Catching Fullerenes: Synthesis of Molecular Nanogloves
Abstract
Abstract Herein, we report the synthesis of a new series of rigid, all meta ‐phenylene, conjugated deep‐cavity molecules, displaying high binding affinity towards buckyballs. A facile synthetic approach with an overall combined yield of approximately 53% in the last two steps has been developed using a templating strategy that combines the general structure of resorcin[4]arene and [12]cyclo‐ meta ‐phenylene. These two moieties are covalently linked via four acetal bonds, resulting in a glove‐like architecture. 1 H NMR titration experiments reveal fullerene binding affinities ( K a ) exceeding ≥10 6 M −1 . The size complementarity between fullerenes and these scaffolds maximizes CH⋯π and π⋯π interactions, and their host:guest adduct resembles a ball in a glove, hence their name as nanogloves. Fullerene recognition is tested by suspending carbon soot in a solution of nanoglove in 1,1,2,2‐tetrachloroethane, where more than a dozen fullerenes are observed, ranging from C 60 to C 96 .
Article Details
Authors (13)
Saber Mirzaei
Department of Chemistry
Hormoz Khosravi
Department of Chemistry Rice University 6100 Main St. Houston Texas 77005 USA
Xiangquan Hu
Department of Chemistry Rice University 6100 Main St. Houston Texas 77005 USA
M. Saeed Mirzaei
Department of Chemistry
Victor M. Espinoza Castro
Department of Chemistry Rice University 6100 Main St. Houston Texas 77005 USA
Xu Wang
Nicholas A. Figueroa
Department of Chemistry Hope College Holland Michigan 49423 USA
Tieyan Chang
Ying‐Pin Chen
ChemMatCARS The University of Chicago Lemont Illinois 60439 USA
Gabriella Prieto Ríos
Department of Chemistry University of Pittsburgh 219 Parkman Ave. Pittsburgh Pennsylvania 15260 USA
Natalia Isabel Gonzalez‐Pech
Department of Chemistry Hope College Holland Michigan 49423 USA
Yu‐Sheng Chen
ChemMatCARS the University of Chicago Lemont Illinois USA
Raúl Hernández Sánchez
Department of Chemistry, Rice University, 6100 Main St., Houston, Texas 77005, United States