Funded by the National Natural Science Foundation of China(No.52008069)。
Modifying agents 2,2-Bis(4-glycidyloxyphenyl)propane(2BPE)and dibutyl phthalate(DBP)were selected to enhance the compatibility.By using molecular simulation software(Materials Studio,MS),nine systems were constructed,...
NSFC(No.12071090);the National Key R&D Program of China(No.2019YFA0709502);Z.R.Zhang is partially supported by NSFC No.11871105 and Science Challenge Project No.TZ2018002;C.Wang is partially supported by the NSF DMS-2012269;S.M.Wise is partially supported by the NSF DMS-1719854,DMS-2012634.
In this paper, we propose and analyze a second order accurate in time, masslumped mixed finite element scheme for the Cahn-Hilliard equation with a logarithmic Flory-Huggins energy potential. The standard backward dif...
financially supported by the National Natural Science Foundation of China(Nos.21774128,U1832177,22173094,51988102);CAS Key Research Program of Frontier Sciences(No.QYZDY-SSW-SLH027);Network and Computing Center,Changchun Institute of Applied Chemistry for essential support。
Polymer-solvent interaction is a fundamentally important concept routinely described by the Flory-Huggins interaction(χ),Hildebrand solubility(Δδ)and the relative energy difference(RED)determined from Hansen solubi...
This work is supported in part by the grants NSFC 12071090(W.Chen);NSF DMS-2012669(C.Wang);NSFC 11871159;Guangdong Provincial Key Laboratory for Computational Science and Material Design 2019B030301001(X.Wang);NSF DMS-1719854,DMS-2012634(S.Wise).C.Wang also thanks the Key Laboratory of Mathematics for Nonlinear Sciences,Fudan University,for the support.
In this paper we propose and analyze a second order accurate numericalscheme for the Cahn-Hilliard equation with logarithmic Flory Huggins energy potential. A modified Crank-Nicolson approximation is applied to the lo...