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Influence of interparticle interactions on the kinetics of self-assembly and mechanical strength of nanoparticulate aggregates 被引量:3

Influence of interparticle interactions on the kinetics of self-assembly and mechanical strength of nanoparticulate aggregates
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摘要 Computer simulations based on Discrete Element Method have been performed in order to investigate the influence of interparticle interactions on the kinetics of self-assembly and the mechanical strength of nanoparticle aggregates. Three different systems have been considered. In the first system the interaction between particles has been simulated using the JKR (Johnson, Kendall and Roberts) contact theory, while in the second and third systems the interaction between particles has been simulated using van der Waals and electrostatic forces respectively. In order to compare the mechanical behaviour of the three systems, the magnitude of the maximum attractive force between particles has been kept the same in all cases. However, the relationship between force and separation distance differs from case to case and thus, the range of the interparticle force. The results clearly indicate that as the range of the interparticle force increases, the self-assembly process is faster and the work required to produce the mechanical failure of the assemblies increases by more than one order of magnitude. Computer simulations based on Discrete Element Method have been performed in order to investigate the influence of interparticle interactions on the kinetics of self-assembly and the mechanical strength of nanoparticle aggregates. Three different systems have been considered. In the first system the interaction between particles has been simulated using the JKR (Johnson, Kendall and Roberts) contact theory, while in the second and third systems the interaction between particles has been simulated using van der Waals and electrostatic forces respectively. In order to compare the mechanical behaviour of the three systems, the magnitude of the maximum attractive force between particles has been kept the same in all cases. However, the relationship between force and separation distance differs from case to case and thus, the range of the interparticle force. The results clearly indicate that as the range of the interparticle force increases, the self-assembly process is faster and the work required to produce the mechanical failure of the assemblies increases by more than one order of magnitude.
出处 《Particuology》 SCIE EI CAS CSCD 2009年第2期106-113,共8页 颗粒学报(英文版)
基金 EPSRC(EP/D027411/1:Fabrication of reusable materials based on mineral particulates) and MiMeMiP,UK for their support to this work
关键词 NANOPARTICLES Discrete Element Method (DEM) SELF-ASSEMBLY JKR model van der Waals force Nanoparticles Discrete Element Method (DEM) Self-assembly JKR model van der Waals force
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  • 1J. Cordelair,P. Greil.Discrete element modeling of solid formation during electrophoretic deposition[J].Journal of Materials Science.2004(3)
  • 2J.M. Lee,C. Curran,K.G. Watkins.Laser removal of copper particles from silicon wafers using UV, visible and IR radiation[J].Applied Physics A Materials Science & Processing.2001(2)
  • 3Martin,C. L,Bouvard,D,Delette,G.Discrete element simulationsof the compaction of aggregated ceramic powders[].Journal of the AmericanCeramic Society.2006
  • 4Tykhoniuk R,Tomas,J,Luding,S,Kappl,M,Heim,L,Butt,H.-J.Ultrafine cohesive powders: From interparticle contacts to contin-uum behaviour[].Chemical Engineering Science.2007
  • 5Vezenov,D. V.,Noy,A.,Rozsnyai,L. F.,Lieber,C. M.Force titrationsand ionization state sensitive imaging of functional groups in aqueous solu-tions by Chemical Force Microscopy[].Journal of America Chemical Society.1997
  • 6Apostolou,K,Hrymak,A. N.Discrete element simulation of liquidparticle ows[].Computers and Chemistry.2008
  • 7Bose,K,Moreno-Atanasio,R,Antony,S. J,Ding Y,Biggs S. R,Ghadiri,M.Direct measurement of the effect of adhesion on powder owbehaviour: Experimental and DEM investigations[].Powder and grains.2005
  • 8Cordelair,J,Greil,P.Discrete Element modelling of solid forma-tion during electrophoretic deposition[].Journal of Materials.2004
  • 9Feder,J,Jossang,T.Aggregation kinetics of immunoglobulins[].Phys-ica Scripta T.1986
  • 10Hakim,L. F,King,D. M,Zhou,Y,Gump,C. J,George,S. M,Weimer,A. W.Nanoparticle coating for advanced optical,mechanical andrheological properties[].Advance Functional Materials.2007

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