Department of Physical Chemistry and The Fritz Haber Research Center for Molecular Dynamics, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Proc Natl Acad Sci U S A. 1984 Jul;81(14):4601-5. doi: 10.1073/pnas.81.14.4601.
The probability distribution of amphiphile chain conformations in micelles of different geometries is derived through maximization of their packing entropy. A lattice model, first suggested by Dill and Flory, is used to represent the possible chain conformations in the micellar core. The polar heads of the chains are assumed to be anchored to the micellar surface, with the other chain segments occupying all lattice sites in the interior of the micelle. This "volume-filling" requirement, the connectivity of the chains, and the geometry of the micelle define constraints on the possible probability distributions of chain conformations. The actual distribution is derived by maximizing the chain's entropy subject to these constraints; "reversals" of the chains back towards the micellar surface are explicitly included. Results are presented for amphiphiles organized in planar bilayers and in cylindrical and spherical micelles of different sizes. It is found that, for all three geometries, the bond order parameters decrease as a function of the bond distance from the polar head, in accordance with recent experimental data. The entropy differences associated with geometrical changes are shown to be significant, suggesting thereby the need to include curvature (environmental)-dependent "tail" contributions in statistical thermodynamic treatments of micellization.
通过最大化其组装熵,推导出不同几何形状胶束中两亲物链构象的概率分布。我们使用 Dill 和 Flory 首次提出的晶格模型来表示胶束核中可能的链构象。假设链的极性头锚定在胶束表面,而其他链段占据胶束内部的所有晶格位。这种“体积填充”要求、链的连通性和胶束的几何形状定义了链构象的可能概率分布的约束条件。通过在这些约束条件下最大化链的熵来推导出实际分布;明确包括了链向胶束表面的“反转”。我们给出了在平面双层和不同大小的圆柱和球形胶束中组织的两亲物的结果。结果表明,对于所有三种几何形状,键序参数随着距极性头的键距离的增加而减小,这与最近的实验数据一致。与几何变化相关的熵差异表明,在胶束化的统计热力学处理中需要包括曲率(环境)相关的“尾部”贡献。