首页 | 本学科首页   官方微博 | 高级检索  
     


The Synthesis of Organic Molecules of Intrinsic Microporosity Designed to Frustrate Efficient Molecular Packing
Authors:Dr. Rupert G. D. Taylor  Dr.  C. Grazia Bezzu  Dr. Mariolino Carta  Dr. Kadhum J. Msayib  Dr. Jonathan Walker  Dr. Rhys Short  Dr. Benson M. Kariuki  Prof. Neil B. McKeown
Affiliation:1. School of Chemistry, Cardiff University, Cardiff, UK;2. EaStCHEM School of Chemistry, University of Edinburgh, Edinburgh, UK
Abstract:Efficient reactions between fluorine‐functionalised biphenyl and terphenyl derivatives with catechol‐functionalised terminal groups provide a route to large, discrete organic molecules of intrinsic microporosity (OMIMs) that provide porous solids solely by their inefficient packing. By altering the size and substituent bulk of the terminal groups, a number of soluble compounds with apparent BET surface areas in excess of 600 m2 g?1 are produced. The efficiency of OMIM structural units for generating microporosity is in the order: propellane>triptycene>hexaphenylbenzene>spirobifluorene>naphthyl=phenyl. The introduction of bulky hydrocarbon substituents significantly enhances microporosity by further reducing packing efficiency. These results are consistent with findings from previously reported packing simulation studies. The introduction of methyl groups at the bridgehead position of triptycene units reduces intrinsic microporosity. This is presumably due to their internal position within the OMIM structure so that they occupy space, but unlike peripheral substituents they do not contribute to the generation of free volume by inefficient packing.
Keywords:adsorption  aromatic nucleophilic substitution  microporous materials  molecular packing  triptycene
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号