Lee Mina, Xia Ming, Park Bum Jun
Department of Chemical Engineering, Kyung Hee University, Yongin, Gyeonggi-do 17104, Korea.
Materials (Basel). 2016 Feb 26;9(3):138. doi: 10.3390/ma9030138.
We studied the transition behaviors of colloidal arrangements confined at a centro-symmetrically curved oil-water interface. We found that assemblies composed of several colloidal particles at the curved interface exhibit at least two unique patterns that can be attributed to two factors: heterogeneity of single-colloid self-potential and assembly kinetics. The presence of the two assembly structures indicates that an essential energy barrier between the two structures exists and that one of the structures is kinetically stable. This energy barrier can be overcome via external stimuli (e.g., convection and an optical force), leading to dynamic transitions of the assembly patterns.
我们研究了限制在中心对称弯曲油水界面处的胶体排列的转变行为。我们发现,由弯曲界面处的几个胶体颗粒组成的聚集体表现出至少两种独特的模式,这可归因于两个因素:单胶体自电位的不均匀性和聚集动力学。这两种聚集结构的存在表明,这两种结构之间存在一个基本的能垒,并且其中一种结构在动力学上是稳定的。这种能垒可以通过外部刺激(例如,对流和光力)来克服,从而导致聚集模式的动态转变。