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Efficiently self-healing boronic ester crystals

机译:有效地自我愈合的硼态酯晶体

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The perception of organic crystals being rigid static entities is quickly eroding, and molecular crystals are now matching a number of properties previously thought to be unique to soft materials. Here, we present crystals of a boronate ester that encompass many of the elastic and plastic mechanical properties of polymers such as bending, twisting, coiling and highly efficient self-healing of up to 67%, while they maintain their long-range structural order. The approach utilizes the concept of dynamic covalent chemistry and proves it can be applied towards ordered materials. This work expands our current understanding of the properties of crystalline molecular materials, and it could have implications towards the development of mechanically robust organic crystals that are capable of self-repair for durable all-organic electronics and soft robotics.
机译:有机晶体是刚性静态实体的感知是迅速侵蚀的,并且分子晶体现在与先前认为具有柔软材料独特的许多性质匹配。在此,我们呈现硼酸酯的晶体,其包括许多聚合物的弹性和塑料机械性能,例如弯曲,扭曲,卷绕和高效的自我愈合,高达67%,而它们保持其远程结构秩序。该方法利用动态共价化学的概念,并证明它可以朝向有序材料施用。这项工作扩展了我们目前对晶体分子材料性质的理解,并且可能对机械稳健的有机晶体产生影响,该有机晶体能够自修复,可用于耐用的全有机电子和软机器人。

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