Baumgartner Thomas, Bergmans Werner, Kárpáti Tamás, Neumann Toni, Nieger Martin, Nyulászi László
Institute of Inorganic Chemistry, RWTH-Aachen University, Germany.
Chemistry. 2005 Aug 5;11(16):4687-99. doi: 10.1002/chem.200500152.
To explore their suitability for applications in molecular optoelectronics and as sensory materials, novel dithieno[3,2-b:2',3'-d]phospholes have been synthesized and their reactivity and properties investigated. An efficient two-step synthesis allowed for a modular assembly of differently functionalized compounds. The dithieno[3,2-b:2',3'-d]phosphole system exhibits extraordinary optoelectronic properties with respect to wavelength, intensity, and tunability. Owing to the nucleophilic nature of the central phosphorus atom, its significant electronic influence on the conjugated pi system can be altered selectively by chemically facile modifications such as oxidation or complexation with Lewis acids or transition metals. All the dithienophosphole species presented show very strong blue photoluminescence with excellent quantum yield efficiencies supporting their potential utility as blue-light emitting components in organic light emitting diodes (OLEDs). Furthermore, depending on the electronic nature of the phosphorus center, the materials exhibit distinctive optoelectronic properties suggesting that the dithieno[3,2-b:2',3'-d]phosphole system may be useful as sensory material. Theoretical calculations, including time-dependent DFT methods, revealed the excellent predictability of the structures and optoelectronic properties of the functionalized dithienophospholes allowing the design of future dithieno[3,2-b:2',3'-d]phosphole-based materials to be "stream-lined". By using tin-functionalized dithienophosphole monomers, a strategy, which involves Stille coupling, towards extended pi-conjugated materials with significantly redshifted optoelectronic properties is also presented.
为了探索它们在分子光电子学和作为传感材料方面的适用性,合成了新型二噻吩并[3,2 - b:2',3'-d]磷杂环戊二烯,并对其反应性和性质进行了研究。一种高效的两步合成法实现了不同功能化化合物的模块化组装。二噻吩并[3,2 - b:2',3'-d]磷杂环戊二烯体系在波长、强度和可调性方面表现出非凡的光电性质。由于中心磷原子的亲核性质,通过化学上简便的修饰,如氧化或与路易斯酸或过渡金属络合,可以选择性地改变其对共轭π体系的显著电子影响。所呈现的所有二噻吩并磷杂环戊二烯物种都显示出非常强的蓝色光致发光,具有优异的量子产率效率,这支持了它们作为有机发光二极管(OLED)中蓝光发射组件的潜在用途。此外,根据磷中心的电子性质,这些材料表现出独特的光电性质,表明二噻吩并[3,2 - b:2',3'-d]磷杂环戊二烯体系可能用作传感材料。包括含时密度泛函理论方法在内的理论计算揭示了功能化二噻吩并磷杂环戊二烯结构和光电性质的出色可预测性,使得未来基于二噻吩并[3,2 - b:2',3'-d]磷杂环戊二烯的材料设计能够“简化”。通过使用锡功能化的二噻吩并磷杂环戊二烯单体,还提出了一种涉及Stille偶联的策略,用于制备具有显著红移光电性质的扩展π共轭材料。