Department of Molecular Engineering, Graduate School of Engineering, Kyoto University, Nishikyo-ku, Kyoto 615-8510, Japan.
Chemistry. 2012 Dec 7;18(50):15972-83. doi: 10.1002/chem.201203047. Epub 2012 Nov 9.
The first comprehensive study of the synthesis and structure-property relationships of 2,2'-bis(benzo[b]phosphole)s and 2,2'-benzo[b]phosphole-benzo[b]heterole hybrid π systems is reported. 2-Bromobenzo[b]phosphole P-oxide underwent copper-assisted homocoupling (Ullmann coupling) and palladium-catalyzed cross-coupling (Stille coupling) to give new classes of benzo[b]phosphole derivatives. The benzo[b]phosphole-benzo[b]thiophene and -indole derivatives were further converted to P,X-bridged terphenylenes (X = S, N) by a palladium-catalyzed oxidative cycloaddition reaction with 4-octyne through the C(β)-H activation. X-ray analyses of three compounds showed that the benzo[b]phosphole-benzo[b]heterole derivatives have coplanar π planes as a result of the effective conjugation through inter-ring C-C bonds. The π-π* transition energies and redox potentials of the cis and trans isomers of bis(benzo[b]phosphole) P-oxide are very close to each other, suggesting that their optical and electrochemical properties are little affected by the relative stereochemistry at the two phosphorus atoms. The optical properties of the benzo[b]phosphole-benzo[b]heterole hybrids are highly dependent on the benzo[b]heterole subunits. Steady-state UV/Vis absorption/fluorescence spectroscopy, fluorescence lifetime measurements, and theoretical calculations of the non-fused and acetylene-fused benzo[b]phosphole-benzo[b]heterole π systems revealed that their emissive excited states consist of two different conformers in rapid equilibrium.
首次全面研究了 2,2'-双(苯并[b]磷杂环戊二烯)和 2,2'-苯并[b]磷杂环戊二烯-苯并[b]杂环混合π体系的合成和结构-性能关系。2-溴苯并[b]磷杂环戊二烯 P-氧化物经历铜辅助的同偶联(Ullmann 偶联)和钯催化的交叉偶联(Stille 偶联),生成新的苯并[b]磷杂环戊二烯衍生物。苯并[b]磷杂环戊二烯-苯并[b]噻吩和-吲哚衍生物通过钯催化的氧化环加成反应,与 4-辛炔通过 C(β)-H 活化,进一步转化为 P,X-桥联三联苯(X = S,N)。三个化合物的 X 射线分析表明,苯并[b]磷杂环戊二烯-苯并[b]杂环衍生物具有共面的π平面,这是由于通过环间 C-C 键的有效共轭。双(苯并[b]磷杂环戊二烯)P-氧化物顺式和反式异构体的 π-π*跃迁能和氧化还原电位非常接近,表明其光学和电化学性质受两个磷原子相对立体化学的影响很小。苯并[b]磷杂环戊二烯-苯并[b]杂环杂化物的光学性质高度依赖于苯并[b]杂环取代基。稳态紫外/可见吸收/荧光光谱、荧光寿命测量和非融合和乙炔融合的苯并[b]磷杂环戊二烯-苯并[b]杂环π体系的理论计算表明,它们的发射激发态由两种不同构象在快速平衡中组成。