Department of Chemistry, Bogazici University, Bebek, 34342 Istanbul, Turkey.
Center for Life Science and Technologies, Bogazici University, 34342 Istanbul, Turkey.
Molecules. 2023 Jan 20;28(3):1076. doi: 10.3390/molecules28031076.
In recent years, the bottom-up approach has emerged as a powerful tool in the fabrication of functional nanomaterials through the self-assembly of nanoscale building blocks. The cues embedded at the molecular level provide a handle to control and direct the assembly of nano-objects to construct higher-order structures. Molecular recognition among the building blocks can assist their precise positioning in a predetermined manner to yield nano- and microstructures that may be difficult to obtain otherwise. A well-orchestrated combination of top-down fabrication and directed self-assembly-based bottom-up approach enables the realization of functional nanomaterial-based devices. Among the various available molecular recognition-based "host-guest" combinations, cyclodextrin-mediated interactions possess an attractive attribute that the interaction is driven in aqueous environments, such as in biological systems. Over the past decade, cyclodextrin-based specific host-guest interactions have been exploited to design and construct structural and functional nanomaterials based on cyclodextrin-coated metal nanoparticles. The focus of this review is to highlight recent advances in the self-assembly of cyclodextrin-coated metal nanoparticles driven by the specific host-guest interaction.
近年来,自下而上的方法通过纳米级构建块的自组装,成为制造功能纳米材料的有力工具。分子水平上嵌入的线索提供了一种控制和指导纳米物体组装以构建更高阶结构的方法。构建块之间的分子识别可以帮助它们以预定的方式精确定位,从而产生否则难以获得的纳米和微结构。自上而下的制造和基于定向自组装的自下而上方法的精心组合使基于功能纳米材料的器件的实现成为可能。在各种可用的基于分子识别的“主体-客体”组合中,环糊精介导的相互作用具有一个吸引人的属性,即相互作用是在水相环境中驱动的,例如在生物系统中。在过去的十年中,基于环糊精的特定主体-客体相互作用已被用于设计和构建基于环糊精涂覆的金属纳米粒子的结构和功能纳米材料。这篇综述的重点是强调由特定主体-客体相互作用驱动的环糊精涂覆的金属纳米粒子自组装的最新进展。