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Polymorph selectivity of an AIE luminogen under nano-confinement to visualize polymer microstructures

机译:纳米限制下AIE光素的多晶型选择性,以可视化聚合物微结构

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Despite the huge progress of luminescent molecular assemblies over the past decade, it is still challenging to understand their confined behavior in semi-crystalline polymers for constrained space recognition. Here, we report a polymorphic luminogen with aggregation-induced emission (AIE), capable of selective growth in polymer amorphous and crystalline phases with distinct color. The polymorphic behaviors of the AIE luminogen embedded within the polymer network are dependent on the size of nano-confinement: a thermodynamically stable polymorph of the AIE luminogen with green emission is stabilized in the amorphous phase, while a metastable polymorph with yellow emission is confined in the crystalline phase. The information on polymer crystalline and amorphous phases is transformed into distinct fluorescence colors, allowing a single AIE luminogen as a fluorescent marker for visualization of polymer microstructures in terms of amorphous and crystalline phase distribution, quantitative polymer crystallinity measurement, and spatial morphological arrangement. Our findings demonstrate that confinement of the AIE luminogen in the polymer network can achieve free space recognition and also provide a correlation between microscopic morphologies and macroscopic optical signals. We envision that our strategy will inspire the development of other materials with spatial confinement to incorporate AIE luminogens for various applications.
机译:尽管在过去十年中发光分子组件的巨大进展,但了解其在半晶聚合物中的限制空间识别中的狭窄行为仍然具有挑战性。这里,我们报告了具有聚集诱导的发射(AIE)的多晶型发光剂,能够在聚合物无定形和结晶相中选择性生长,具有不同的颜色。嵌入在聚合物网络内的AIE温荧油的多态性行为取决于纳米限制的尺寸:在无定形相中稳定具有绿色发射的AIE光氨酸的热力学稳定的多晶晶族节,而具有黄色发射的亚稳态多晶型物被限制在内结晶相。将聚合物结晶和无定形相的信息转化为不同的荧光颜色,允许单个AIE光荧光剂作为荧光标记物,以便在无定形和结晶相分布,定量聚合物结晶度测量和空间形态学方面以聚合物微结构的可视化。我们的研究结果表明,聚合物网络中的AIE光引发能量可以实现自由空间识别,并且还提供显微镜形态和宏观光学信号之间的相关性。我们设想,我们的战略将激发其他材料的发展,其空间限制掺入各种应用的Aie发光转剂。

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