Organic Chemistry Institute, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.
J Am Chem Soc. 2012 Jan 25;134(3):1528-35. doi: 10.1021/ja2063346. Epub 2012 Jan 4.
Dynamic gearing of molecular spur gears, the most common type of mechanical gear, is elucidated. Molecular design and conformational analysis show that derivatives of 4,4-bis(triptycen-9-ylethynyl)bibenzimidazole represent suitable constructs to investigate gearing behavior of collateral triptycene (Tp) groups. To test this design, DFT calculations (B97-D/Def2-TZVP) were employed and the results suggest that these molecules undergo geared rotation preferentially to gear slippage. Synthesis of derivatives was carried out, providing a series of molecular spur gears, including the first desymmetrized spur gear molecules, which were subsequently subjected to stereochemical analysis.
阐述了最常见的机械齿轮——分子正齿轮的动态传动比。分子设计和构象分析表明,4,4-双(三芴基-9-基乙炔基)联苯并咪唑的衍生物代表了合适的结构,可用于研究侧基三芴基(Tp)基团的传动比行为。为了验证这一设计,进行了 DFT 计算(B97-D/Def2-TZVP),结果表明这些分子优先进行齿轮转动,而不是齿轮滑动。合成了衍生物,提供了一系列分子正齿轮,包括第一个非对称化的正齿轮分子,随后对它们进行了立体化学分析。