Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095-1569, United States.
J Org Chem. 2013 Jun 7;78(11):5293-302. doi: 10.1021/jo4004053. Epub 2013 May 17.
We report the synthesis, crystal structure, solid-state dynamics, and photophysical properties of 6,13-bis((4-(3-(3-methoxyphenyl)-3,3-diphenylprop-1-yn-1-yl)phenyl)ethynyl)-5,7,12,14-tetrahydro-5,14:7,12-bis([1,2]benzeno)pentacene (1), a molecular dirotor with a 1,4-bis((4-ethynylphenyl)ethynyl)benzene (BEPEB) chromophore. The incorporation of a pentiptycene into the molecular dirotor provides a central stator and a fixed phenylene ring relative to which the two flanking ethynylphenylene rotators can explore various torsion angles; this allows the BEPEB fluorophore dynamics to persist in the solid state. X-ray diffraction studies have shown that molecular dirotor 1 is packed so that all the BEPEB fluorophores adopt a parallel alignment, this is ideal for the development of functional materials. Variable temperature, quadrupolar echo (2)H NMR studies have shown that phenylene rotator flipping has an activation energy of 9.0 kcal/mol and a room temperature flipping frequency of ∼2.6 MHz. Lastly, with measurements in solution, glasses, and crystals, we obtained evidence that the fluorescence excitation and emission spectra of the phenyleneethynylene chromophores is dependent on the extent of conjugation between the phenylene rings, as determined by their relative dihedral angles. This work provides a promising starting point for the development of molecular dirotors with polar groups whose amphidynamic nature will allow for the rapid shifting of solid-state absorption, fluorescence, and birefringence, in response to external electric fields.
我们报告了 6,13-双((4-(3-(3-甲氧基苯基)-3,3-二苯基丙-1-炔-1-基)苯基)乙炔基)-5,7,12,14-四氢-5,14:7,12-双([1,2]苯并)戊并二烯(1)的合成、晶体结构、固态动力学和光物理性质,这是一种具有 1,4-双((4-乙炔基苯基)乙炔基)苯(BEPEB)发色团的分子二转子。将五并苯引入分子二转子中提供了一个中央定子和一个固定的亚苯基环,相对于该环,两个侧翼的乙炔基亚苯基转子可以探索各种扭转角;这使得 BEPEB 荧光团的动力学在固态中得以持续。X 射线衍射研究表明,分子二转子 1 的堆积方式使得所有的 BEPEB 荧光团都采用平行排列,这对于开发功能材料是理想的。变温、四极回波(2)H NMR 研究表明,亚苯基转子翻转的活化能为 9.0 kcal/mol,室温下的翻转频率约为 2.6 MHz。最后,通过在溶液、玻璃和晶体中的测量,我们获得了证据表明,苯并二炔发色团的荧光激发和发射光谱取决于苯环之间的共轭程度,这由它们的相对二面角决定。这项工作为开发具有极性基团的分子二转子提供了一个有前途的起点,其双动态性质将允许快速改变固态吸收、荧光和双折射,以响应外电场。