首页> 外文会议>International Conference on Polymer-Solvent Complexes and Intercalates; 20020722-20020725; Prague; CZ >Free Energy and Dimensions of Macromolecules under Confinement in Layered Assemblies
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Free Energy and Dimensions of Macromolecules under Confinement in Layered Assemblies

机译:限制在分层组装中的大分子的自由能和尺寸

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The changes in the free energy ΔA accompanying penetration of polymer solutions from bulk into slit-like cavities were determined by lattice simulations. In dilute solutions the thermodynamics of penetration is controlled mainly by the parameter ε_w specifying interaction between polymer and walls of repulsive or adsorptive cavities. However, the magnitude of |Δ4 | is substantially reduced by increasing concentration φ in bulk solution. Furthermore, compression of chains by concentration in good solvents and adsorptive cavities was found to be larger in the slit then in the bulk. At intermediate confinement, a region of a minimum coil size was observed at all concentrations and attraction strengths, where molecules are squeezed along all three axes.
机译:通过晶格模拟确定伴随着聚合物溶液从本体渗透到狭缝状腔中的自由能ΔA的变化。在稀溶液中,渗透的热力学主要由参数ε_w控制,该参数指定了聚合物与排斥或吸附腔壁之间的相互作用。但是,|Δ4|通过增加本体溶液中的浓度φ可以大大降低。此外,发现在缝隙中,通过在良好的溶剂和吸附性孔中浓缩,链的压缩比在本体中大。在中间限制下,在所有浓度和吸引强度下均观察到最小线圈尺寸的区域,其中沿所有三个轴挤压分子。

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