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Influence of Geometries on the Assembly of Snowman-Shaped Janus Nanoparticles

机译:几何对雪人纳米粒子组装的影响

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The self-assembly of micro/nanoparticles into suprastructures is a promising way to develop reconfigurable materials and to gain insights into the fundamental question of how matter organizes itself. The geometry of particles, especially those deviating from perfectly spherical shapes, is of significant importance in colloidal assembly because it influences the particle "recognition", determines the particle packing, and ultimately dictates the formation of assembled suprastructures. In order to organize particles into desired structures, it is of vital importance to understand the relationship between the shape of the colloidal building blocks and the assembled suprastructures. This fundamental issue is an enduring topic in the assembly of molecular surfactants, but it remained elusive in colloidal assembly. To address this issue, we use snowman-shaped Janus nanoparticles (JNPs) as a model to systematically study the effect of colloidal geometries on their assembled supra structures. Ten types of JNPs with identical chemical compositions but with different geometries were synthesized. Specifically, the synthesized JNPs differ in their lobe size ratios, phase separation degrees, and overall sizes. We show that by altering these parameters, both finite suprastructures, such as capsules with different curvatures, and nonfinite suprastructures, including free-standing single-layered or double layered JNPs sheets, can be obtained via self-assembly. All these different types of suprastructures are constituted by highly oriented and hexagonally packed JNPs. These findings demonstrate the significance of geometries in colloidal assembly, such that slightly changing the building block geometries could result in a large variety of very different assembled structures, without altering the chemistry of the particles.
机译:微/纳米粒子进入超法的自组装是开发可重新配置材料的有希望的方式,并进入与如何组织本身的基本问题的洞察力。颗粒的几何形状,尤其是偏离完全球形的形状,在胶体组件中具有重要意义,因为它会影响颗粒“识别”,确定颗粒包装,并最终决定组装的超结构的形成。为了将颗粒组织成所需的结构,了解胶体构建块的形状与组装的超法之间的关系至关重要。这一基本问题是分子表面活性剂组装中的持久主题,但它仍然难以浮现在胶体组件中。为了解决这个问题,我们使用雪人形的Janus纳米粒子(JNPS)作为系统地研究胶体几何形状对其组装的同步结构的影响。合成了具有相同化学成分但具有不同几何形状的10种JNP。具体地,合成的JNP在它们的叶尺寸比率,相分离度和整体尺寸不同。我们表明,通过改变这些参数,可以通过自组装获得具有不同曲率的胶囊等有限超法,例如具有不同曲率的胶囊,以及包括独立式单层或双层JNPS片。所有这些不同类型的超法由高度导向和六角包装的JNP构成。这些发现表明了几何形状在胶体组件中的意义,使得略微改变构建块几何形状可能导致大量的非常不同的组装结构,而不改变颗粒的化学物质。

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