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从生命中学习材料:主动、自适应和自主分子系统的概念。

Materials learning from life: concepts for active, adaptive and autonomous molecular systems.

机构信息

Institute for Macromolecular Chemistry, Albert-Ludwigs-University Freiburg, Stefan-Meier Strasse 31, 79106 Freiburg, Germany.

出版信息

Chem Soc Rev. 2017 Sep 18;46(18):5588-5619. doi: 10.1039/c6cs00738d.

Abstract

Bioinspired out-of-equilibrium systems will set the scene for the next generation of molecular materials with active, adaptive, autonomous, emergent and intelligent behavior. Indeed life provides the best demonstrations of complex and functional out-of-equilibrium systems: cells keep track of time, communicate, move, adapt, evolve and replicate continuously. Stirred by the understanding of biological principles, artificial out-of-equilibrium systems are emerging in many fields of soft matter science. Here we put in perspective the molecular mechanisms driving biological functions with the ones driving synthetic molecular systems. Focusing on principles that enable new levels of functionalities (temporal control, autonomous structures, motion and work generation, information processing) rather than on specific material classes, we outline key cross-disciplinary concepts that emerge in this challenging field. Ultimately, the goal is to inspire and support new generations of autonomous and adaptive molecular devices fueled by self-regulating chemistry.

摘要

受生物启发的非平衡系统将为下一代具有主动、自适应、自主、涌现和智能行为的分子材料设定场景。事实上,生命为复杂和功能非平衡系统提供了最好的范例:细胞不断跟踪时间、进行交流、移动、适应、进化和复制。受生物原理理解的推动,人工非平衡系统正在软物质科学的许多领域中涌现。在这里,我们将驱动生物功能的分子机制与驱动合成分子系统的分子机制进行对比。我们关注的是能够实现新功能水平的原理(时间控制、自主结构、运动和功的产生、信息处理),而不是特定的材料类别,我们概述了在这个具有挑战性的领域中出现的关键跨学科概念。最终,目标是激发和支持新一代由自我调节化学驱动的自主和自适应分子器件。

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