Liu Lei, Xu Shenghua, Liu Jie, Sun Zhiwei
Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, PR China.
J Colloid Interface Sci. 2008 Oct 1;326(1):261-6. doi: 10.1016/j.jcis.2008.07.017. Epub 2008 Jul 16.
Colloidal crystals formed by two types of polystyrene particles of different sizes (94 and 141 nm) at various number ratios (94:141 nm) are studied. Experiments showed that the formation time of crystals lengthens as the number ratio of the two components approaches 1:1. The dependence of the mean interparticle distance (D(0)), crystal structure and alloy structure on the number ratio of the two types of particles was studied by means of Kossel diffraction technique and reflection spectra. The results showed that as the number ratio decreased, the mean interparticle distance (D(0)) became larger. And the colloidal crystal in binary mixtures is more preferably to form the bcc structure. This study found that binary systems form the substitutional solid solution (sss)-type alloy structure in all cases except when the number ratio of two types of particles is 5:1, which results instead in the superlattice structure.
研究了由两种不同尺寸(94和141纳米)的聚苯乙烯颗粒以各种数量比(94:141纳米)形成的胶体晶体。实验表明,随着两种组分的数量比接近1:1,晶体的形成时间延长。通过科塞尔衍射技术和反射光谱研究了平均粒子间距离(D(0))、晶体结构和合金结构对两种颗粒数量比的依赖性。结果表明,随着数量比的降低,平均粒子间距离(D(0))变大。并且二元混合物中的胶体晶体更倾向于形成体心立方结构。该研究发现,二元体系在所有情况下都形成替代固溶体(sss)型合金结构,除非两种颗粒的数量比为5:1,此时会形成超晶格结构。