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首页> 外文期刊>Materials Chemistry Frontiers >Pressure-induced remarkable luminescence switch of a dimer form of donor–acceptor–donor triphenylamine (TPA) derivative
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Pressure-induced remarkable luminescence switch of a dimer form of donor–acceptor–donor triphenylamine (TPA) derivative

机译:Pressure-induced的发光开关一个donor-acceptor-donor二聚体的形式三苯胺衍生物(TPA)

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摘要

Two newly synthesized molecules with a twisted donor–acceptor–donor (D–A–D) structure were achieved, noted as TPA-Ph-CN and TPA-Py-CN, and their solvatochromic effects and mechanochromic properties upon grinding and/or under hydrostatic pressure were investigated deeply. The comparison of their solvatochromic behaviors demonstrates that TPA-Py-CN shows a stronger intramolecular charge transfer (ICT) effect than TPA-Ph-CN due to the substitution of electron-deficient acceptor from Ph-CN to Py-CN. Photophysical characterizations together with the analysis of crystal structures indicate that TPA-Py-CN exhibits a distinct dimer structure with C–Hp interactions, but TPA-Ph-CN does not. As a result, TPA-Py-CN shows green emission with three bands and the peak at 538 nm is assigned to excimer, while TPA-Ph-CN presents blue emission with only one band. Upon grinding, TPA-Py-CN shows more sensitive responsiveness to pressure than TPA-Ph-CN and exhibits a size-dependent emission property. TPA-Ph-CN only displays continuous red-shifted and broadened emission under hydrostatic pressure. In contrast, high pressure experiments and theoretical calculations of TPA-Py-CN demonstrate that the excimer fluorescence wavelength is pressure-independent. This study is helpful for better understanding intrinsic essences of the molecular structure and the properties of mechano-responsive organic molecules.
机译:两个新合成分子扭曲donor-acceptor-donor (D-A-D)结构实现,指出TPA-Ph-CN TPA-Py-CN,他们和mechanochromic电荷的影响属性在磨削和/或下静水压力是深入调查。电荷的行为了TPA-Py-CN显示了更强的分子内比TPA-Ph-CN由于电荷转移(ICT)效应缺电子的替换受体Ph-CN Py-CN。特征的分析晶体结构表明TPA-Py-CN展品与C-Hp截然不同的二聚体结构交互,但TPA-Ph-CN并不。因此,TPA-Py-CN显示绿色排放有三个乐队和高峰在538 nm分配准分子,而TPA-Ph-CN呈现蓝色的排放只有一个乐队。显示更敏感响应性压力比TPA-Ph-CN和展品尺度依赖的发射性质。连续红移和扩大发射在静水压力。压力实验和理论计算TPA-Py-CN证明准分子荧光波长pressure-independent。本研究有助于更好的理解分子结构和内在的本质mechano-responsive有机的属性分子。

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