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Frontiers of Chemical Science and Engineering

ISSN 2095-0179

ISSN 2095-0187(Online)

CN 11-5981/TQ

Postal Subscription Code 80-969

2018 Impact Factor: 2.809

Front. Chem. Sci. Eng.    2008, Vol. 2 Issue (3) : 291-295    https://doi.org/10.1007/s11705-008-0059-3
Preparation and characterization of polyimide/silica/silver composite films
JIANG Lizhong, WU Dezhen, LUO Ning, WU Zhanpeng, MOU Nanxiang
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology;
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Abstract Polyimide/silica/silver hybrid films were prepared by the sol-gel method combined with in situ single-stage self-metallization technique. The structure of polyimide films in the thermal curing process and the influence of silica content on the migration and aggregation of silver particles to the surface of hybrid films were investigated. The hybrid films were characterized by transmission electron microscopy, dynamic mechanical thermal analysis, Fourier transform infrared spectroscopy, ultraviolet visible spectroscopy and mechanical measurements. The results indicated that there was no degradation of the polyimide matrix after the formation of silica and silver particles. Silica acted as the nucleus for the silver particles. With increasing silica content, more and more silver particles were kept in the hybrid films instead of being migrated onto the surface of the hybrid films and the reflections of hybrid films decreased gradually.
Issue Date: 05 September 2008
 Cite this article:   
WU Dezhen,JIANG Lizhong,MOU Nanxiang, et al. Preparation and characterization of polyimide/silica/silver composite films[J]. Front. Chem. Sci. Eng., 2008, 2(3): 291-295.
 URL:  
https://academic.hep.com.cn/fcse/EN/10.1007/s11705-008-0059-3
https://academic.hep.com.cn/fcse/EN/Y2008/V2/I3/291
1 Shao H Q, Zhong S H . Preparation and characterizationof supported polyimide-silica-silver hybrid membranes. Acta Polymerica Sinca, 2005, (4): 513–518 (in Chinese)
2 Jiang L Z, Liu J G, Wu D Z, Li H Q, Jin R G . A methodology for the preparation ofnanoporous polyimide films with low dielectric constants. Thin Solid Films, 2006, 510: 241–246.
doi:10.1016/j.tsf.2005.12.216
3 Li C F, Zhong S H . Polyimide-titania hybridmembrane prepared by the sol-gel process. Acta Polymerica Sinca, 2002, (3): 326–330 (in Chinese)
4 Zhang X W, Huang R . Polymer electrical conductivecomposites and their application developments. Journal of Functional Material, 1994, 25(6): 492–499 (in Chinese)
5 Tan S T, Zhang M Q, Rong M Z, Zeng H M, Li B E . Study on properties of metal fibre filledpolymer composites. Journal of MaterialEngineering, 1998, (12): 15–18 (in Chinese)
6 Giri A K . Magnetic properties of iron-polyethylene nanocomposites preparedby high energy ball milling. J Appl Phys, 1997, 81(3): 1348–1350.
doi:10.1063/1.363870
7 Naka K, Itoh H, Park S Y . Synthesis of nanocomposites of metal nanoparticles utilizingmiscible polymers. Polym Bull, 2004, 52: 171–176.
doi:10.1007/s00289‐004‐0269‐x
8 Zhou Y, Hao L Y, Zhu Y R, Hu Y, Chen Z Y . A novel ultraviolet irradiation techniquefor fabrication of polyacrylamide-metal (M = Au, Pd) nanocompositesat room temperature. J Nanoparticle Res, 2001, 3: 377–381.
doi:10.1023/A:1012545621498
9 Chen W M, Li B Q, Yuan Y . Preparation of crystal-polymer nanocomposites by radiatingthe hydrogel. Journal of University ofScience and Technology of China, 2001, 31(5): 590–595 (in Chinese)
10 Boldyryeva H, Kishimoto N, Umeda N, Kono K, Plaskin O A, Takeka Y . Surfacemodification and nanoparticle formation by negative ion implantationof polymers. Nucl Instru Meth B, 2004, 219: 953–958.
doi:10.1016/j.nimb.2004.01.195
11 Li G P, Luo Y J, Tan H M . Preparation of silver nanoparticles using dendrimer astemplate. Acta Chimica Sinica, 2004, 62(12): 1158–1161 (in Chinese)
12 Biswas A, Aktas O C, Kanzow J, Saeed V, Strunskus T, Zaporojtchenko V, Faupel F . Polymer-metal optical nanocompositeswith tunable particle plasmon resonance prepared by vapor phase co-deposition. Mater Lett, 2004, 58: 1530–1534.
doi:10.1016/j.matlet.2003.10.037
13 Suresh P, Yi L, Wong C P . Development of a novel polymer-metal nanocomposite obtainedthrough the route of in situ reduction for integral capacitor application. J Appl Polym Sci, 2004, 93: 1531–1538.
doi:10.1002/app.20626
14 Southward R E, Thomp son D W . Inverse C V D. A novel syntheticapproach to metallized polymeric films.Adv Mater, 1999, 11: 1043–1047.
doi:10.1002/(SICI)1521‐4095(199908)11:12<1043::AID‐ADMA1043>3.0.CO;2‐C
15 Song F, Wu D Z, Zhang Q, Qi S L, Jiang L Z, Jin R G . Surface silvered BTDA/4,4′-ODA/4,4′-SDA based polyimidefilms prepared via in situ single-stage self-metallized technique. Acta Polymerica Sinca, 2006, (2): 325–329 (in Chinese)
16 Wu Z P, Wu D Z, Yang W T, Jin R G . Preparationof highly reflective and conductive metallized polyimide films throughsurface modification: processing, morphology and properties. J Mater Chem, 2006, 16: 310–316.
doi:10.1039/b509537a
17 Xu H, Qu X L, Z J, Wang Y, Shi J X . Preparation of silver nanoparticles byhydrothermal reduction of ethylene glycol. Precious Metals, 2006, 27: 22–29 (in Chinese)
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