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Nanoparticle Dispersion and Glass Transition Behavior of Polyimide-grafted Silica Nanocomposites

Nanoparticle Dispersion and Glass Transition Behavior of Polyimide-grafted Silica Nanocomposites
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摘要 How to control the spatial distribution of nanoparticles to meet different performance requirements is a constant challenge in the field of polymer nanocomposites.Current studies have been focused on the flexible polymer chain systems.In this study,the rigid polyimide(PI) chain grafted silica particles with different grafting chain lengths and grafting densities were prepared by "grafting to" method,and the influence of polymerization degree of grafted chains(N),matrix chains(P),and grafting density(a) on the spatial distribution of nanoparticles in the PI matrix was explored.The glass transition temperature(Tg) of PI composites was systematically investigated as well.The results show that silica particles are well dispersed in polyamic acid composite systems,while aggregation and small clusters appear in PI nanocomposites after thermal imidization.Besides,the particle size has no impact on the spatial distribution of nanoparticles.When σ·N0.5<<(N/P)2,the grafted and matrix chains interpenetrate,and the frictional resistance of the segment increases,resulting in restricted relaxation kinetics and Tg increase of the PI composite system.In addition,smaller particle size and longer grafted chains are beneficial to improving Tg of composites These results are all propitious to complete the microstructure control theory of nanocomposites and make a theoretical foundation for the high performance and multi-function of PI nanocomposites. How to control the spatial distribution of nanoparticles to meet different performance requirements is a constant challenge in the field of polymer nanocomposites.Current studies have been focused on the flexible polymer chain systems.In this study,the rigid polyimide(PI) chain grafted silica particles with different grafting chain lengths and grafting densities were prepared by "grafting to" method,and the influence of polymerization degree of grafted chains(N),matrix chains(P),and grafting density(a) on the spatial distribution of nanoparticles in the PI matrix was explored.The glass transition temperature(Tg) of PI composites was systematically investigated as well.The results show that silica particles are well dispersed in polyamic acid composite systems,while aggregation and small clusters appear in PI nanocomposites after thermal imidization.Besides,the particle size has no impact on the spatial distribution of nanoparticles.When σ·N0.5<<(N/P)2,the grafted and matrix chains interpenetrate,and the frictional resistance of the segment increases,resulting in restricted relaxation kinetics and Tg increase of the PI composite system.In addition,smaller particle size and longer grafted chains are beneficial to improving Tg of composites These results are all propitious to complete the microstructure control theory of nanocomposites and make a theoretical foundation for the high performance and multi-function of PI nanocomposites.
出处 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2020年第1期100-108,I0008,共10页 高分子科学(英文版)
基金 financially supported by the National Natural Science Foundation of China (Nos. 51503066 and 51873063) the National Basic Research Program of China (No. 2013CB035505) Shanghai Sailing Program (No. 14YF1404900) MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Zhejiang University (No. 2017MSF02)
关键词 Polyimide grafted nanoparticle Dispersion morphology Glass transition temperature Polyimide grafted nanoparticle Dispersion morphology Glass transition temperature
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  • 1李松林,刘务华,武治锋,李昆,袁勇,崔建民.超细镍粉的化学还原制备及其分散剂的作用[J].粉末冶金技术,2006,24(5):345-348. 被引量:8
  • 2Hsiao Y S, Wheaag W T, Wu S C, et al. Chemical formation of palladium-free surface-nickelized polyimide film for flexible electronics[J]. Thin Solid Filrns, 2008, 516(12): 4258-4266.
  • 3Zhan J Y, Tian G F, Jiang L Z, et al. Superparamagnetic polyimide/7-FezO3 mposite films: preparation and characterization[J]. Thin Solid Films, 2008, 516(18): 6315- 6320.
  • 4Qi S L, Wu Z P, Wu D Z, et al. Double-surface-silvered polyimide films prepared via a direct ion-exchange self-metallization process [J]. Chem. Mater., 2007, 19(3): 393-401.
  • 5Wu Z P, Wu D Z, Yang W T, et al. Preparation o{ highly reflective and conductive metallized polyimide films through surface modification: processing, morphology and properties[J]. J. Mater, Chem., 2006, 16(3): 310-316.
  • 6Mu S X, Wu D Z, Wang Y, et al. Fabrication of nickel oxide nanoeompzsite layer on a flexible polyimide substmte via ion exchange teehnique[J]. Appl. Mater. Interf. , 2010, 2(I) : 111-118.
  • 7Yu, T., Lin, J., Xu, J., Chen, T., Lin, S. and Tian, X., Compos. Sci. Technol., 2007, 67: 3219.
  • 8Wang, S.F., Lin, M.L., Shieh, Y.N., Wang, Y.R. and Wang, S.J., Ceram. Int., 2007, 33: 681.
  • 9Tartaglione, G., Tabuani, D. and Camino, G., Micropor. Mesopor. Mater., 2008, 107: 161.
  • 10Bmardic, I., Huskic, M., Zigon, M. and Ivankovic, M., J. Non-Cryst. Solids, 2008, 354: 1986.

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