期刊文献+

聚合物中空微球的研究进展 被引量:4

Recent Development of Hollow Polymer Microspheres
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摘要 中空结构聚合物微粒具有低密度、高比表面积、稳定性好且可以容纳客体分子等特点在众多领域受到广泛关注。本文对聚合物中空结构微球的制备方法进行了综述,并简要介绍了聚合物中空微球在多个行业中的应用。 Hollow polymer microspheres have attracted widespread attentions in many fields due to the characteristics of low density,high specific surface area,and good stability,accommodate guest molecules and others.In this paper,the preparation methods of hollow polymer microspheres are reviewed and the applications of polymer hollow microspheres in various fields were described.
出处 《胶体与聚合物》 2012年第3期137-140,共4页 Chinese Journal of Colloid & Polymer
基金 国家自然基金项目(21044006 51173001) 安徽省自然基金项目(11040606M59) 安徽大学大学生科研训练计划项目(KYXL20110032)
关键词 聚合物中空微球 制备方法 应用 Hollow polymer microsphere; Preparation; Application
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参考文献31

  • 1Fu G D, Li G L, Neoh K G, et al. Hollow polymeric nanostructures-Synthesis, morphology and function [J]. Prog Polym Sci, 2011, 36(1): 127-167.
  • 2白飞燕,方仕江.模板法技术制备中空聚合物微球的进展[J].胶体与聚合物,2004,22(4):26-30. 被引量:9
  • 3Caruso F, Donath E, Mohwald H. Nanoengineering of inorganic and hybrid hollow spheres by coatings by colloidal templating[J]. Science, 1998,282(5391): 1111- 1114.
  • 4Antipov A A, Shchukin D, Mohwald H, et al. Carbonate microparticles for hollow polyelectrolyte capsules fabrication[J]. Colloids Surf A, 2003, 224(3): 175-183.
  • 5Marinakos S M, Shultz D A, Feldheim D L. Gold nanoparticles as templates for the synthesis of hollow nanometer-sized conductive polymer capsules [J]. Adv Mater, 1999, 11(1):34-37.
  • 6Morinaga T, Ohkura M, Ohno K, et al. Monodisperse silica particles grafted with concentrated oxetane-carrying polymer brushes: their synthesis by surface-initiated atom transfer radical polymerization and use for fabrication of hollow spheres [J]. Macromolecules, 2007, 40 (4):1159-1164.
  • 7Ma Q G, Wooley K L. The preparation oft-butyl acrylate, methyl acrylate, and styrene block copolymers by atom transfer radical polymerization: Precursors to amphiphilic and hydrophilic block copolymers and conversion to complex nanostructured materials[J]. J Polym Sci Part A: Polym Chem, 2000, 38(S1):4805-4820.
  • 8Li N, Ye G, Wang X G, et al. Hollow microspheres of amphiphilic azo homopolymers: self-assembly and photoinduced deformation behavior [J]. Chem Comm, 2011, 47(16): 4757-4759.
  • 9Xie D, Jiang M, Zhang Z, et al. Hydrogen-Bonded dendronized polymers and their self-assembly in solution[J]. Chem Eur J, 2007, 13(12): 3346-3353.
  • 10Meng X W, Liu J, Zhang S, et al.Degradable hollow spheres based on self-assembly inclusion [J]. Chem Commun, 2010, 46(4): 643-645.

二级参考文献57

  • 1杜涛.聚合物中空微球研究进展[J].科技资讯,2008,6(11). 被引量:1
  • 2邱德梅,季永新,刘玉鹏.造纸涂料用遮盖性空心球乳液的合成[J].化工时刊,2005,19(1):7-10. 被引量:6
  • 3袁才登,曹建伟,缪爱花,曹同玉.中空聚合物微球的制备——种子及核乳胶粒的制备[J].高校化学工程学报,2006,20(4):576-582. 被引量:7
  • 4Wang, Z. L.,Zhao, F. S.,Chen, D. J.,Li, D. T..Cloud point system as a tool to improve the efficiency of biotransformation[J].中国生物学文摘,2007,21(2):17-17. 被引量:1
  • 5C. Wischke, S. P. Schwendeman. Principles of encapsulating hydrophobic drugs in PLA/PLGA microparticles. Int. J. Pharm. , 2008 (364) : 298 - 327.
  • 6D. Papakostas, F. Rancan, S. Hadam, S. Hackbarth, T. Delair, B. Verrier, W. Sterry, U. Blume - Peytavi. PEA - nanoparticles as a drug delivery system for topical dermatotherapy. Exp. Dermatol. , 2009 ( 18 ) : 305 - 305.
  • 7Y. Wu, M. J. Li, H. X. Gao. Polymeric micelle composed of PLA and chitosan as a drug carrier. J. Polym. Res. , 2009 (16) : 11 - 1 $.
  • 8P. Couvreur, M. J. B. Prieto, F. Puisieux, B. Roques, E. Fattal. Multiple emulsion technology for the design of microspheres containing peptides and oligopeptides. Adv. Drug Del. Rev. , 1997 (28) : 85 - 96.
  • 9Nakashima T. , Shimizu M. , Kukizaki M. Membrane emulsification by microporous glass [ J ], Key Engineering Mater, 1991,513 : 61 - 62.
  • 10Rong Liu, Guanghui Ma, Fan - tao Meng,Zhi - guo Su. Preparation of uniform - sized PLA microcapsules by combining a Shirasu Porous Glass (SPG) membrane emulsification technique and multiple emulsion - solvent evaporation method[ J] ,Journal of Controlled Release, 2005, 103 : 31 -43.

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