Rocha Brunno C, Paul Sanjib, Vashisth Harish
Department of Chemical Engineering, University of New Hampshire, Durham, NH 03824, USA.
Entropy (Basel). 2020 Aug 10;22(8):877. doi: 10.3390/e22080877.
Entropy plays a key role in the self-assembly of colloidal particles. Specifically, in the case of hard particles, which do not interact or overlap with each other during the process of self-assembly, the free energy is minimized due to an increase in the entropy of the system. Understanding the contribution of entropy and engineering it is increasingly becoming central to modern colloidal self-assembly research, because the entropy serves as a guide to design a wide variety of self-assembled structures for many technological and biomedical applications. In this work, we highlight the importance of entropy in different theoretical and experimental self-assembly studies. We discuss the role of shape entropy and depletion interactions in colloidal self-assembly. We also highlight the effect of entropy in the formation of open and closed crystalline structures, as well as describe recent advances in engineering entropy to achieve targeted self-assembled structures.
熵在胶体颗粒的自组装过程中起着关键作用。具体而言,对于硬颗粒,即在自组装过程中彼此不相互作用或重叠的颗粒,由于系统熵的增加,自由能会降至最低。理解熵的贡献并对其进行调控,日益成为现代胶体自组装研究的核心,因为熵可为许多技术和生物医学应用设计各种自组装结构提供指导。在这项工作中,我们强调了熵在不同理论和实验自组装研究中的重要性。我们讨论了形状熵和耗尽相互作用在胶体自组装中的作用。我们还强调了熵在开放和封闭晶体结构形成中的作用,并描述了在调控熵以实现目标自组装结构方面的最新进展。