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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Site-Specific Colloidal Crystal Nucleation by Template-enhanced Particle Transport
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APS -APS March Meeting 2017 - Event - Site-Specific Colloidal Crystal Nucleation by Template-enhanced Particle Transport

机译:APS -APS 2017年3月会议-活动-通过模板增强的粒子传输实现特定于现场的胶体晶体成核

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摘要

The deliberate positioning of nano- and microstructures on surfaces is often a prerequisite for fabricating functional devices. While template-assisted nucleation is a promising route to self-assemble these structures, its success hinges on particles reaching target sites prior to nucleation and for nano/microscale particles, this is hampered by their small surface mobilities. We tailored surface features, which in the presence of attractive depletion interactions not only directed micrometer-sized colloids to specific sites but also subsequently guided their growth into ordered crystalline arrays of well-defined size and symmetry. By following the nucleation kinetics with single-particle resolution, we demonstrate control over nucleation density in a growth regime that has hitherto remained inaccessible. Our findings pave the way towards realizing non-trivial surface architectures composed of complex colloidsanoparticles as well.
机译:纳米结构和微结构在表面上的故意定位通常是制造功能性设备的先决条件。尽管模板辅助成核是自组装这些结构的一种有前途的途径,但其成功取决于成核之前到达目标部位的颗粒以及对于纳米/微米级颗粒,这受到它们较小的表面迁移率的阻碍。我们量身定制了表面特征,这些表面特征在存在有吸引力的耗尽相互作用的情况下,不仅将微米级胶体定向到特定位置,而且随后引导其生长为尺寸和对称性明确的有序晶体阵列。通过遵循具有单粒子分辨率的成核动力学,我们证明了迄今为止仍难以获得的生长机制中对成核密度的控制。我们的发现为实现由复杂的胶体/纳米颗粒组成的非平凡的表面结构铺平了道路。

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