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首页> 外文期刊>Chemistry, an Asian journal >Multistimuli-Responsive Luminescence Switching of Pyrazine Derivative Based Donor-Acceptor-Donor Luminophores
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Multistimuli-Responsive Luminescence Switching of Pyrazine Derivative Based Donor-Acceptor-Donor Luminophores

机译:基于吡嗪衍生物的供体-受体-供体发光体的多刺激响应发光转换。

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Three symmetrical donor-acceptor-donor (D-A-D) luminophores (C1, C2, and C3) with pyrazine derivatives as electron-withdrawing groups have been developed for multistimuli-responsive luminescence switching. For comparison, reference compounds R1 and R2 without the pyrazine moiety have also been synthesized. Intramolecular charge transfer (ICT) interactions can be found for all D-A-D luminophores owing to the electron-withdrawing properties of the two imine nitrogen atoms in the pyrazine ring and the electron-donating properties of the other two amine nitrogen atoms in the two triphenylamine units. Moreover, luminophores C1, C2, and C3 exhibit on-off-on luminescence switching properties in mixtures of water/tetrahydrofuran with increasing water content, which is different from the on-off switching for typical aggregation-caused quenching (ACQ) materials and off-on switching for traditional aggregation-induced emission (AIE) materials. Additionally, upon grinding the pristine samples, luminophores C1, C2, and C3 display bathochromically shifted photoluminescence maxima that can be recovered by either solvent fuming or thermal annealing treatments. The piezofluorochromic (PFC) properties are more pronounced than those for reference compounds R1 and R2, which indicates that D-A molecules have the ability to amplify the PFC effect by tuning the ICT interactions upon tiny structural changes under pressure. Furthermore, the target luminophores demonstrate acid-responsive photoluminescence spectra that can be recovered in either basic or ambient environments. These results suggest that D-A complexes are potential candidates for multistimuli-responsive luminescence switching because their ICT profiles can be facilely tuned with tiny external stimuli.
机译:已经开发了具有吡嗪衍生物作为吸电子基团的三个对称的供体-受体-供体(D-A-D)发光体(C1,C2和C3),用于多刺激响应的发光转换。为了比较,还合成了没有吡嗪部分的参考化合物R1和R2。由于吡嗪环中两个亚胺氮原子的吸电子特性和两个三苯胺单元中其他两个胺氮原子的给电子性,可以发现所有D-A-D发光体的分子内电荷转移(ICT)相互作用。此外,发光体C1,C2和C3在水/四氢呋喃的混合物中随着水含量的增加而显示出开-关发光转换特性,这不同于典型的聚集引起的淬灭(ACQ)材料的开-关转换和关断。 -切换传统的聚集诱导发射(AIE)材料。此外,在研磨原始样品后,发光体C1,C2和C3会显示出红移的光致发光最大值,可以通过溶剂发烟或热退火处理来恢复。压电氟致变色(PFC)特性比参考化合物R1和R2更为明显,这表明D-A分子具有通过在压力下微小的结构变化时调整ICT相互作用来放大PFC效应的能力。此外,目标发光体显示出可以在碱性或周围环境中恢复的酸响应性光致发光光谱。这些结果表明,D-A复合物是多刺激响应发光转换的潜在候选者,因为它们的ICT分布图可以通过微小的外部刺激轻松调节。

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