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Rational Design of Self-Healing Tough Hydrogels: A Mini Review

机译:自愈性强韧水凝胶的合理设计:综述

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摘要

Hydrogels are three-dimensional cross-linked polymer networks which can absorb and retain large amount of water. As representative soft materials with tunable chemical, physical and biological properties, hydrogels with different functions have been developed and utilized in a broad range of applications, from tissue engineering to soft robotics. However, conventional hydrogels usually suffer from weak mechanical properties and they are easily deformed or damaged when they are subjected to mechanical forces. The accumulation of the damage may lead to the permanent structural change and the loss of the functional properties of the hydrogels. Therefore, it is important to develop mechanically robust hydrogels with autonomous self-healing property in order to extend their lifespan for various applications. In this mini review, we focus on the discussion about the appropriate molecular design of the hydrogel network for achieving self-healing and excellent mechanical properties, respectively as well as the corresponding self-healing and toughening mechanisms. We conclude with perspectives on the remaining challenges in the field as well as the recommendations for future development.
机译:水凝胶是三维交联的聚合物网络,可以吸收和保留大量的水。作为具有可调节的化学,物理和生物学特性的代表性软材料,具有不同功能的水凝胶已被开发出来,并在从组织工程到软机器人的广泛应用中得到利用。然而,常规的水凝胶通常具有弱的机械性能,并且当它们受到机械力时容易变形或损坏。损伤的积累可能导致水凝胶的永久结构变化和功能特性的丧失。因此,重要的是开发具有自主自修复性能的机械坚固的水凝胶,以延长其在各种应用中的寿命。在本篇微型综述中,我们将重点讨论水凝胶网络的适当分子设计,以分别实现自我修复和出色的机械性能,以及相应的自我修复和增韧机理。我们以对本领域尚存挑战以及未来发展建议的观点作为结束。

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