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Supramolecular Complexes of Multivalent Cholesterol‐Containing Polymers to Solubilize Carbon Nanotubes in Apolar Organic Solvents
Authors:Jules Zeuna Nguendia  Weiheng Zhong  Alexandre Fleury  Guillaume De?Grandpré  Prof Armand Soldera  Prof Ribal Georges Sabat  Prof Jerome P Claverie
Institution:1. Quebec Center for Functional Materials, NanoQAM, Department of Chemistry, Université du Québec à Montréal, Succ. Centre‐Ville, CP8888, Montreal, H3C3P8 Qc (Canada);2. Quebec Center for Functional Materials, Department of Chemistry, Université de Sherbrooke, 2500 Blvd de l'Université, Sherbrooke, J1K2R1 Qc (Canada);3. Quebec Center for Functional Materials, Department of Physics, Royal Military College of Canada, PO Box 17000, STN Forces, Kingston, On (Canada)
Abstract:Copolymers of 2‐ethylhexyl acrylate (EHA) and cholesteryloxycarbonyl‐2‐hydroxymethacrylate (CEM) were prepared by reversible addition–fragmentation chain‐transfer (RAFT) polymerization. Supramolecular complexes of these copolymers with carbon nanotubes (CNTs) were soluble in THF, toluene, and isooctane. The colloidal solutions remained stable for months without aggregation. The rationale for the choice of CEM was based on the high adsorption energy of cholesterol on the CNT surface, as computed by DFT calculations. Adsorption isotherms were experimentally measured for copolymers of various architectures (statistical, diblock, and star copolymers), thereby demonstrating that 2–5 cholesterol groups were adsorbed per polymer chain. Once the supramolecular complex had dried, the CNTs could be easily resolubilized in isooctane without the need for high‐power sonication and in the absence of added polymer. Analysis by atomic force microscopy (AFM), scanning electron microscopy (SEM), and transmission electron microscopy (TEM) indicated that the CNTs were devoid of bundles. The supramolecular complexes could also be employed in an inverse emulsion polymerization of 2‐hydroxyethylmethacrylate (HEMA) in isooctane and dodecane, thereby leading to the formation of a continuous polymeric sheath around the CNTs. Thus, this technique leads to the formation of very stable dispersions in non‐polar organic solvents, without altering the fundamental properties of the CNTs.
Keywords:adsorption  colloids  nanotubes  polymerization  supramolecular chemistry
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