Godinez Carlos E, Zepeda Gerardo, Mortko Christopher J, Dang Hung, Garcia-Garibay Miguel A
Department of Chemistry and Biochemistry, University of California, Los Angeles, Los Angeles, California 90095-1569, USA.
J Org Chem. 2004 Mar 5;69(5):1652-62. doi: 10.1021/jo035517i.
We report a highly convergent synthesis for the preparation of molecular gyroscopes consisting of para-phenylene rotors linked by triple bonds to methyl-substituted triptycenes acting as pivots and encapsulating frames. The desired 1,4-bis[2-(2,3,6,7,12,13-hexamethyl-10-alkyl-9-triptycyl)ethynyl]benzenes were prepared from 2,3-dimethyl-1,3-butadiene using Diels-Alder cycloadditions and Pd(0)-catalyzed coupling as the key reactions. The main challenge in the synthesis came about in the preparation of 9-alkynyl-triptycenes by Diels-Alder reaction of benzynes and 9-alkynyl-2,3,6,7-tetramethylanthracenes. These reactions occurred with chemical yields and regioselectivities that were strongly influenced by steric and electronic effects of substituents at C10 of the anthracene core. Anthracenes with methyl, propyl, and phenyl substituents were utilized to complete the synthesis of their corresponding molecular gyroscopes, and their solid-state structures were determined by single-crystal X-ray diffraction analysis. Examination of these results indicated that, as expected, the bulky triptycyl groups encourage crystallization motifs that create more free volume around the phenylene rotor, as needed to facilitate fast gyroscopic motion in the solid state.
我们报道了一种用于制备分子陀螺仪的高度收敛的合成方法,该分子陀螺仪由对亚苯基转子组成,这些转子通过三键与充当枢轴和封装框架的甲基取代的三棱柱烯相连。所需的1,4-双[2-(2,3,6,7,12,13-六甲基-10-烷基-9-三棱柱烯基)乙炔基]苯是由2,3-二甲基-1,3-丁二烯通过狄尔斯-阿尔德环加成反应和钯(0)催化的偶联反应作为关键反应制备的。合成中的主要挑战在于通过苯炔与9-炔基-2,3,6,7-四甲基蒽的狄尔斯-阿尔德反应制备9-炔基-三棱柱烯。这些反应的化学产率和区域选择性受到蒽核C10位取代基的空间和电子效应的强烈影响。使用具有甲基、丙基和苯基取代基的蒽来完成其相应分子陀螺仪的合成,并通过单晶X射线衍射分析确定其固态结构。对这些结果的研究表明,正如预期的那样,庞大的三棱柱烯基团促进了结晶模式,从而在亚苯基转子周围创造了更多的自由体积,这是在固态中促进快速陀螺运动所必需的。