Yuan Zheng, Entwistle Christopher D, Collings Jonathan C, Albesa-Jové David, Batsanov Andrei S, Howard Judith A K, Taylor Nicholas J, Kaiser Hanns Martin, Kaufmann Dieter E, Poon Suk-Yue, Wong Wai-Yeung, Jardin Christophe, Fathallah Sofiane, Boucekkine Abdou, Halet Jean-François, Marder Todd B
Department of Chemistry, University of Waterloo Waterloo, ON N2L 3G1, Canada.
Chemistry. 2006 Mar 20;12(10):2758-71. doi: 10.1002/chem.200501096.
The (p-R-phenyl)dimesitylboranes (R=Me(2)N, MeO, MeS, Br, I), (p-R-phenylethynyl)dimesitylboranes (R=Me(2)N, MeO, MeS, H), (E)-[2-(p-R-phenyl)ethenyl]dimesitylboranes (R=Me(2)N, H(2)N, MeO, MeS, H, CN, NO(2)), (E)-[2-(2-thienyl)ethenyl]dimesitylborane, and (E)-[2-(o-carboranyl)ethenyl]dimesitylborane have been prepared through the reaction of the appropriate p-R-phenyl- and p-R-phenylethynyllithium reagents with dimesitylboron fluoride and by hydroboration of the appropriate p-R-phenylacetylene, 2-ethynylthiophene, and o-ethynylcarborane with dimesitylborane. Their UV/Vis absorption and emission spectra have been recorded in a range of solvents with the fluorescence maxima of the donor-substituted compounds in particular exhibiting large bathochromic shifts in highly polar solvents, indicative of charge transfer leading to large dipole moments in the excited state. The molecular structures of the (p-R-phenyl)dimesitylboranes (R=Me(2)N, MeO, MeS, Br, I), the (E)-[2-(p-R-phenyl)ethenyl]dimesitylboranes (R=Me(2)N, H(2)N MeO, MeS, H), (p-R-phenylethynyl)dimesitylborane (R=Me(2)N), and (E)-[2-(2-thienyl)ethenyl]dimesitylborane, which have been determined from single-crystal X-ray diffraction measurements, offer evidence of increased conjugation in the ground state with increased donor strength of the R substituent. Their first- and second-order molecular hyperpolarizabilities have been obtained from EFISH and THG measurements, the first-order hyperpolarizabilities being largest for the strongest R-substituent donors. AM1 calculations have been performed on these compounds, showing reasonable agreement with the experimentally obtained bond lengths and hyperpolarizabilities, as well as on several related hypothetical compounds containing multiple C==C bonds, most of which are proposed to have even larger hyperpolarizabilities.
通过适当的对 - R - 苯基锂和对 - R - 苯乙炔基锂试剂与二甲基硼氟化物反应,以及用二甲基硼烷对适当的对 - R - 苯乙炔、2 - 乙炔基噻吩和邻乙炔基碳硼烷进行硼氢化反应,制备了(对 - R - 苯基)二甲基硼烷(R = 二甲基氨基、甲氧基、甲硫基、溴、碘)、(对 - R - 苯乙炔基)二甲基硼烷(R = 二甲基氨基、甲氧基、甲硫基、氢)、(E) - [2 - (对 - R - 苯基)乙烯基]二甲基硼烷(R = 二甲基氨基、氨基、甲氧基、甲硫基、氢、氰基、硝基)、(E) - [2 - (2 - 噻吩基)乙烯基]二甲基硼烷和(E) - [2 - (邻碳硼烷基)乙烯基]二甲基硼烷。在一系列溶剂中记录了它们的紫外/可见吸收光谱和发射光谱,特别是供体取代化合物的荧光最大值在高极性溶剂中表现出大的红移,这表明电荷转移导致激发态具有大的偶极矩。通过单晶X射线衍射测量确定了(对 - R - 苯基)二甲基硼烷(R = 二甲基氨基、甲氧基、甲硫基、溴、碘)、(E) - [2 - (对 - R - 苯基)乙烯基]二甲基硼烷(R = 二甲基氨基、氨基、甲氧基、甲硫基、氢)、(对 - R - 苯乙炔基)二甲基硼烷(R = 二甲基氨基)和(E) - [2 - (2 - 噻吩基)乙烯基]二甲基硼烷的分子结构,这些结构证明随着R取代基供体强度的增加,基态共轭增强。通过电场诱导二次谐波(EFISH)和三次谐波产生(THG)测量获得了它们的一阶和二阶分子超极化率,最强的R取代基供体的一阶超极化率最大。对这些化合物进行了AM1计算,计算结果与实验得到的键长和超极化率合理吻合,同时也对几种含有多个碳 - 碳双键的相关假设化合物进行了计算,其中大多数被认为具有更大的超极化率。