首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Twofold photoswitching of NIR fluorescence and EPR based on the PMI-N-HABI for optical nanoimaging of electrospun polymer nanowires
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Twofold photoswitching of NIR fluorescence and EPR based on the PMI-N-HABI for optical nanoimaging of electrospun polymer nanowires

机译:基于PMI-N-HABI的NIR荧光和EPR的双重光开关,用于电纺聚合物纳米线的光学纳米成像

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In this article, we report the design and synthesis of a fluorescent molecular switch based on perylenemonoimide-hexaarylbiimidazole dyad (PMI-N-HABI), which exhibits not only photoswitchable near-infrared (NIR) fluorescence but also photoswitchable electron paramagnetic resonance (EPR) resulting from photo-induced twin radicals. The emission of PMI-N-HABI varies with different polarities of solvents due to the D-pi-A molecular architecture, displaying strong NIR emission (715 nm) in methylene chloride with fluorescence quantum yield as high as 0.29. The photo-induced cleavage of the C-N bond between the two imidazole groups produces twin radicals efficiently upon UV irradiation and the colored species recovered to the initial state spontaneously by the collision of the two intramolecular TPIRs in a few seconds, with decay (or fluorescence recovery) half-life time (tau(1/2)) of 1.3 s in toluene at 297 K. The radical nature of the colored species is verified by EPR measurements. The emission of the perylenemonoimide could be reversibly quenched by the photo-induced radicals through the Forster resonance energy transfer (FRET) mechanism. The fluorescence-switching dye is applied to the optical nanoimaging of polymer nanowires prepared using the typical electrospinning method. The average diameter of about 160 nm is in accordance with the scan electron microscopic (SEM) images. Compared with the traditional SEM technique, we provide a convenient alternative to SEM with practical imaging resolution for polymer nanostructures.
机译:在本文中,我们报告了基于per单酰亚胺-六芳基联咪唑二聚体(PMI-N-HABI)的荧光分子开关的设计和合成,该开关不仅表现出可光开关的近红外(NIR)荧光,而且还表现出可光开关的电子顺磁共振(EPR)由光诱导的双自由基产生。由于D-pi-A分子的结构,PMI-N-HABI的发射随溶剂极性的不同而变化,在二氯甲烷中显示出很强的NIR发射(715 nm),荧光量子产率高达0.29。两个咪唑基团之间的CN键的光诱导裂解在紫外线照射下有效地产生了两个自由基,并且通过两个分子内TPIR的碰撞在几秒钟内将有色物质自发恢复到初始状态,并发生衰减(或荧光恢复) )在297 K下在甲苯中的半衰期(tau(1/2))为1.3 s。有色物质的自由基性质通过EPR测量得到验证。 For一元的发射可以通过Forster共振能量转移(FRET)机制被光诱导的自由基可逆地淬灭。将荧光转换染料应用于使用典型电纺丝方法制备的聚合物纳米线的光学纳米成像中。约160nm的平均直径根据扫描电子显微镜(SEM)图像。与传统的SEM技术相比,我们为SEM提供了一种方便的替代方法,具有实用的聚合物纳米结构成像分辨率。

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