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模板法制备新型有机-无机复合微球材料研究进展 被引量:5

Progress in Research on Organic-Inorganic Composite Microspheres Employing Template Method
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摘要 依据维系模板作用力的特点,将模板分为以分子间或分子内的弱相互作用维系特异形状的软模板和以共价键维系特异形状的硬模板。并对软模板法和硬模板法制备各种有机-无机复合微球的最新研究给予了较系统的总结和评述。 The recent progress in synthesis of special organic-inorganic composites microspheres employing template method is reviewed in this article. Templates can be divided into soft-template and hard-template. A spatial structure of soft-template is maintained by weak interaction of intra- or inter- molecular, and a spatial structure of hardtemplate is hold by covalent bond. Based on these templates, different organic-inorganic composite microspheres have been prepared in recent years. In this paper, the researches on these materials are summarized and reviewed.
出处 《材料导报》 EI CAS CSCD 北大核心 2007年第3期54-58,共5页 Materials Reports
基金 国家自然科学基金资助项目(20576068) 陕西省基金资助项目(2005B12)
关键词 模板法 有机-无机复合微球材料 软模板 硬模板 template method, organic-inorganic composite microspheres, soft-template, hard-template
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参考文献60

  • 1Williams W D,Giordano N.Rev Sci Instrum,1984,55:410
  • 2Kawahashi N,Persson C,Matijevi E.J Mater Chem,1991,1(4):577
  • 3Yin J L,Qian X F,Yin J,et al.Inorg Chem Commun,2003:942
  • 4Wu D Z,Ge X W,Huang Y H,et al.Mater Lett,2003,57:3549
  • 5Zhu Y J,Qian Y T,Li X J,et al.Chem Commun,1997:1081
  • 6Yin J L,Qian X F.Mater Lett,2003,57:3859
  • 7Antonietti M,Grohn F,Bronstein J H.Angew Chem Int Ed,1997,36:2080
  • 8Valtchev V.Chem Mater,2002,14:956
  • 9Caruso R A,Susha A,Caruso F.Chem Mater,2001,13:400
  • 10Valtchev V.Chem Mater,2002,14:4371

二级参考文献35

  • 1方积年.硫酸酯化多糖的研究进展[J].中国药学杂志,1993,28(7):393-395. 被引量:56
  • 2张志琨 崔作林.纳米技术与纳米材料[M].北京:国防工业出版社,2000,10..
  • 3Baba M, Nakajima M, Pauwels R, et al. Pentosan polysulfate,a sulfated oligosaccharide,is a potent and selective anti-HIVagent in vitro[J]. Antiviral Rrs, 1988, (9) : 335-342.
  • 4Garcia A M, Ghaly E S. Drug realease from microspheres[J]. J Controlled Release, 1996,40(3):179-186.
  • 5Murray C B, Norris D J, Bawendi M G. Synthesis and characterization of nearly monodisperse CdE (E = sulfur, selenium, tellurium) semiconductor nanocrystallites. J Am Chem Soc, 1993, 115(19): 8706~8715
  • 6Kuckling D, Vo C D, Wohlrab S E. Preparation of nanogels with temperature-responsive core and pH-responsive arms by photo- cross-linking. Langmuir, 2002, 18(11): 4263~4269
  • 7Antonietti M, Goltner C. Superstructures of functional colloids: chemistry of the nanometer scale. Angew Chem Int Ed, 1997, 36: 910~928
  • 8Shim J W, Kim J W, Han S H, et al. Zinc oxide/polymethylmethacry- late composite microspheres by in situ suspension polymerization and their morphological study. Colloids and Surfaces A: Physicochem. Eng Aspects, 2002, 207(1-3): 105~111
  • 9Ozin G A. Panoscopic materials: synthesis over " all " length scales. Chem Commun, 2000, 419~432
  • 10Liang Z J, Susha A, Caruso F. Gold nanoparticle-based core-shell and hollow spheres and ordered assemblies thereof. Chem Mater, 2003, 15(16): 3176~3183

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