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Location, location, location - Strategic positioning of 2,1,3-benzothiadiazole units within trigonal quaterfluorene-truxene star-shaped structures

机译:位置,位置,位置-2,1,3-苯并噻二唑单元在三角形四方芴-甲苯星形结构中的战略位置

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摘要

The fused, bicyclic molecule, 2,1,3-Benzothiadiazole (BT), has become a key ingredient in the design of new organic semiconductors for light emission and energy harvesting applications. Here, the synthesis is reported of a series of trigonal, star-shaped compounds comprising a truxene core and three quater-dialkylfluorene arms into each of which a BT unit is inserted sequentially at each possible position (T4BT-A to T4BT-E). Analysis of the resulting electronic properties shows that as a consequence of conjugative coupling to the core and the resulting symmetry there are three distinct locations for the BT unit and the influence that these locations have on light emission and other spectroscopic characteristics is discussed. The systematic variation in photophysical properties for the different structural isomers helps to clarify the influence of BT unit addition to 9,9-dialkylfluorene chains. It also helps to establish a design template for the construction of donor-acceptor conjugated materials with targeted properties. For T4BT-E with a BT unit at the terminal position of each arm, the photoluminescence quantum efficiency is significantly reduced and no amplified spontaneous emission is observed under typical pumping conditions. Theoretical calculations assist in understanding the variation in behaviors among the T4BT-X family of compounds, especially in relation to their photoluminescence decay times and the Raman scattering intensities of their dominant BT-unit-centred molecular vibrations.
机译:稠合的双环分子2,1,3-苯并噻二唑(BT)已成为设计用于发光和能量收集应用的新型有机半导体的关键成分。在此,据报道合成了一系列由戊烯核和三个季铵二烷基芴臂组成的三角形星形化合物,在每个可能的位置上依次插入了一个BT单元(T4BT-A至T4BT-E)。对产生的电子特性的分析表明,由于共轭耦合到磁芯和产生的对称性,BT单元存在三个不同的位置,并讨论了这些位置对发光和其他光谱特性的影响。不同结构异构体的光物理性质的系统变化有助于阐明BT单元添加到9,9-二烷基芴链上的影响。它还有助于建立用于设计具有目标特性的供体-受体共轭材料的设计模板。对于在每个臂末端位置带有BT单元的T4BT-E,在典型的泵浦条件下,光致发光量子效率显着降低,并且未观察到放大的自发发射。理论计算有助于理解T4BT-X系列化合物之间的行为变化,特别是与它们的光致发光衰减时间和主要以BT单元为中心的分子振动的拉曼散射强度有关。

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