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首页> 外文期刊>Chemistry: A European journal >Comparative Study on the Structural, Optical, and Electrochemical Properties of Bithiophene-Fused Benzo[c]phospholes
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Comparative Study on the Structural, Optical, and Electrochemical Properties of Bithiophene-Fused Benzo[c]phospholes

机译:联噻吩融合的苯并[c]磷脂的结构,光学和电化学性质的比较研究

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Three types of bithiophene-fused benzo[c]phospholes were successfully prepared by Ti-II-mediated cyclization of the corresponding dialkynylated bithiophene derivatives as a key step. Each sigma(3)-phosphorus center of the benzo[c]phosphole subunits was readily transformed into sigma(4)-phosphorus center by Au coordination or oxygenation. In addition, the bithiophene subunit was functionalized at the alpha,alpha'-carbon atoms by Pd-catalyzed cross-coupling reactions with heteroarylmetals and by an SNAr reaction with hexafluorobenzene. The experimentally observed results (NMR spectroscopy, X-ray analysis, UV/Vis absorption/fluorescence spectroscopy, and cyclic/differential-pulse voltammetry) have revealed that the structural, optical, and electrochemical properties of the bithiophene-fused benzo[c]phospholes vary considerably depending on the pi-conjugation modes at the bithiophene subunits and the substituents of the heterocyclopentadiene components. The appropriately ring-annulated sigma(3)-P derivatives and sigma(4)-P-AuCl complexes were found to emit fluorescence in the orange-red region, and the sigma(4)-P-oxo derivatives proved to undergo reversible one-electron reduction at -1.4 to -1.8V (vs ferrocene/ferrocenium). These results indicate that the bithiophene-fused benzo[c]phospholes possess narrow HOMO-LUMO gaps and low-lying LUMOs, which was confirmed by density functional theory calculations of their model compounds. The time-of-flight measurement of an ITO/benzo[c]phosphole/Al device showed that the electron mobility in the P-oxo derivative is one-order higher than that in Alq(3) at low electric fields. The present study demonstrates that the arene-fused benzo[c]phosphole skeleton could be a highly promising platform for the construction of a new class of phosphole-based optoelectrochemical materials.
机译:Ti-II介导的相应二炔基化联噻吩衍生物的环化反应是关键步骤,成功制备了三种类型的联噻吩稠合的苯并[c]磷脂。苯并[c]磷亚基的每个sigma(3)-磷中心很容易通过Au配位或氧合转变为sigma(4)-磷中心。另外,通过Pd催化的与杂芳基金属的交叉偶联反应以及通过与六氟苯的SNAr反应,将联噻吩亚基在α,α′-碳原子上官能化。实验观察的结果(NMR光谱,X射线分析,UV / Vis吸收/荧光光谱和循环/微分脉冲伏安法)表明,联噻吩稠合的苯并[c]磷脂的结构,光学和电化学性质取决于联噻吩亚基上的π-共轭模式和杂环戊二烯组分的取代基,其变化很大。发现适当环环化的sigma(3)-P衍生物和sigma(4)-P-AuCl络合物在橙红色区域发出荧光,并且sigma(4)-P-oxo衍生物被证明可逆-在-1.4至-1.8V时电子还原(与二茂铁/二茂铁相比)。这些结果表明,联噻吩稠合的苯并[c]磷脂具有较窄的HOMO-LUMO间隙和较低的LUMO,这已通过其模型化合物的密度泛函理论计算得到了证实。 ITO /苯并[c]磷脂/ Al器件的飞行时间测量表明,在低电场下,P-oxo衍生物中的电子迁移率比Alq(3)中的电子迁移率高一阶。本研究表明,芳烃稠合的苯并[c]磷脂骨架可能是构建新型基于磷脂的光电化学材料的极有前途的平台。

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