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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Dual fluorescence switching of a Rhodamine 6G-naphthalimide conjugate with high contrast in the solid state
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Dual fluorescence switching of a Rhodamine 6G-naphthalimide conjugate with high contrast in the solid state

机译:用高对比度的罗丹明6g-萘硫代亚胺缀合物的双荧光切换

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摘要

Solid-state fluorescence switches have attracted tremendous attention in recent years owing to their applications in fluorescent sensors, security inks and data storage. Herein, we report a novel molecule ( 2NR ) composed of two naphthalimide moieties and a Rhodamine 6G (R6G) unit linked by a branched amidoamine spacer. 2NR exhibits excellent acid and force dual-stimuli-responsive behaviour in the solid state: (i) exposing 2NR powder to HCl vapour results in fluorescence off–on switching, because protonation of the tertiary amine by acid impedes the photoinduced electron transfer process; (ii) further treatment with grinding, the force-induced open-ring reaction of R6G and subsequent efficient fluorescence resonance energy transfer from naphthalimide to the open-ring form of R6G realizes a high-contrast fluorescent colour change. Moreover, the branched amidoamine spacer induces a twisted conformation of naphthalene moieties, which provides considerable free volume and significantly facilitates the isomerization process of R6G from spirolactam to open-ring amide. Both fluorescence switches have good reversibility. Consequently, the excellent solid-state fluorescent switching of 2NR is highly applicable for anti-counterfeiting materials.
机译:由于它们在荧光传感器,安全性墨水和数据存储中,固态荧光开关近年来引起了巨大的关注。在此,我们报告了由两种萘二烷基亚胺部分组成的新型分子(2NR)和由支化的酰胺胺间隔物连接的罗丹明6g(R6G)单元。 2NR在固态中表现出优异的酸,并且在固态中的力量双刺激响应性行为:(i)将2NR粉末暴露于HCl蒸气导致荧光脱机切换,因为酸的叔胺的质子化阻碍了光态电子转移过程; (ii)通过研磨进一步处理,R6G的力诱导的露天环反应和随后的亚萘二甲酰的萘二胺的效率荧光共振能量转移到R6G的开冠形式,实现了高对比度的荧光颜色变化。此外,支化的酰胺胺间隔物诱导萘部分的扭曲构象,其提供相当大的自由体积,并显着促进从螺酰胺到开环酰胺的R6G的异构化过程。荧光开关均具有良好的可逆性。因此,2NR的优异固态荧光切换是高度适用于防伪材料。

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  • 作者单位

    State Key Laboratory of Chemical Resource Engineering Beijing Laboratory of Biomedical Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Laboratory of Biomedical Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Laboratory of Biomedical Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Laboratory of Biomedical Materials Beijing University of Chemical Technology;

    State Key Laboratory of Chemical Resource Engineering Beijing Laboratory of Biomedical Materials Beijing University of Chemical Technology;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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