Noya Eva G, Kolovos Ismene, Doppelbauer Günther, Kahl Gerhard, Bianchi Emanuela
Instituto de Química Física Rocasolano, CSIC, Calle Serrano 119, E-28006 Madrid, Spain.
Soft Matter. 2014 Nov 14;10(42):8464-74. doi: 10.1039/c4sm01559b.
We numerically study the phase behavior of colloidal particles with two charged patches at the poles and an oppositely charged equatorial belt. Interactions between particles are described using the inverse patchy colloid model, where the term inverse emphasizes the difference with respect to conventional patchy particles: as a consequence of the heterogeneous charge distribution, the patches on the particle surface repel each other, whereas the patches and non-patch regions mutually attract. For the model parameters considered in this work, the system exhibits an unusual equilibrium phase diagram characterized by a broad region where a novel structure composed of parallel colloidal monolayers is stable.
我们通过数值方法研究了在两极带有两个带电斑块且赤道带有相反电荷带的胶体颗粒的相行为。使用反斑点胶体模型描述颗粒之间的相互作用,其中“反”一词强调了与传统斑点颗粒的差异:由于电荷分布不均匀,颗粒表面的斑块相互排斥,而斑块与非斑块区域相互吸引。对于本工作中考虑的模型参数,该系统呈现出一个不同寻常的平衡相图,其特征在于存在一个宽广的区域,由平行胶体单层组成的新型结构在该区域是稳定的。