Freeman Colin L, Harding John H, Duffy Dorothy M
Department of Engineering Materials, University of Sheffield, Sir Robert Hadfield Building, Mappin Street, Sheffield, S1 3JD, U.K.
Langmuir. 2008 Sep 2;24(17):9607-15. doi: 10.1021/la800389g. Epub 2008 Aug 2.
This paper presents simulations of calcium carbonate ordering in contact with self-assembled monolayers. The calculations use potential-based molecular dynamics to model the crystallization of calcium carbonate to calcite expressing both the (00.1) and (01.2) surfaces. The effect of monolayer properties: ionization; epitaxial matching; charge density; and headgroup orientation on the crystallization process are examined in detail. The results demonstrate that highly charged surfaces are vital to stimulate ordering and crystallization. Template directed crystallization requires charge epitaxy between both the crystal surface and the monolayer. The orientation of the headgroup appears to make no contribution to the selection of the crystal surface.
本文展示了与自组装单分子层接触时碳酸钙有序化的模拟。计算使用基于势能的分子动力学来模拟碳酸钙结晶为方解石的过程,展现了(00.1)和(01.2)两个表面。详细研究了单分子层性质:电离;外延匹配;电荷密度;以及头基取向对结晶过程的影响。结果表明,高电荷表面对于促进有序化和结晶至关重要。模板导向结晶需要晶体表面和单分子层之间的电荷外延。头基的取向似乎对晶体表面的选择没有贡献。