超分子化学
位阻效应
富勒烯
化学
亲缘关系
分子
结合亲和力
主客化学
纳米技术
结晶学
立体化学
化学物理
自组装
分子构象
光化学
分子识别
化学稳定性
碳纤维
分子机器
分子动力学
寄主(生物学)
作者
A. Priscila Gia,Fernando G. Guijarro,Pau Armada,Daniel Aranda,Josefina Perles,Enrique Ortı́,Juan Aragó,David González‐Rodríguez,Alberto de Juan
摘要
ABSTRACT Being an iconic spherical molecule exclusively composed of sp 2 carbon atoms, the development of increasingly efficient synthetic receptors for C 60 fullerene remains a pressing challenge in supramolecular chemistry. However, as tighter hosts that employ most of their cavity volumes to complementarily encapsulate C 60 are developed, steric constraints may emerge that mechanically trap this ball‐shaped guest within their lumen. Here we explore this unprecedented scenario with a rigid bisporphyrin sp 2 ‐receptor that acts as a “mechanical jail” for C 60 . This exceptional host presents the tightest 3D cavity reported for this spherical guest, occupying 77% of the internal volume and enabling strong π–π and CH⋯π interactions, which result in exceptionally high binding affinities ( K a > 10 9 M − 1 ). Unlike related cage and basket analogues, encapsulation in this perfectly fitted host is kinetically hindered, leading to guest release dynamics that are extremely slow above 400 K and essentially suppressed at room temperature.
科研通智能强力驱动
Strongly Powered by AbleSci AI