磁性高分子材料分为复合型和结构型两类,分别阐述了复合型和结构型磁性高分子材料的研究和应用现状,强调了磁性高分子材料的发展意义,并对其理论和应用领域的开拓前景进行了展望.
参考文献
[1] | 张洪杰,洪广言,李德谦,牛春吉,倪嘉缵.我国稀土化学的进展[J].化学通报,2001(06):325-331. |
[2] | Isao K;Shinichi H;shoiehi Y .[P].Jpn kokai Tokkyo Koho Jp,2001,72:863. |
[3] | 刘颖,涂铭旌.磁性高分子粘结钕铁硼的性能[J].复合材料学报,1999(02):11-14. |
[4] | 宋云昌 .[P].CN ZL981110509,1998. |
[5] | 吴雪辉,李琳,郭祀远,蔡妙颜,郑必胜.影响磁性阳离子交换树脂制备的主要因素[J].华南理工大学学报(自然科学版),1999(10):47-51. |
[6] | 吴雪辉,郭祀远,李琳.磁性阳离子交换树脂的化学转化制备及机理研究[J].高分子材料科学与工程,2001(04):31-33. |
[7] | 王延梅,封麟先.磁性高分子微球的研究进展[J].高分子材料科学与工程,1998(05):6-8,14. |
[8] | Ding X B;Li W;Zhang W C et al.[J].Journal of Applied Polymer Science,2001,79(10):1847. |
[9] | 丁小斌,孙宗华,万国祥,江英彦.热敏性高分子包裹的磁性微球的合成[J].高分子学报,1998(05):0. |
[10] | 丁小斌;孙宗华;万国祥.[J].高分子学报,1999(06):674. |
[11] | 张军华,丁小斌,彭宇行,汪茫.具有光导性的磁性高分子粒子的合成与表征[J].高分子学报,2001(06):730-734. |
[12] | 余艺华,薛博,孙彦,何炳林.壳聚糖亲和磁性毫微粒的制备及其对蛋白质的吸附性能研究[J].高分子学报,2000(03):340. |
[13] | Daniel H;Bohuslav R;Jan S et al.[J].Biotechnology Progress,2001,17(03):447. |
[14] | Yang Ming;Xiao Gang et al.[J].Analyst,2001,126(05):676. |
[15] | Zaitsev V S;Filimonov D S et al.[J].Journal of Colloid and Interface Science,1999,212:49. |
[16] | 龚荣洲,官建国,方亮,袁润章.酞菁钴/铁纳米填充母粒的制备及其稳定性[J].化学物理学报,2000(03):345-358. |
[17] | Ziolo R F;Giannelis E P;Weinstein B A .[J].科学(上海),1992,257:219. |
[18] | Bunker B C;Rieke P C et al.[J].科学(上海),1992,264:48. |
[19] | Huczko A. .Template-based syntehsis of nanomaterials[J].Applied physics, A. Materials science & processing,2000(4):365-367. |
[20] | Schwanbeck H;Schmidt U .[J].Electrochimica Acta,2000(45):4389. |
[21] | Khoo M;Liu C .[J].Sensors and Actuators A:Physical,2001,89(03):259. |
[22] | Divoux C;Cugat O;Basrour S et al.[J].Proceedings of SPIE-The International Society for Optical Engineering,1998,3353(02):850. |
[23] | Body Christophe;Gilbert;Meunier Gerard et al.[J].IEEE Transactions on Magnetics,1997,33(02):2163. |
[24] | Pignard S.;Huynen I.;Radulescu A.;Piraux L.;Goglio G. .Ferromagnetic resonance in submicron metallic wires[J].IEEE Transactions on Magnetics,2000(5 Pt.1):3482-3484. |
[25] | Cao Huaqiang;Zheng;Sheng Dong et al.[J].Advanced Materials,2001,13(02):121. |
[26] | Affane W;Gibbs M R J;Powell A L .[J].Sensors and Actuators A-physical,1995(51):219. |
[27] | Aliev Farkhad G;Miguel A;Mamedov Arif et al.[J].Advanced Materials,1999,11(02):1006. |
[28] | Wan MX.;Fan JH. .Synthesis and ferromagnetic properties of composites of a water-soluble polyaniline copolymer containing iron oxide[J].Journal of Polymer Science, Part A. Polymer Chemistry,1998(15):2749-2755. |
[29] | Wan M X;Li J C .[J].Polymer Chemistry:Part A,1998,36:2799. |
[30] | Deng JG.;Ding XB.;Zhang WC.;Peng YX.;Wang JH.;Long XP.;Li P.;Chan ASC. .Magnetic and conducting Fe3O4-cross-linked polyaniline nanoparticles with core-shell structure[J].Polymer: The International Journal for the Science and Technology of Polymers,2002(8):2179-2184. |
[31] | Lin ZR. .Organometallic polymers with ferromagnetic properties[J].Advanced Materials,1999(13):1153-1154. |
[32] | Lin Z R;Ni X M;Hu H J .[J].自然科学进展(英文版),1996,6(01):120. |
[33] | James M.;Horvat J. .The crystal structure and magnetic properties of the 1-dimensional dihalide-bridged polymers dichlorobis(thiazole)cobalt(II) and dibromobis(thiazole)-cobalt(II)[J].The journal of physics and chemistry of solids,2002(4):657-663. |
[34] | Ishida Takayuki;Nogami Takashi;Yasui Masanori et al.[J].Molecular Crystals and Liquid Crystals,1995,278-279:87. |
[35] | Fujiwara M;Mori W;Yamaguchi K .[J].Molecular Crystals and Liquid Crystals,1994,273-274:175. |
[36] | Wan M X;Zhang C H;Li C J .[J].Solid State Communications,1993,87(05):379. |
[37] | 林展如;倪训铭 .[P].CN ZL 911109919,1993. |
[38] | 林展如,干久志,林云,倪训铭,胡汉杰.有机磁性材料的磁损耗与微波电子器件的开发[J].微波学报,2000(01):78-84. |
[39] | 干久志,林云,林展如.轻质金属有机高分子吸波剂(OPA)及其RAM的性能研究[J].功能材料,2001(05):456-458. |
[40] | Ando Y et al.[J].Molecular Crystals and Liquid Crystals,1996,285-286:89. |
[41] | Ata M;Machida M;Watanabe H et al.[J].Japanese Journal of Applied Physics Part 1,1994(33):1865. |
[42] | Awaga K .[J].Oyo Butsuri,2001,70(03):304. |
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