论文标题
用于复杂界面组件的软胶体
Soft colloids for complex interfacial assemblies
论文作者
论文摘要
复杂材料的设计和特定模式的形成通常来自单个构件的特性。在这方面,胶体系统提供了一个独特的机会,因为如今,它们可以在实验室中具有许多不同的形状和功能。因此,适当的粒子特性选择使生成具有所需特性的宏观结构。胶体的多功能性也可以在二维中探索,使用液体液体或空气界面作为特权底物可以吸附和自组装。除了是用于基础研究的创新模型系统外,科学界的极大兴趣也是技术和应用,因为胶体规模的表面模式非常有希望,例如,在光子学或生物传感方面。在最新发表在PNAS上的研究中,Menath和同事将这些元素结合在一起,并利用核心壳胶体,该核心胶体由二氧化硅核心和柔软的,非交联的聚合物壳组成,以迈出重要的一步,以控制界面上复杂结构的组装。
The design of complex materials and the formation of specific patterns often arise from the properties of the individual building blocks. In this respect, colloidal systems offer a unique opportunity because nowadays they can be synthesized in the laboratory with many different shapes and features. Hence, an appropriate choice of the particle characteristics makes it possible to generate macroscopic structures with desired properties. The versatility of colloids can also be explored in two dimensions, using liquid-liquid or air-liquid interfaces as privileged substrates where they can adsorb and self-assemble. Besides being innovative model systems for fundamental studies, the great interest of the scientific community is also technological and applicative, since colloidal-scale surface patterns are very promising for example in photonics or biosensing. In a recent study published in PNAS, Menath and coworkers combine these elements and exploit core-shell colloids, consisting of a silica core and a soft, non-crosslinked polymer shell, to make an important step forward in controlling the assembly of complex structures at an interface.