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Self-assembly Of Janus Cylinders Into Hierarchical Superstructures

机译:Janus缸的自组装成分层上部结构

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We present in-depth studies of the size tunability and the self-assembly behavior of Janus cylinders possessing a phase segregation into two hemicylinders. The cylinders are prepared by cross-linking the lamella-cylinder morphology of a polystyrene-block-polybutadiene-block-poly(methyl methacrylate) block terpolymer. The length of the Janus cylinders can be adjusted by both the amplitude and the duration of a sonication treatment from the micro- to the nanometer length. The corona segregation into a biphasic particle is evidenced by selective staining of the PS domains with RuO_4 and subsequent imaging. The self-assembly behavior of these facial amphiphiles on different length scales is investigated combining dynamic light scattering (DLS), small-angle neutron scattering (SANS), and imaging procedures. Cryogenic transmission electron microscopy images of the Janus cylinders in THF, which is a good solvent for both blocks, exhibit unimolecularly dissolved Janus cylinders with a core-corona structure. These results are corroborated by SANS measurements. Supramolecular aggregation takes place in acetone, which is a nonsolvent for polystyrene, leading to the observation of fiber-like aggregates. The length of these fibers depends on the concentration of the solution. A critical aggregation concentration is found, under which unimolecularly dissolved Janus cylinders exist. The fibers are composed of 2-4 Janus cylinders, shielding the inner insoluble polystyrene hemicylinder against the solvent. Herein, the SANS data reveal a core-shell structure of the aggregates. Upon deposition of the Janus cylinders from more concentrated solution, a second type of superstructure is formed on a significantly larger length scale. The Janus cylinders form fibrillar networks, in which the pore size depends on the concentration and deposition time of the sample.
机译:我们目前对具有相分离成两个半圆柱体的Janus圆柱体的尺寸可调性和自组装行为进行深入研究。通过使聚苯乙烯-嵌段-聚丁二烯-嵌段-聚(甲基丙烯酸甲酯)嵌段三元共聚物的薄片-圆筒形态交联来制备圆筒。 Janus圆柱体的长度可以通过超声处理的幅度和持续时间从微米到纳米长度进行调整。通过用RuO_4对PS域进行选择性染色以及随后的成像,可以证明电晕偏析为两相颗粒。结合动态光散射(DLS),小角中子散射(SANS)和成像程序,研究了这些面部两亲物在不同长度尺度上的自组装行为。 Janus圆柱体在THF中的低温透射电镜图像,THF是两个嵌段的良好溶剂,显示出单分子溶解的Janus圆柱体,具有核电晕结构。 SANS测量证实了这些结果。超分子聚集发生在丙酮中,丙酮是聚苯乙烯的非溶剂,导致观察到纤维状聚集体。这些纤维的长度取决于溶液的浓度。发现了临界聚集浓度,在该浓度下存在单分子溶解的Janus圆柱体。纤维由2-4个Janus圆柱体组成,从而使内部不溶性聚苯乙烯半圆柱体免受溶剂的侵害。在此,SANS数据揭示了聚合的核壳结构。当Janus圆柱体从更浓的溶液中沉积时,第二种上部结构会以明显更大的长度尺度形成。 Janus圆柱形成原纤维网络,其中孔的大小取决于样品的浓度和沉积时间。

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