Department of Chemistry, Zhejiang University, Hangzhou 310027, P. R. China.
Chem Commun (Camb). 2010 Nov 21;46(43):8131-41. doi: 10.1039/c0cc02717k. Epub 2010 Sep 10.
Self-assembly allows the construction of advanced molecular or supramolecular systems from small building blocks. Host-guest recognition, for its self-selectivity, environmental responsiveness and convenient application to complex molecular devices, plays a significant role in self-assembled systems. During this process, the association constant between the host and guest is an important standard to identify the properties of the systems. In order to prepare mechanically interlocked structures and large supramolecular systems efficiently from small molecules based on a host-guest recognition motif, it is necessary to increase host-guest association constants. Crown ether-based cryptands have been designed and prepared to improve the binding of paraquat derivatives. This feature article aims to describe the design and syntheses of crown ether-based cryptand hosts for paraquat derivatives and the application of the cryptand/paraquat recognition motif in the fabrication of threaded structures, molecular switches and supramolecular polymers.
自组装允许从小的构建块构建先进的分子或超分子系统。主体-客体识别因其自选择性、环境响应性和方便应用于复杂分子器件,在自组装系统中发挥着重要作用。在这个过程中,主体和客体之间的缔合常数是识别系统性质的重要标准。为了有效地从小分子出发,通过主体-客体识别模式制备机械互锁结构和大型超分子体系,有必要提高主体-客体缔合常数。基于冠醚的穴醚已被设计和制备以提高对百草枯衍生物的结合。本文旨在描述基于冠醚的穴醚主体对百草枯衍生物的设计和合成,以及穴醚/百草枯识别模式在螺旋结构、分子开关和超分子聚合物的制备中的应用。