Department of Basic Science, Graduate School of Arts and Sciences , The University of Tokyo , 3-8-1 Komaba , Meguro-ku , Tokyo 153-8902 , Japan.
Quantum Chemistry Division, Graduate School of Science , Yokohama City University , 22-2 Seto , Kanazawa-ku, Yokohama-city , Kanagawa 236-0027 , Japan.
J Org Chem. 2018 May 4;83(9):5132-5137. doi: 10.1021/acs.joc.8b00495. Epub 2018 Apr 18.
The effect of the methyl groups in neutral gear-shaped amphiphiles (GSAs) on the stability of nanocubes was investigated using a novel C-symmetric GSA, which was synthesized using selective alternate trilithiation of a pentabrominated hexaphenylbenzene derivative. The lack of only one methyl group in the GSA decreased the association constant for the assembly of the nanocube by 3 orders of magnitude. A surface analysis recently developed by the authors (SAVPR: surface analysis with varying probe radii) was carried out for characteristic isomers of the nanocube consisting of C-symmetric GSAs. It was found that the methyl groups near the equator of the nanocube play a significant role in the stabilization of the nanocubes.
研究了中性齿轮状两亲分子(GSAs)中的甲基对纳米立方体形貌稳定性的影响,使用了一种新型 C 对称 GSAs,该分子是通过对五溴代六苯并苯衍生物进行选择性交替三锂化反应合成的。GSAs 中缺少一个甲基,使得纳米立方体形貌的组装缔合常数降低了 3 个数量级。作者最近开发的一种表面分析方法(SAVPR:具有可变探针半径的表面分析)用于研究由 C 对称 GSAs 组成的纳米立方体形貌的特征异构体。结果发现,纳米立方体形貌赤道附近的甲基在稳定纳米立方体形貌方面发挥了重要作用。