纳米银/聚合物复合材料的制备研究进展
Progress in Preparation of Nanosilver/Polymer Composites
DOI: 10.12677/MS.2018.85050, PDF,    国家自然科学基金支持
作者: 李文博, 孙淑红, 刘 勇, 朱 艳:昆明理工大学,云南 昆明
关键词: 纳米银聚合物复合材料Nanosilver Polymer Composites
摘要: 纳米银聚合物复合材料具有非线性光学效应、光能转化效应等独特的物理化学性质,在抗菌自洁、表面增强拉曼散射光谱(SERS)等方面具有广阔的应用前景。研究表明纳米银/聚合物复合材料的制备技术对其结构以及性能有重要的影响,其制备方法可分为聚合物中掺入纳米银和聚合物表面沉积纳米银涂层两大类。本文对聚合物中掺入纳米银的方法——物理共混法、原位法、离子交换法,以及聚合物表面沉积纳米银涂层的方法——物理法、化学法、物理化学结合法分别进行了综述。
Abstract: Nanosilver/polymer composites have unique physical and chemical properties such as non-linear optical effects and optical energy conversion effects, and have broad application prospects in an-tibacterial self-cleaning, surface enhanced Raman scattering (SERS) and so on. Previous researches show that the preparation technology of nanosilver/polymer composites has an important influence on structure and performance. Its preparation methods can be divided into two categories: mixing nanosilver in polymer and coating nanosilver on polymer surface. In this paper, the methods of mixing nanosilver in polymers—physical blending method, in-situ method and ion exchange method, and the methods of coating nanosilver on polymer surface—physical method, chemical method, and physical-chemical combination method are respectively reviewed.
文章引用:李文博, 孙淑红, 刘勇, 朱艳. 纳米银/聚合物复合材料的制备研究进展[J]. 材料科学, 2018, 8(5): 447-454. https://doi.org/10.12677/MS.2018.85050

参考文献

[1] Temgire, M.K. and Joshi, S.S. (2004) Optical and Structural Studies of Silver Nanoparticles. Radiation Physics & Chemistry, 71, 1039-1044.
[Google Scholar] [CrossRef
[2] Españ-Sánchez, B.L., Ávi-la-Orta, C.A., Padilla-Vaca, F., Neira-Velázquez, M.G., González-Morones, P., Rodríguez-González, J.A., Hernández-Hernández, E., Rangel-Serrano, Á., Barriga-C, E.D., Yate, L. and Ziolo, R.F. (2014) Enhanced Antibacterial Ac-tivity of Melt Processed Poly(Propylene) Ag and Cu Nanocomposites by Argon Plasma Treatment. Plasma Processes and Polymers, 11, 353-365.
[Google Scholar] [CrossRef
[3] Chen, Z., Gang, T., Zhang, K., Zhang, J., Chen, X., Sun, Z. and Yang, B. (2006) Ag Nanoparticles-Coated Silica-PMMA Core-Shell Microspheres and Hollow PMMA Microspheres with Ag Nanoparticles in the Interior Surfaces. Colloids & Surfaces A Physicochemical & Engineering Aspects, 272, 151-156.
[Google Scholar] [CrossRef
[4] Yakutik, I.M. and Shevchenko, G.P. (2004) Self-Organization of Silver Nanoparticles Forming on Chemical Reduction to Give Monodisperse Spheres. Surface Science, 566-568, 414-418.
[Google Scholar] [CrossRef
[5] Huang, H., Yuan, Q. and Yang, X. (2004) Preparation and Characterization of Metal-Chitosan Nanocomposites. Colloids & Surfaces B Biointerfaces, 39, 31-37.
[Google Scholar] [CrossRef] [PubMed]
[6] Zhang, Z., Zhang, L., Wang, S., Wei, C. and Yong, L. (2001) A Convenient Route to Polyacrylonitrile/Silver Nanoparticle Composite by Simultaneous Polymerization & Reduction Approach. Polymer, 42, 8315-8318.
[Google Scholar] [CrossRef
[7] Shi, Q., Vitchuli, N., Nowak, J., Caldwell, J.M., Breidt, F., Bourham, M., Zhang, X. and Mccord, M. (2011) Durable Antibacterial Ag/Polyacrylonitrile (Ag/PAN) Hybrid Nano-fibers Prepared by Atmospheric Plasma Treatment and Electrospinning. European Polymer Journal, 47, 1402-1409.
