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Rational Design of a New AIE-Coupled ESIPT-Based Multichromic State Depended Organo-luminophore With Turnon Emissive Response to Zn(II)in Aqueous and Solidstate

机译:新的AIE耦合ESIPT多核状态的合理设计依赖有机液体液压,其在水和固晶中对Zn(II)的发射反应

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摘要

A newly designed multifunctional AIE-coupled excited-state intramolecular proton transfer(ESIPT)-active asymmetric multichromicfluorophor(MCF)has been synthesized and characterized.From tedious experimental spectroscopic dissection of the photophysical properties of MCF and two supporting compounds,(3-benzotriazol-2-yl-2-hydroxy-5-methyl-benzaldehyde)(R1)and(2-benzotriazol-2-yl-4-methyl-phenol)(R2)with theoretical discussion,it has been established that ESIPT was driven exclusively towards triazole N centre involving a 6-member Hbonded network over imine-N center in both solid state and solution phase.The competition of aggregation enhanced emissive feature and ACQ(aggregation caused quenching)nature of MCF were also studied thoroughly in the THF/water mixture.New classes of mechanisms are introduced regarding AIE/ACQ phenomenon,which will eradicate the limitation of designing and development of novel solid state emitters.To the best of our knowledge,this unique feature has never been achieved before.Furthermore,reversible mechanochromic fluorescence behavior upon external grinding and acidochromism nature of MCF as acid-base switch has also been observed.In addition,MCF selectively senses Zn2+ ion through a colorimetric and fluorescence"turn-on"route.The actual binding site of Zn2+ with MCF has also been established with the help of spectroscopic studies.The present study will enlighten for a new way to achieve new multifunctional organic luminescent solids.
机译:已合成和表征了一种新设计的多功能AIE偶联激发态抗分子质子质子转移(ESIPT)活性不对称的多粒子多氟酚(MCF)。 2-yl-2-羟基-5-甲基苯甲醛)(R1)和(2-苯并二唑-2-基-2-基-4-甲醇)(R2)(R2)进行了理论讨论,已经确定ESIPT仅驱动ESIPT专门朝向朝向在固态和溶液阶段,涉及imine-N中心上的6个成员的HBOND网络的三唑N中心。在THF/Water混合物中还彻底研究了聚集增强的发射特征和ACQ(聚集引起的MCF)性质的竞争(聚集引起的)性质引入了有关AIE/ACQ现象的新机制,这将消除新型固态发射器的设计和开发的局限性。对于我们所知,这一独特的功能从未有过还观察到了在外部研磨和MCF作为酸碱开关的外部研磨和酸化性质时的可逆机械色变色荧光行为的实现。加上MCF,MCF通过比色和荧光选择性地感觉到Zn2+离子。 Zn2+与MCF的部位也在光谱研究的帮助下建立了。本研究将启发一种新的方法,以实现新的多功能有机发光固体。

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