Facile synthesis of electromagnetic Ni@glass fiber composites via electroless deposition method
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  • 作者:Ruihua Zhou ; Huiyu Chen ; Chunju Xu ; Xin Hou…
  • 刊名:Journal of Materials Science: Materials in Electronics
  • 出版年:2015
  • 出版时间:June 2015
  • 年:2015
  • 卷:26
  • 期:6
  • 页码:3530-3537
  • 全文大小:3,081 KB
  • 参考文献:1.W.L. Song, M.S. Cao, M.M. Lu, S. Bi, C.Y. Wang, J. Liu, J. Yuan, L.Z. Fan, Flexible graphene/polymer composite films in sandwich structures for effective electromagnetic interference shielding. Carbon 66, 67-6 (2014)View Article
    2.S. Kwon, R.J. Ma, U. Kim, H.R. Choi, S. Baik, Flexible electromagnetic interference shields made of silver flakes, carbon nanotubes and nitrile butadiene rubber. Carbon 68, 118-24 (2014)View Article
    3.X.M. Liu, X.W. Yin, L. Kong, Q. Li, Y. Liu, W.Y. Duan, L.T. Zhang, L.F. Cheng, Fabrication and electromagnetic interference shielding effectiveness of carbon nanotube reinforced carbon fiber/pyrolytic carbon composites. Carbon 68, 501-10 (2014)View Article
    4.G. Sreenivasulu, M. Popov, R. Zhang, K. Sharma, C. Janes, A. Mukundan, G. Srinivasan, Magnetic field assisted self-assembly of ferrite–ferroelectric core–shell nanofibers and studies on magneto–electric interactions. Appl. Phys. Lett. 104, 052910 (2014)View Article
    5.M. Salavati-Niasari, J. Javidi, Synthesis of hollow SiO2 nanoparticles from Dy2O3@SiO2 core–shell nanocomposites via a recyclable sonochemical method. J. Clust. Sci. 23, 1019-028 (2012)View Article
    6.V. Mancier, C.R. Bertrand, J. Dille, J. Michel, P. Fricoteaux, Sono and electrochemical synthesis and characterization of copper core–silver shell nanoparticles. Ultrason. Sonochem. 17, 690-96 (2010)View Article
    7.K.L. Mcgilveray, C. Fasciani, C.J.B. Alejo, R.S. Narbonne, J.C. Scaiano, Photochemical strategies for the seed-mediated growth of gold and gold–silver nanoparticles. Langmuir 28, 16148-6155 (2012)View Article
    8.K.J. Lin, H.M. Wu, Y.H. Yu, C.Y. Ho, M.H. Wei, F.H. Lu, W.J. Tseng, Preparation of PMMA-Ni core–shell composite particles by electroless plating on polyelectrolyte-modified PMMA beads. Appl. Surf. Sci. 282, 741-45 (2013)View Article
    9.M. Uysal, R. Karslio?lu, A. Alp, H. Akbulut, The preparation of core–shell Al2O3/Ni composite powders by electroless plating. Ceram. Int. 39, 5485-493 (2013)View Article
    10.W.Z. Li, T. Qiu, L.L. Wang, S.S. Ren, J.R. Zhang, L.F. He, X.Y. Li, Preparation and electromagnetic properties of core/shell polystyrene polypyrrole Nickel composite microspheres. ACS Appl. Mater. Interfaces 5, 883-91 (2013)View Article
    11.X.J. Tang, C.L. Bi, C.X. Han, B.G. Zhang, A new palladium-free surface activation process for Ni electroless plating on ABS plastic. Mater. Lett. 63, 840-42 (2009)View Article
    12.Y.X. Lu, L.L. Xue, F. Li, Silver nanoparticle catalyst for electroless Ni deposition and the promotion of its adsorption onto PET substrate. Surf. Coat. Tech. 205, 519-24 (2010)View Article
    13.J.L. Jiang, H.Q. Lu, L.X. Zhang, N.P. Xu, Preparation of monodisperse Ni/PS spheres and hollow nickel spheres by ultrasonic electroless plating. Surf. Coat. Tech. 201, 7174-179 (2007)View Article
    14.D. Dong, X.H. Chen, W.T. Xiao, G.B. Yang, P.Y. Zhang, Preparation and properties of electroless Ni–P–SiO2 composite coatings. Appl. Surf. Sci. 255, 7051-055 (2009)View Article
    15.L.M. Luo, Z.L. Lu, X.Y. Tan, X.Y. Ding, L.M. Huang, J.G. Cheng, L. Zhu, Y.C. Wu, A specific chemical activation pretreatment for electroless nickel plating on SiC ceramic powders. Powder Technol. 249, 431-35 (2013)View Article
