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首页> 外文期刊>Materials Chemistry Frontiers >Well-defined organic fluorescent nanomaterials with AIE characteristics for colorimetric/UV-vis/ fluorescent multi-channel recognition of Zn~(2+) with multiple applications in plant cells and zebrafish
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Well-defined organic fluorescent nanomaterials with AIE characteristics for colorimetric/UV-vis/ fluorescent multi-channel recognition of Zn~(2+) with multiple applications in plant cells and zebrafish

机译:定义良好的有机荧光纳米材料比色/紫外/ AIE特色锌的荧光多渠道识别~ (2 +)在植物细胞和与多个应用程序斑马鱼

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摘要

Small molecular organic fluorescent materials have attracted extensive attention and have many applications owing to their excellent properties. However, the practical applications of many organic fluorescent materials are significantly limited by their complex synthesis and post-processing methods and single functions. In this paper, a small molecular organic fluorescent material (NC) based on coumarin derivatives linked by a Schiff base is designed using simple synthesis and post-processing methods. NC shows excellent aggregation induced luminescence enhancement (AIE) properties in mixed solution systems (V_(HEPES) : V_(EtOH)) with different water fractions (f_w) of 0%-40% and displays good advantages in terms of the colorimetric/UV-vis/fluorescent multi-mode recognition of Zn~(2+) for use as a probe with high specificity and selectivity, good time stability and low detection limit (DOL = 0.026 mM, R~2 = 0.9909) in an aqueous solution. NC solid powder also shows a yellow-green fluorescence and can also be used to recognize ground solid zinc chloride powder (ZnCl2). NC can be combined with a paper strip and polymer film (polyurethane) to detect Zn~(2+) through a color change. Interestingly, NC exhibits a superior fluorescence effect in the inner epidermis of onion scales under a fluorescence microscope. Importantly, NC has a lower hemolytic effect (<0.3%) and has been successfully used in vivo in zebrafish embryos and zebrafish for exogenous Zn~(2+) fluorescence detection and imaging. The simple structure and versatility of NC provides a convenient approach for the development of multifunctional materials and the expansion of their wider application fields.
机译:小分子有机荧光材料吸引了广泛的关注,有很多应用程序由于其优良性能。然而,许多的实际应用有机荧光材料是显著的复杂的合成和限制后处理方法和单一的功能。这篇文章中,一个小分子有机荧光基于香豆素衍生物材料(NC)席夫碱是使用简单的设计合成和后处理方法。优秀的聚集诱导发光增强(AIE)属性混合解决方案系统(V_(玫瑰):V_ (EtOH))与不同0% - -40%的水分数(f_w)并显示良好优势的比色/紫外/荧光多模识别锌~(2 +)作为探针高特异性和选择性,美好的时光稳定和较低的检出限(痛单位= 0.026毫米,R ~ 2 = 0.9909)在水溶液中。固体粉末也显示了黄绿色荧光,也可以用来辨认地面固体氯化锌粉(优化选取)。结合纸带和聚合物薄膜(聚氨酯)检测锌~(2 +)通过一个颜色改变。荧光效应的内表皮荧光显微镜下洋葱鳞片。重要的是,数控溶血效应较低(< 0.3%),已成功地应用于体内斑马鱼胚胎和外源性的斑马鱼锌~(2 +)荧光探测和成像。简单的数控提供了一个结构和多功能性方便的方法的发展多功能材料和扩张他们广泛的应用领域。

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