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Dynamic Colloidal Photonic Crystal Hydrogels with Self-Recovery and Injectability

机译:具有自恢复和可注射性的动态胶体光子晶体水凝胶

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摘要

Simulation of self-recovery and diversity of natural photonic crystal (PC) structures remain great challenges for artificial PC materials. Motivated by the dynamic characteristics of PC nanostructures, here, we present a new strategy for the design of hydrogel-based artificial PC materials with reversible interactions in the periodic nanostructures. The dynamic PC hydrogels, derived from self-assembled microgel colloidal crystals, were tactfully constructed by reversible crosslinking of adjacent microgels in the ordered structure via phenylboronate covalent chemistry. As proof of concept, three types of dynamic colloidal PC hydrogels with different structural colors were prepared. All the hydrogels showed perfect self-healing ability against physical damage. Moreover, dynamic crosslinking within the microgel crystals enabled shear-thinning injection of the PC hydrogels through a syringe (indicating injectability or printability), followed by rapid recovery of the structural colors. In short, in addition to the great significance in biomimicry of self-healing function of natural PC materials, our work provides a facile strategy for the construction of diversified artificial PC materials for different applications such as chem-/biosensing, counterfeit prevention, optical display, and energy conversion.
机译:自我恢复和多样性的自我回收和多样性的模拟对于人工PC材料仍然存在巨大挑战。通过PC纳米结构的动态特性,这里,我们提出了一种在周期性纳米结构中具有可逆相互作用的水凝胶基人工PC材料设计的新策略。通过苯并硼酸共价化学在有序结构中的相邻微凝胶的可逆交联,通过苯并硼酸盐的共价化学来致谈地构建动态PC水凝胶。作为概念证明,制备了三种具有不同结构颜色的动态胶体PC水凝胶。所有水凝胶都显示出完美的自我愈合能力免受物理损伤。此外,微凝胶晶体内的动态交联使通过注射器(指示可注射或可印刷性)的剪切稀疏注入PC水凝胶,然后快速恢复结构颜色。简而言之,除了自然PC材料的自我修复功能的生物擦拭功能的巨大意义外,我们的作品为不同应用,诸如化学/生物传感,假冒预防,光学显示器等不同应用提供了多样化人工PC材料的展开策略和能量转换。

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