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DMF-induced emission of an aryl-substituted pyrrole derivative: a solid thermo-responsive material to detect temperature in a specific ranget

机译:DMF诱导的芳基取代吡咯衍生物的发射:一种固体热响应材料,可检测特定范围内的温度

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摘要

The aryl-substituted pyrrole derivative, 4-(2,5-diphenyl-1H-pyrrol-1-yl)benzoic acid (TPPA), was found to have a controllable fluorescence in the solid state due to its propeller-shaped molecular design and adjustable molecular packing. Melding a carboxylic acid unit with triphenylpyrrole turned the typical aggregation-induced emission (AIE) luminogen into a luminogen that only emits intensely in a certain aggregation form—i.e., when it is crystallized from dimethyl formamide (DMF). A thermal responsive solid material was developed by exploiting this property. Its fluorescence remained almost unchanged at relatively low temperature (<70 °C) but was greatly quenched when the temperature reached ~85 °C Based on thermal analysis and microscopic investigations, this distinct quenching effect was attributed to the thermal volatilization of DMF. The DMF loss in the crystal lattice inevitably loosened the molecular packing, thus opening a non-radiative relaxation pathway to quench the fluorescence. The rapid response (less than 30 s), high selectivity (loss of fluorescence at >85 °C), good reversibility and solvent-free procedure make TPPA a thermo-responsive material for use in temperature monitoring devices.
机译:发现芳基取代的吡咯衍生物4-(2,5-二苯基-1H-吡咯-1-基)苯甲酸(TPPA)由于其螺旋桨状分子设计和在固态下具有可控制的荧光,可调分子堆积。将羧酸单元与三苯基吡咯熔融会将典型的聚集诱导发射(AIE)发光剂转变为仅以某种聚集形式(即从二甲基甲酰胺(DMF)结晶时)强烈发射的发光剂。通过利用该特性,开发出了热响应性固体材料。在相对较低的温度(<70°C)下,其荧光几乎保持不变,但当温度达到〜85°C时,其荧光被极大地淬灭。根据热分析和显微镜研究,这种独特的淬灭作用归因于DMF的热挥发。晶格中DMF的损失不可避免地使分子堆积松散,从而打开了非辐射弛豫途径来猝灭荧光。 TPPA的快速响应(少于30秒),高选择性(> 85°C时的荧光损失),良好的可逆性和无溶剂程序使TPPA成为用于温度监测设备的热响应材料。

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