论文标题

有限尺寸胶体聚集体的自组装

Self-assembly of finite-sized colloidal aggregates

论文作者

Jana, Pritam Kumar, Mognetti, Bortolo Matteo

论文摘要

自组装有限大小的胶体聚集体具有所寻求的形态的挑战之一是必须精确地对胶体的位置进行微观量表,以避免脱靶结构的形成。微流体平台通过将进入目标骨料的精确胶体量加载到单液滴中来解决此问题。使用理论和模拟,在本文中,我们验证了更通用的设计,使我们能够从散装中的各向同性胶体的有限密度悬浮液开始,从而制造不同类型的有限量聚集体,包括胶体分子或核心壳簇。在我们的模型中,颗粒之间的相互作用是由DNA接头与可移动的绑定点介导的,如实验中,使用浸入了支持的双层的DNA低聚物的实验中发现。通过微调不同类型的接头的强度和数量,我们证明了控制聚集体形态的可能性,尤其是分子的性能和核心壳簇的大小。通常,我们的设计显示了多价相互作用如何在平衡条件下导致微相分离。

One of the challenges of self-assembling finite-sized colloidal aggregates with a sought morphology is the necessity of precisely sorting the position of the colloids at the microscopic scale to avoid the formation of off-target structures. Microfluidic platforms address this problem by loading into single droplets the exact amount of colloids entering the targeted aggregate. Using theory and simulations, in this paper, we validate a more versatile design allowing us to fabricate different types of finite-sized aggregates, including colloidal molecules or core-shell clusters, starting from finite density suspensions of isotropic colloids in bulk. In our model, interactions between particles are mediated by DNA linkers with mobile tethering points, as found in experiments using DNA oligomers tagged with hydrophobic complexes immersed into supported bilayers. By fine-tuning the strength and the number of the different types of linkers, we prove the possibility of controlling the morphology of the aggregates, in particular, the valency of the molecules and the size of the core-shell clusters. In general, our design shows how multivalent interactions can lead to microphase separation in equilibrium conditions.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源