Yao Yuqing, Ren Jie, Li Hanying
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, International Research Center for X Polymers, Department of Polymer Science and Engineering, Zhejiang University, 38 Zheda Road, Hangzhou, 310027, China.
Chempluschem. 2023 Aug;88(8):e202300228. doi: 10.1002/cplu.202300228.
Biominerals are inherently organic-inorganic crystal composites. Drawing inspiration from this biomineral structure, functionalized single crystals can be synthesized using the gel-grown method, resulting in the incorporation of gel-networks into the host crystals. By incorporating gel-networks, diverse guest materials, such as nanoparticles and dye molecules, can be uniformly and isotropically distributed within the crystals, thereby imparting non-intrinsic optical or magnetic properties to the host crystals. Additionally, gel-incorporation enhances the toughness and stability of the crystals as the incorporated gel-fibers and accompanying guest materials act as bridges to prevent crack propagation. Furthermore, gel-incorporation enables protein crystals to exhibit self-healing properties, which can be attributed to the dynamic bonding interaction between gel-networks and crystals. Notably, recent research has demonstrated that the incorporation of zwitterionic gel-networks enhances the charge effects on crystal morphology evolution as the charged groups become bound to the developing crystal surfaces, and their detachment is impeded by the interconnected gel-networks. Therefore, preparing single crystals with gel-incorporation is a remarkable strategy for synthesizing functionalized crystal materials.
生物矿物本质上是有机-无机晶体复合材料。从这种生物矿物结构中获得灵感,可以使用凝胶生长法合成功能化单晶,从而将凝胶网络融入主体晶体中。通过引入凝胶网络,各种客体材料,如纳米颗粒和染料分子,可以在晶体内均匀且各向同性地分布,从而赋予主体晶体非本征光学或磁性特性。此外,由于引入的凝胶纤维和伴随的客体材料起到防止裂纹扩展的桥梁作用,凝胶的引入增强了晶体的韧性和稳定性。此外,凝胶的引入使蛋白质晶体具有自愈特性,这可归因于凝胶网络与晶体之间的动态键合相互作用。值得注意的是,最近的研究表明,两性离子凝胶网络的引入增强了对晶体形态演变的电荷效应,因为带电基团与正在生长的晶体表面结合,并且它们的脱离受到相互连接的凝胶网络的阻碍。因此,制备含有凝胶的单晶是合成功能化晶体材料的一种卓越策略。