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胶体棒在薄楔形间隙中受限形成串状簇和近晶片状结构的自发形成。

Spontaneous formation of stringlike clusters and smectic sheets for colloidal rods confined in thin wedgelike gaps.

机构信息

National Institute of Advanced Industrial Science and Technology, 1-1-1 Higashi, Tsukuba, Ibaraki, 305-8566 Japan.

出版信息

Langmuir. 2013 Aug 20;29(33):10529-38. doi: 10.1021/la402032j. Epub 2013 Aug 5.

DOI:10.1021/la402032j
PMID:23876087
Abstract

Monodispersed colloidal rods of β-FeOOH with sizes ranging from 270 to 580 nm in length and 50 to 80 nm in width were synthesized. Narrow wedgelike gaps (0 to 700 nm in height) were formed around the inner bottom edge of the suspension glass cells. Optical microscopic observations revealed the formation of stringlike clusters of the rods and smectic sheets (by spontaneous side-by-side clustering of the strings) in the isotropic phase of the rod suspensions confined in narrow gaps; the electrolyte (HCl) concentrations of the suspensions are 5-40 mM, at which inter-rod interactions are attractive. The strings exhibit different colors that were used to investigate the structures of the strings with the help of interference color theory for thin films. The results are as follows. (1) The rods, lying flat on the gap bottom, are connected side-by-side and stacked upward to form stringlike clusters with different thicknesses depending on the gap height. (2) The stacking numbers (N(sr)) of the rods are estimated to be 1-5. With N(sr) increasing from 2 to 5, the volume fractions (ϕ) of the rods in the strings increased typically from 0.25-0.3 to 0.35-0.42 to reach limiting values (close to the ϕ values of the rods in the bulk smectic phase). (3) Unexpected low-ϕ strings are found in regions with an intermediate height in the gaps. These behaviors of ϕ may be caused by thermal fluctuations of the strings.

摘要

合成了长度在 270 至 580nm 之间、宽度在 50 至 80nm 之间的单分散β-FeOOH 胶体棒。在悬浮玻璃细胞的内底边缘周围形成了狭窄的楔形间隙(高度在 0 至 700nm 之间)。光学显微镜观察揭示了在棒悬浮体各向同性相中形成的棒状串和类脂双分子层(通过棒的自发并排聚集),这些棒悬浮体被限制在狭窄的间隙中;悬浮液的电解质(HCl)浓度为 5-40mM,在该浓度下,棒间相互作用具有吸引力。这些串呈现出不同的颜色,这些颜色被用于借助薄膜的干涉色理论来研究串的结构。结果如下:(1)棒状分子平躺于间隙底部,彼此并排连接,并向上堆叠,形成具有不同厚度的串状簇,其厚度取决于间隙的高度。(2)棒的堆叠数(N(sr))估计为 1-5。随着 N(sr)从 2 增加到 5,串中棒的体积分数(ϕ)通常从 0.25-0.3 增加到 0.35-0.42,达到极限值(接近体相类脂双分子层中棒的ϕ值)。(3)在间隙的中间高度区域中发现了出乎意料的低ϕ串。这些ϕ的行为可能是由串的热波动引起的。

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