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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Ion-Unquenchable and Thermally 'On Off' Reversible Room Temperature Phosphorescence of 3-Bromoquinoline Induced by Supramolecular Gels
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Ion-Unquenchable and Thermally 'On Off' Reversible Room Temperature Phosphorescence of 3-Bromoquinoline Induced by Supramolecular Gels

机译:超分子凝胶诱导的3-溴喹啉的离子不可淬灭和热“开-关”可逆室温磷光

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摘要

Ion-unquenchable and thermally on-off reversible room temperature phosphorescence (RTP) can be induced by entrapping 3-bromoquinoline (3-BrQ) into supramolecular gels formed by the self-assembly of a sorbitol derivative (DBS). In comparison with conventional substrates inducing RTP, the gel state 3-BrQ/DBS can produce strong RTP due to the efficient restriction of the vibration of 3-BrQ. Notably, the rather inconvenient deoxygenation is no longer necessary in the preparation of 3-BrQ/DBS gels. The produced RTP was found to be very fast to reach stable, not depending on the standing time. As a reference, in the liquid state of 3-BrQ/sodium deoxycholate (NaDC), stable RTP can be observed after standing for 5 h. The investigation of RTP quenching indicates that the mechanism of RTP induced by DBS gels mainly involves the microenvironment in which 3-BrQ is located. 3-BrQ was entrapped in the hydrophobic 3D network structure of DBS gels, thereby restricting the motion and collision of 3-BrQ and avoiding RTP quenching and additionally quenching by ions. Furthermore, the RTP of 3-BrQ/DBS gels show an excellent on-off effect at 10 or 80 degrees C. This indicates that the solid DBS gel is beneficial for the preparation of RTP sensor devices.
机译:通过将3-溴喹啉(3-BrQ)截留在由山梨糖醇衍生物(DBS)自组装形成的超分子凝胶中,可以诱导离子不可淬灭和热开关可逆的室温磷光(RTP)。与诱导RTP的常规底物相比,由于3-BrQ振动的有效限制,凝胶态3-BrQ / DBS可以产生强RTP。显然,在制备3-BrQ / DBS凝胶中不再需要相当不方便的脱氧。发现所生产的RTP可以很快达到稳定状态,而不依赖于站立时间。作为参考,在液态3-BrQ /脱氧胆酸钠(NaDC)中,静置5小时后可以观察到稳定的RTP。对RTP猝灭的研究表明,DBS凝胶诱导RTP的机制主要涉及3-BrQ所在的微环境。 3-BrQ被困在DBS凝胶的疏水3D网络结构中,从而限制了3-BrQ的运动和碰撞,避免了RTP猝灭和离子猝灭。此外,3-BrQ / DBS凝胶的RTP在10或80摄氏度下显示出出色的开关效果。这表明固体DBS凝胶对RTP传感器设备的制备非常有益。

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