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庆祝软物质十周年:调控自组装时域的方法

Celebrating Soft Matter's 10th Anniversary: Approaches to program the time domain of self-assemblies.

作者信息

Heinen Laura, Walther Andreas

机构信息

DWI - Leibniz-Institute for Interactive Materials, Forckenbeckstraße 50, 52074 Aachen, Germany.

出版信息

Soft Matter. 2015 Oct 28;11(40):7857-66. doi: 10.1039/c5sm01660f. Epub 2015 Aug 28.

Abstract

Self-regulating reconfigurable soft matter systems are of great interest for creating adaptive and active material properties. Such complex functionalities emerge from non-linear and interactive behavior in space and time as demonstrated by a plethora of dynamic, self-organizing biological structures (e.g., the cytoskeleton). In man-made self-assemblies, patterning of the spatial domain has advanced to creating hierarchical structures via precise molecular programming. However, orchestration of the time domain of self-assemblies is still in its infancy and lacks universal design principles. In this Emerging Area article we outline major strategies for programming the time domain of self-assemblies following the concepts of regulatory reaction networks, energy dissipation and kinetic control. Such concepts operate outside thermodynamic equilibrium and pave the way for temporally patterned, dynamic, and autonomously acting functional materials.

摘要

自调节可重构软物质系统对于创造适应性和活性材料特性具有极大的吸引力。正如大量动态的、自组织的生物结构(如细胞骨架)所展示的那样,这种复杂功能源于时空上的非线性和交互行为。在人造自组装体系中,空间域的图案化已发展到通过精确的分子编程来创建层次结构。然而,自组装体系时域的编排仍处于起步阶段,并且缺乏通用的设计原则。在这篇新兴领域文章中,我们概述了遵循调节反应网络、能量耗散和动力学控制概念对自组装体系时域进行编程的主要策略。这些概念在热力学平衡之外起作用,为具有时间图案化、动态和自主作用的功能材料铺平了道路。

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