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Organization and Self-Assembly Away from Equilibrium: Toward Thermodynamic Design Principles
Annual Review of Condensed Matter Physics ( IF 22.6 ) Pub Date : 2021-03-10 , DOI: 10.1146/annurev-conmatphys-031218-013309
Michael Nguyen 1 , Yuqing Qiu 1 , Suriyanarayanan Vaikuntanathan 1
Affiliation  

Studies of biological systems and materials, together with recent experimental and theoretical advances in colloidal and nanoscale materials, have shown how nonequilibrium forcing can be used to modulate organization in many novel ways. In this review, we focus on how an accounting of energy dissipation, using the tools of stochastic thermodynamics, can constrain and provide intuition for the correlations and configurations that emerge in a nonequilibrium process. We anticipate that the frameworks reviewed here can provide a starting point to address some of the unique phenomenology seen in biophysical systems and potentially replicate them in synthetic materials.

中文翻译:


远离平衡的组织和自组装:朝热力学设计原则迈进

对生物系统和材料的研究以及胶体和纳米级材料的最新实验和理论进展表明,非平衡作用力可以如何以许多新颖的方式用于调节组织。在这篇综述中,我们关注于使用随机热力学工具对能量耗散进行核算如何约束和提供对非平衡过程中出现的相关性和构型的直觉。我们希望这里所回顾的框架可以提供一个起点,以解决生物物理系统中某些独特的现象学,并有可能在合成材料中复制它们。

更新日期:2021-03-10
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