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   A multiscale scheme for simulating polymer Tg  
   
نویسنده Chaofu Wu
منبع journal of molecular modeling - 2018 - دوره : 24 - شماره : 12 - صفحه:0 -0
چکیده    all-atomistic (aa) molecular dynamics (md) is considered as one of the desirable methods for studying glass transition temperatures (tg) of specific polymers. however, heavy computational efforts are generally required, and the simulated tg values are not always in good agreement with the experimental data. in this work, a multiscale scheme is proposed: first, the structural and volumetric properties based multiscale modeling is employed to parameterize the coarse-grained (cg) potentials against the aa simulations of an oligomeric melt; with the cg potentials, md simulations are then carried out on a serial of oligomer bulks and polymer systems of interests, for which the dynamical tg values are determined. with poly(ethylene oxide) and poly(methyl methacrylate) as typical examples, the simulated dynamical tg values of the oligomeric bulks exhibit a linear relation with the empirical values, which is used to determine the “actual tg” for the polymer bulk. the so-obtained tg is found to compare very well with the experimental data. such a computational framework can be quite promising in investigating the effects of various complex factors on polymer tg.
کلیدواژه Multiscale simulations ,Glass transition temperatures ,Bulk polymers
آدرس Hunan University of Humanities, Hunan Provincial Key Laboratory of Fine Ceramics and Powder Materials, China
 
     
   
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