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Micro-Friction of Diazoresin/Polyacrylic Acid Self-Assembly Films in Water with Atomic Force Microscopy

Micro-Friction of Diazoresin/Polyacrylic Acid Self-Assembly Films in Water with Atomic Force Microscopy
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摘要 Ultrathin films composed of diazoresin(DR)and polyacrylic acid(PAA)were fabricated.The surface morphology of the films in water was measured using an atomic force microscopy(AFM).The self-assembly technique makes the surface rather flat and uniform.The friction force and its dependence on the velocity differ from the surface charge of the thin films.The friction force of repulsive DR/PAA film increases linearly with velocity and has lower values than that of attractive DR film over the full range of velocity.As the velocity increases,the attractive friction of DR film first decreases to a minimum at a velocity of 2 line/s and then increases all the way.When the surface is repulsive to the friction substrate,the friction of thin films that is determined by hydrated lubrication of polymer chains that is ultralubricated;when it is adhesive to the friction substrate,the friction is mainly contributed from the elastic deformation of adsorbed polymer chains in the low velocity region and from viscous sliding in the presence of hydrated-layer lubrication of the polymer chains in the higher velocity region. Ultrathin films composed of diazoresin(DR)and polyacrylic acid(PAA)were fabricated.The surface morphology of the films in water was measured using an atomic force microscopy(AFM).The self-assembly technique makes the surface rather flat and uniform.The friction force and its dependence on the velocity differ from the surface charge of the thin films.The friction force of repulsive DR/PAA film increases linearly with velocity and has lower values than that of attractive DR film over the full range of velocity.As the velocity increases,the attractive friction of DR film first decreases to a minimum at a velocity of 2 line/s and then increases all the way.When the surface is repulsive to the friction substrate,the friction of thin films that is determined by hydrated lubrication of polymer chains that is ultralubricated;when it is adhesive to the friction substrate,the friction is mainly contributed from the elastic deformation of adsorbed polymer chains in the low velocity region and from viscous sliding in the presence of hydrated-layer lubrication of the polymer chains in the higher velocity region.
出处 《Wuhan University Journal of Natural Sciences》 CAS 2014年第3期253-256,共4页 武汉大学学报(自然科学英文版)
基金 Supported by the National Natural Science Foundation of China(51273059) Young Teachers International Communication Program of Hubei Province Education Administration of China(2012-1) Foundation of Hubei Provincial Key Laboratory of Green Materials for Light Industry
关键词 micro-friction poly(acrylic acid) self-assembly film atomic force microscopy(AFM) micro-friction poly(acrylic acid) self-assembly film atomic force microscopy(AFM)
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  • 1Lee S, Spencer N D. Materials science-sweet, hairy, soft, and slippery [J]. Science, 2008, 319(5863): 575-576.
  • 2Bhushan B, Israelachvili J N, Landman U. Nanotribology:Friction, wear and lubrication at the atomic scale [J]. Nature, 2002, 374(6523): 607-616.
  • 3Zhao W J, Zhu M, Mo Y F, et al. Effect of anion on mi- cro/nano-tribological properties of ultra-thin imidazolium ionic liquid films on silicon wafer [J]. Colloids Surface A, 2009, 332(2-3): 78-83.
  • 4Malfatti F, Samo T J, Azam F. High-resolution imaging of pelagic bacteria by atomic force microscopy and implica- tions for carbon cycling [J]. ISME J, 2010, 4(3): 427-439.
  • 5Muller D J, Dufrene Y F. Atomic force microscopy as a mul- tifunctional molecular toolbox in nanobiotechnology [J]. Nature Nanotech, 2008, 3(5): 261-269.
  • 6Kwon S G, Piao Y, Park J. Kinetics of monodisperse iron oxide nanocrystal formation by "Heating-Up" process [J]. JAm Chem Soc, 2007, 129(41): 12571-12584.
  • 7Li X, Peng S, Yan H. Study of poly(acrylic acid) carbon nanotube self-assembly films [J]. Des Monomers Polym, 2011, 14(4): 347-352.
  • 8Luo H, Chen J, Luo G, et al. Self-assembly films from dia- zoresin and garboxy-containing polyelectrolytes [J]. J Mater Chem, 2001, 11(2): 419-422.
  • 9Yang L L, Yang Z H, Cao W X. Stable thin films and hollow spheres composing chiral polyaniline composites [J]. J Col- loidlntetfSci, 2005, 292(2): 503-508.
  • 10Li J W, Wang C, Shang G Y, et al. Friction coefficients de- rived from apparent height variations in contact mode atomic force microscopy [J]. Langmuir, 1999, 15(22): 7662-7669.

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