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Mechanochemical Tuning of the Binaphthyl Conformation at the Air–Water Interface
Authors:Dr Daisuke Ishikawa  Dr Taizo Mori  Dr Yusuke Yonamine  Dr Waka Nakanishi  Dr David L Cheung  Dr Jonathan P Hill  Prof Katsuhiko Ariga
Institution:1. World Premier International (WPI) Research Centre for Materials, Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS), 1‐1 Namiki, Tsukuba 305‐0044, Ibaraki (Japan) http://www.nims.go.jp/super/HP/E_home.htm;2. CREST, JST, Sanbancho, Chiyoda‐ku, 102‐0075, Tokyo (Japan);3. Department of Pure and Applied Chemistry, University of Strathclyde, Glasgow (UK);4. Present address: School of Chemistry, National University of Ireland Galway, Galway (Ireland)
Abstract:Gradual and reversible tuning of the torsion angle of an amphiphilic chiral binaphthyl, from ?90° to ?80°, was achieved by application of a mechanical force to its molecular monolayer at the air–water interface. This 2D interface was an ideal location for mechanochemistry for molecular tuning and its experimental and theoretical analysis, since this lowered dimension enables high orientation of molecules and large variation in the area. A small mechanical energy (<1 kcal mol?1) was applied to the monolayer, causing a large variation (>50 %) in the area of the monolayer and modification of binaphthyl conformation. Single‐molecule simulations revealed that mechanical energy was converted proportionally to torsional energy. Molecular dynamics simulations of the monolayer indicated that the global average torsion angle of a monolayer was gradually shifted.
Keywords:biaryls  chirality  interfaces  lipids  monolayers
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