Donley J P
The Boeing Company, Huntington Beach, CA 92647, USA.
Eur Phys J E Soft Matter. 2005 Mar;16(3):273-82. doi: 10.1140/epje/i2004-10084-2.
Density functional techniques are used to derive a charging expression for the non-uniform density of a molecular liquid. In the atomic limit the equation reduces to an exact form due to Fixman. The theory is simplified greatly via a physical approximation that accounts for three-body correlations beyond those included in the hypernetted chain (HNC) closure of the Ornstein-Zernike (OZ) equation. The radial distribution function is obtained as a special case. The theory is tested by examining the phase behavior of two fundamental complex fluids: the homopolymer blend and diblock copolymer melts. For the former it is found, contrary to HNC theory and its molecular generalizations, that a critical temperature Tc is predicted from the structure route. This To scales linearly with degree of polymerization N in agreement with Flory theory. The simplest form of the theory can be considered as a way to incorporate attractive interactions within a formalism that is very similar to that of the OZ or reference interaction site model (RISM). The relevance of the theory to charged liquids is also discussed.
密度泛函技术用于推导分子液体非均匀密度的电荷表达式。在原子极限下,该方程因菲克斯曼(Fixman)而简化为精确形式。通过一种物理近似,该理论得到了极大简化,这种近似考虑了超越奥恩斯坦 - 泽尔尼克(OZ)方程超网链(HNC)封闭所包含的三体相关性。径向分布函数作为一个特殊情况被得到。通过研究两种基本复杂流体的相行为来检验该理论:均聚物共混物和双嵌段共聚物熔体。对于前者,发现与HNC理论及其分子推广相反,从结构路径预测出了一个临界温度(T_c)。这个(T_c)与聚合度(N)线性相关,这与弗洛里(Flory)理论一致。该理论的最简单形式可被视为一种在与OZ或参考相互作用位点模型(RISM)非常相似的形式体系中纳入吸引相互作用的方法。还讨论了该理论与带电液体的相关性。