Lim Marc Michael Del Rosario, Velichko Yuri S, Cruz Monica Olvera de la, Vernizzi Graziano
Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, USA.
J Phys Chem B. 2008 May 1;112(17):5423-7. doi: 10.1021/jp7105132. Epub 2008 Apr 8.
We investigate the formation of charged patterns on the surface of cylindrical micelles from co-assembled cationic and anionic amphiphiles. The competition between the net incompatibility chi (which arises from the different chemical nature of oppositely charged molecules) and electrostatic interactions (which prevent macroscopic segregation) results in the formation of surface domains. We employ Monte Carlo simulations to study the domains at thermal equilibrium. Our results extend previous work by studying the effect of the Bjerrum length l(B) at different values of the cylinder's radius R and chi and analyze how it affects the transition between helical, ring, and isotropic patterns. A critical surface in the space (l(B), R, chi) separating these three phases is found, and we show how it corresponds to a first-order phase transition. This confirms that the Bjerrum length l(B) is a significant parameter in the control of the helical-ring transition; the ring pattern is strongly associated with short-range forces, whereas the helical pattern develops from dominant long-range electrostatic interactions.
我们研究了由阳离子和阴离子两亲物共组装形成的圆柱形胶束表面带电图案的形成。净不相容性χ(由带相反电荷分子的不同化学性质引起)与静电相互作用(防止宏观分离)之间的竞争导致了表面域的形成。我们采用蒙特卡罗模拟来研究热平衡下的域。我们的结果通过研究在不同圆柱半径R和χ值下的 Bjerrum 长度l(B)的影响扩展了先前的工作,并分析了它如何影响螺旋、环形和各向同性图案之间的转变。在空间(l(B), R, χ)中发现了分隔这三个相的临界表面,并且我们展示了它如何对应于一级相变。这证实了 Bjerrum 长度l(B)是控制螺旋 - 环形转变的一个重要参数;环形图案与短程力密切相关,而螺旋图案则由占主导地位的长程静电相互作用形成。