon 11 films[J].Journal of Materials Science,1988,23:977.
[28] Yukinobu Murata;Kenji Tsunashima;Naokazo Koizumi.Ferroelectric properties in polyamides consisted of heptaand nonamethylenediamines[A].,1996:847.
[29] Takashi Itoh;Toshihiko Tanaka;Masato Hashimoto et al.Ferroelectric hysteresis behavior and structural property of even-numbered nylon film[J].Japanese Journal of Applied Physics,1995,11(34):6164.
[30] Itoh T;Takano M;Yanagisawa T et al.Ferroelectricity in odd-and even-numbered nylons[J].Ferroelectrics,1998,216(01):35.
[31] Capsal, J.-F.;Dantras, E.;Dandurand, J.;Lacabanne, C. .Dielectric relaxations and ferroelectric behaviour of even-odd polyamide PA 6,9[J].Polymer: The International Journal for the Science and Technology of Polymers,2010(20):4606-4610.
[32] Yukinobu Murata;Kenji Tsunashima;Naokozu Koizumi .Ferroelectric behavior in polyamides of m-xylylenediamine and dicarboxylic acids[J].Japanese Journal of Applied Physics,1995,34:6458.
[33] Naokazu Koizumi .Ferroelectric behavior in polyamides constituted of ring systems[J].Ferroelectrics,1995,171(01):57.
[34] Yukinobu Murata;Kenji Tsunashima;Naokozu Koizumi .Dielectric loop in alicyclic and aromatic polyamides[J].Japanese Journal of Applied Physics,1994,33:354.
[35] Su J;Ma Z Y;Scheinbeim J I et al.Ferroelectric and piezoelectric properties of nylon 11/poly(vinylidene fluoride) bilaminate films[J].Journal of Polymer Science Part B:Polymer Physics,1995,33:85.
[36] Gao Q.;Scheinbeim JI. .Dipolar intermolecular interactions, structural development, and electromechanical properties in ferroelectric polymer blends of nylon-11 and poly(vinylidene fluoride)[J].Macromolecules,2000(20):7564-7572.
[37] GAO QIONG;SCHEINBEIM JERRY I. .Ferroelectric Properties of Nylon 11 and Poly(vinylidene Fluoride)Blends[J].Journal of Polymer Science, Part B. Polymer Physics,1999(22):3217-3225.
[38] Lang S B;Muensit S .Review of some lesser known applications of piezoelectric and pyroelectric polymers[J].Applied Physics A:Materials Science and Processing,2006,85:125.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%