    16.M. Uysal, R. Karslio?lu, A. Alp, H. Akbulut, Nanostructured core–shell Ni deposition on SiC particles by alkaline electroless coating. Appl. Surf. Sci. 257, 10601-0606 (2011)View Article
    17.S.C. Tjong, S.A. Xu, Y.W. Mai, Impact fracture toughness of short glass fiber-reinforced polyamide 6, 6 hybrid composites containing elastomer particles using essential work of fracture concept. Mater. Sci. Eng. A 347, 338-45 (2003)View Article
    18.K. Wang, J.S. Wu, H.M. Zeng, Microstructures and fracture behavior of glass-fiber reinforced PBT/PC/E-GMA elastomer blends-1: microstructures. Compos. Sci. Technol. 61, 1529-538 (2001)View Article
    19.C. Kaynak, A. Arikan, T. Tincer, Flexibility improvement of short glass fiber reinforced epoxy by using a liquid elastomer. Polymer 44, 2433-439 (2003)View Article
    20.H.B. Zhang, W.L.X.J. Yang, L.D. Lu, X. Wang, X.D. Sun, Y.C. Zhang, Development of polyurethane elastomer composite materials by addition of milled fiberglass with coupling agent. Mater. Lett. 61, 1358-362 (2007)View Article
    21.Y. Huang, K. Shi, Z.J. Liao, Y.L. Wang, L. Wang, F. Zhu, Studies of electroless Ni–Co–P ternary alloy on glass fibers. Mater. Lett. 61, 1742-746 (2007)View Article
    22.W.F. Lien, P.C. Huang, S.C. Tseng, C.H. Cheng, S.M. Lai, W.C. Liaw, Electroless silver plating on teraaethoxy silane
    idged fiber glass. Appl. Surf. Sci. 258, 2246-254 (2012)View Article
    23.C.J. Xu, G.L. Liu, H.Y. Chen, R.H. Zhou, Y.Q. Liu, Fabrication of conductive copper-coated glass fibers throughelectroless plating process. J. Mater. Sci.: Mater. Electron. 25, 2611-617 (2014)
    24.A. Bouremana, A. Guittoum, M. Hemmous, B. Rahal, J.J. Sunol, D. Martínez-Blanco, J.A.
  • 作者单位:Ruihua Zhou (1)
    Huiyu Chen (1)
    Chunju Xu (1)
    Xin Hou (1)
    Guilin Liu (1)
    Yaqing Liu (1)

    1. School of Materials Science and Engineering, North University of China, Taiyuan, 030051, People’s Republic of China
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Optical and Electronic Materials
    Characterization and Evaluation Materials
  • 出版者:Springer New York
  • ISSN:1573-482X
文摘
Electromagnetic Ni@glass fiber composite with perfect Ni layers were successfully obtained by a versatile electroless deposition method. Glass fibers were firstly pretreated by roughing, sensitization, and activation. Then the glass fibers after pretreatment were conducted the electroless nickel process. We have investigated the influence of bath solution parameters on the morphology, chemical composition, magnetic property, and conductivity of the Ni@glass fiber composites using scanning electron microscopy, X-ray diffraction, vibrating sample magnetometry, transmission electron microscope, and four-probe meter techniques, respectively. The deposited nickel coatings and volume resistivity of the obtained samples were dependent on the bath temperature, pH value, dosage of complexing agent and reductant. Uniform and compact Ni film could be deposited on the surface of glass fibers, with which the optimal volume resistivity could reach (7.36?±?0.37)?×?10??Ω?cm, and the saturation magnetization (M s ) and coercivity (H c ) were confirmed to be 3.0?emu/g and 164.5?Oe, respectively. The current synthetic process may prompt the applicability in electromagnetic shielding field with industrial scale production.

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