[Google Scholar] [CrossRef
[8] Song, J., Kang, H., Lee, C., Sun, H.H. and Jang, J. (2012) Aqueous Synthesis of Silver Nanoparticle Embedded Cationic Polymer Nanofibers and Their Antibacterial Activity. Applied Materials & Interfaces, 4, 460-465.
[Google Scholar] [CrossRef] [PubMed]
[9] Nath, S., Ghosh, S.K., Kundu, S., Praharaj, S., Panigrahi, S., Basu, S. and Pal, T. (2005) A Convenient Approach to Synthesize Silver Nanoshell Covered Functionalized Polystyrene Beads: A Substrate for Surface Enhanced Raman Scattering. Materials Letters, 59, 3986-3989.
[Google Scholar] [CrossRef
[10] Favia, P., Vulpio, M., Marino, R., D’agostino, R., Mota, R.P. and Catalano, M. (2000) Plasma-Deposition of Ag-Containing Polyethyleneoxide-Like Coatings. Plasmas and Polymers, 5, 1-14.
[Google Scholar] [CrossRef
[11] Del Nobile, M.A., Cannarsi, M., Altieri, C., Sinigaglia, M., Favia, P., Iacoviello, G. and D’agostino, R. (2006) Effect of Ag-Containing Nano-Composite Active Packaging System on Survival of Alicyclobacillus acidoterrestris. Journal of Food Science, 69, E379-E83.
[12] Agarwala, M., Barman, T., Gogoi, D., Choudhury, B., Pal, A.R. and Yadav, R.N.S. (2014) Highly Effective Antibiofilm Coating of Silver-Polymer Nanocomposite on Polymeric Medical Devices Deposited by One Step Plasma Process. Journal of Biomedical Materials Research Part B Applied Biomaterials, 102, 1223-1235.
[Google Scholar] [CrossRef] [PubMed]
[13] Hebeish, A., Elshafei, A., Sharaf, S. and Zaghloul, S. (2014) In Situ Formation of Silver Nanoparticles for Multifunctional Cotton Containing Cyclodextrin. Carbohydrate Polymers, 103, 442-447.
[Google Scholar] [CrossRef] [PubMed]
[14] Tseng, C.-H., Wang, C.-C. and Chen, C.-Y. (2006) Polypro-pylene Fibers Modified by Plasma Treatment for Preparation of Ag Nanoparticles. The Journal of Physical Chemistry B, 110, 4020-4029.
[15] Deng, Y., Dang, G., Zhou, H., Rao, X. and Chen, C. (2008) Preparation and Characterization of Polyimide Membranes Containing Ag Nanoparticles in Pores Distributing on One Side. Materials Letters, 62, 1143-1146.
[16] Pollini, M., Paladini, F., Licciulli, A., Maffezzoli, A., Nicolais, L. and Sannino, A. (2012) Sil-ver-Coated Wool Yarns with Durable Antibacterial Properties. Journal of Applied Polymer Science, 125, 2239-2244.
[Google Scholar] [CrossRef
[17] Paladini, F., Simone, S., Sannino, A. and Pollini, M. (2014) Antibacterial and Antifungal Dressings Obtained by Photochemical Deposition of Silver Nanoparticles. Journal of Applied Polymer Science, 131, 2928-2935.
[Google Scholar] [CrossRef
[18] Svorcik, V., Siegel, J., Slepicka, P., Kotal, V., Svorcikova, J. and Spirkova, M. (2007) Au Nanolayers Deposited on Polyethyleneterephtalate and Polytetrafluorethylene Degraded by Plasma Discharge. Surface and Interface Analysis, 39, 79-85.
[Google Scholar] [CrossRef
[19] Reznickova, A., Makajova, Z., Kasalkova, N.S., Kolska, Z., Bacakova, L. and Svorcik, V. (2014) Growth of Muscle Cells on Plas-ma-Treated and Gold Nanoparticles-Grafted Polytetrafluoroethylene. Iranian Polymer Journal, 23, 227-236.
[Google Scholar] [CrossRef
[20] Reznickova, A., Novotna, Z., Kolska, Z. and Svorcik, V. (2014) Immobilization of Silver Nanoparticles on Polyethylene Terephthalate. Nanoscale Research Letters, 9, 305-310.
[Google Scholar] [CrossRef
[21] Shen, T., Liu, Y., Zhu, Y., et al. (2017) Improved Adhesion of Ag NPs to the Polyethylene Terephthalate Surface via, Atmospheric Plasma Treatment and Surface Functionalization. Applied Surface Science, 411, 411-418.