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An Active Approach to Colloidal Self-Assembly
Annual Review of Physical Chemistry ( IF 11.7 ) Pub Date : 2018-04-20 00:00:00 , DOI: 10.1146/annurev-physchem-050317-021237
Stewart A. Mallory 1 , Chantal Valeriani 2 , Angelo Cacciuto 1
Affiliation  

In this review, we discuss recent advances in the self-assembly of self-propelled colloidal particles and highlight some of the most exciting results in this field, with a specific focus on dry active matter. We explore this phenomenology through the lens of the complexity of the colloidal building blocks. We begin by considering the behavior of isotropic spherical particles. We then discuss the case of amphiphilic and dipolar Janus particles. Finally, we show how the geometry of the colloids and/or the directionality of their interactions can be used to control the physical properties of the assembled active aggregates, and we suggest possible strategies for how to exploit activity as a tunable driving force for self-assembly. The unique properties of active colloids lend promise to the design of the next generation of functional, environment-sensing microstructures able to perform specific tasks in an autonomous and targeted manner.

中文翻译:


胶体自组装的一种主动方法

在这篇综述中,我们讨论了自推进胶体颗粒自组装的最新进展,并重点介绍了该领域中一些最令人兴奋的结果,特别关注了干燥活性物质。我们通过胶体结构单元的复杂性来探讨这种现象学。我们首先考虑各向同性球形粒子的行为。然后,我们讨论两亲和偶极Janus粒子的情况。最后,我们展示了胶体的几何形状和/或它们相互作用的方向性如何可用于控制组装好的活性聚集体的物理性质,并为如何利用活性作为可调节的自我驱动力提供了可能的策略。集会。活性胶体的独特性能为下一代功能性设计提供了希望,

更新日期:2018-04-20
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