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首页> 外文期刊>Materials Chemistry Frontiers >Temperature-responsive molecular liquids based on dihydrophenazines for dynamic multicolor- fluorescent anti-counterfeiting and encryption
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Temperature-responsive molecular liquids based on dihydrophenazines for dynamic multicolor- fluorescent anti-counterfeiting and encryption

机译:鬼屋方面基于分子液体dihydrophenazines动态多色-荧光防伪和加密

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摘要

Solvent/dopant-free luminescent molecular liquids, as a kind of organic soft material, are very useful and attractive. Herein, the vibration-induced emission (VIE) strategy was exploited to develop the smart non-volatile luminescent materials with dynamic multicolor-fluorescence. In this approach, four dihydrophenazine-based non-volatile luminescent compounds, i.e., DPAC-n (n = 5, 10, 15, and 20), were facilely developed by covalently attaching long alkyl chains onto the typical VIE-active core, i.e., 9,14-diphenyl-9,14-dihydrodibenzo[a,c]phenazine (DPAC). The n in DPAC-n represents the alkyl chain length of these DPAC derivatives. Since the complex viscosities of the luminescent molecular liquids decrease as n increases, which was confirmed by the rheological analysis, the intramolecular motions and the fluorescence behaviors are closely correlated with the alkyl chain length. Due to the VIE effect of DPAC, these non-volatile liquid materials exhibit efficient temperature- and viscosity-sensitive dynamic multicolor emission. These luminophores predominantly emit blue fluorescence (FL) at low temperature (e.g. 20 1C) with high complex viscosity but chiefly orange-red FL at high temperature (85 1C) with low complex viscosity, exhibiting a gradual multicolored fluorescence response to temperature change. The influence of alkyl chain length on the viscosity-dependent luminescent behavior was also systematically investigated and discussed. Because of its lowest complex viscosity, DPAC-20 with the longest alkyl chain shows the most significant temperature-sensing capability. Taking advantage of the above-mentioned unique properties, we have realized the application of solvent/ dopant-free luminescent liquids as temperature-sensitive high-performance non-doped fluorescent inks for multicolor printing, advanced encryption and dynamic anti-counterfeiting. Our findings not only expand the application scope of VIE molecules, but also provide powerful materials for information encryption and anti-counterfeiting.
机译:溶剂/ dopant-free发光分子液体,作为一种有机软材料,非常有用的和有吸引力的。vibration-induced排放(VIE)策略利用开发智能非易失性发光材料与动态multicolor-fluorescence。dihydrophenazine-based非易失性发光化合物,即DPAC-n (n = 5、10、15和20),轻易地由共价连接吗典型VIE-active烷基长链上核心,即(DPAC)。链长这些DPAC衍生品。复杂的发光分子的粘度液体减少随着n的增加,这是流变分析,证实了分子内运动和荧光行为与烷基密切相关链的长度。这些非易失性液体材料展览有效温度和viscosity-sensitive动态多色发射。主要发出蓝色荧光(FL)低高的温度(例如20 1 c)复杂粘度但主要是橙红色的房子高较低的温度(85 1 c)复杂的粘度,展示一个渐进多色荧光对温度变化的反应。viscosity-dependent烷基链长还系统地发光行为研究和讨论。复杂的粘度,DPAC-20最长的烷基链显示最重要的温度传感功能。上述独特的属性,我们有意识到溶剂/ dopant-free的应用发光的液体作为热敏高性能non-doped荧光油墨多色印刷、先进的加密和动态的防伪。只有扩大应用范围的竞争分子,还提供了强大的材料信息加密和防伪。

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