Yoshizawa Michito, Klosterman Jeremy K, Fujita Makoto
Chemical Resources Laboratory, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8503, Japan.
Angew Chem Int Ed Engl. 2009;48(19):3418-38. doi: 10.1002/anie.200805340.
The application of self-assembled hosts as "molecular flasks" has precipitated a surge of interest in the reactivity and properties of molecules within well-defined confined spaces. The facile and modular synthesis of self-assembled hosts has enabled a variety of hosts of differing sizes, shapes, and properties to be prepared. This Review briefly highlights the various molecular flasks synthesized before focusing on their use as functional molecular containers--specifically for the encapsulation of guest molecules to either engender unusual reactions or unique chemical phenomena. Such self-assembled cavities now constitute a new phase of chemistry, which cannot be achieved in the conventional solid, liquid, and gas phases.
自组装主体作为“分子烧瓶”的应用引发了人们对限定良好的受限空间内分子的反应性和性质的浓厚兴趣。自组装主体简便且模块化的合成方法使得能够制备出各种尺寸、形状和性质不同的主体。本综述简要介绍了所合成的各种分子烧瓶,然后重点关注它们作为功能性分子容器的用途——特别是用于封装客体分子以引发异常反应或独特的化学现象。这种自组装空腔现在构成了一个新的化学阶段,这在传统的固相、液相和气相中是无法实现的。