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A Brief Review on Fluorescent Copper Sensor Based on Conjugated Organic Dyes

机译:基于共轭有机染料的荧光铜传感器简论

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The design and development of the fluorescence reporting molecules for the trace recognition of the metallic ions in the aqueous, mixed organic aqueous media, environmental specimen, living things e.g., body fluids, serum, urine etc is the evergreen research area. Among several methodologies utilized for these purposes, the fluorescent techniques have wonderful impact in the era of metal sensor development due to their acclamatory features of non-invasive detection process and appreciable sensitivity. The utilization of small organic molecules for the sensation of metallic ions through the fluorescent techniques harvested the wonderful results having some interesting features of chromogenic response on metal binding, robustness in the preparation and applicability to establish the metallic accumulation level inside the live cells via bioimaging studies. The detailed knowledge and background about the several reported chemosening strategies have the utmost importance in order to understand or to design the novel molecules for metal sensing purposes. The objective of the presents review was to compile the best ever used copper sensing strategies via fluorescent means in the running decade. We have summarized the values of optical positions of the spectral lines, spectral shifting upon metal binding, binding/association/dissociation constants, chromogenic changes in the reaction mixture, proposed complexation mechanism of the ligand with the copper, ligand sensitivities toward the copper recognition, binding stoichiometries and the detailed bioimaging results where applicable.
机译:荧光报告分子的设计和开发用于追踪水,混合有机含水介质,环境标本,生物,例如体液,血清,尿液等的金属离子中的金属离子是常绿研究区域。在用于这些目的的几种方法中,由于其呼叫非侵入性检测过程和可观的灵敏度,荧光技术在金属传感器开发时代具有很大的影响。利用小有机分子通过荧光技术感测金属离子的感觉收获了具有关于金属结合,制备中的鲁棒性的发色响应的一些有趣特征的精彩作用,并通过生物分析研究在活细胞内建立金属积聚水平的鲁棒性。关于若干报告的化学化策略的详细知识和背景是最重要的,以便理解或设计用于金属传感目的的新型分子。提出审查的目标是通过在跑步十年内通过荧光手段编制最好的铜传感策略。我们已经总结了光谱线光学位置的值,金属结合,结合/关联/解离常数,反应混合物中的发色变化,配体与铜,配体敏感性致铜识别的络合机理,适用的结合性化学素和详细的生物成像结果。

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