Bergström Magnus
Department of Chemistry, Surface Chemistry, Royal Institute of Technology, Stockholm, SE-100 44, Sweden
J Colloid Interface Sci. 2001 Aug 1;240(1):294-306. doi: 10.1006/jcis.2001.7624.
The influence of mixing on the curvature free energy of a thermodynamically open, reversibly formed vesicle bilayer is investigated by deriving expressions for the various contributions to the bilayer bending constant k(bi) as functions of the structure of aggregated surfactants as well as the solution state (electrolyte concentration, average composition in the bilayers, etc). k(bi) is shown to be lowered in surfactant mixtures as a result of the fact that a mixed vesicle bilayer that is open in the thermodynamic sense may assume different compositions in the inner and outer monolayers. The net contribution of all terms related to surfactant mixing is to lower k(bi). The magnitude of this reduction increases with increasing asymmetry between the two surfactants with respect to charge number, head group size, and tail length. The reduction of k(bi) due to mixing is most pronounced for mixtures where the surfactant that carries charge or has the highest charge number has the larger head group and the smaller tail. Copyright 2001 Academic Press.
通过推导双层弯曲常数k(bi)的各种贡献的表达式,研究了混合对热力学开放、可逆形成的囊泡双层曲率自由能的影响,这些表达式是聚集表面活性剂结构以及溶液状态(电解质浓度、双层中的平均组成等)的函数。结果表明,由于在热力学意义上开放的混合囊泡双层在内外单层中可能具有不同的组成,k(bi)在表面活性剂混合物中会降低。与表面活性剂混合相关的所有项的净贡献是降低k(bi)。这种降低的幅度随着两种表面活性剂在电荷数、头基大小和尾长方面不对称性的增加而增加。对于携带电荷或电荷数最高的表面活性剂具有较大头基和较小尾的混合物,由于混合导致的k(bi)降低最为明显。版权所有2001年学术出版社。