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A novel approach to study the structure-property relationships and applications in living systems of modular Cu2+ fluorescent probes

机译:研究模块化Cu2 +荧光探针在生命系统中的结构-特性关系及其应用的新方法

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摘要

A series of Cu2+ probe which contains 9 probes have been synthesized and established. All the probes were synthesized using Rhodamine B as the fluorophore, conjugated to various differently substituted cinnamyl aldehyde with C=N Schiff base structural motif as their core moiety. The structure-property relationships of these probes have been investigated. The change of optical properties, caused by different electronic effect and steric effect of the recognition group, has been analyzed systematically. DFT calculation simulation of the Ring-Close and Ring-Open form of all the probes have been employed to illuminate, summarize and confirm these correlations between optical properties and molecular structures. In addition, biological experiment demonstrated that all the probes have a high potential for both sensitive and selective detection, mapping of adsorbed Cu2+ both in vivo and environmental microbial systems. This approach provides a significant strategy for studying structure-property relationships and guiding the synthesis of probes with various optical properties.
机译:合成并建立了包含9个探针的一系列Cu 2 + 探针。所有探针均以若丹明B为荧光团合成,与以C = N Schiff碱基结构基序为核心部分的各种不同取代的肉桂醛缀合。已经研究了这些探针的结构-性质关系。系统分析了由识别基团的不同电子效应和空间效应引起的光学性质的变化。所有探针的“开环”和“开环”形式的DFT计算模拟已被用于照亮,总结和确认光学性质与分子结构之间的这些相关性。此外,生物学实验表明,所有探针在体内和环境微生物系统中均具有高灵敏度和选择性检测,吸附Cu 2 + 作图的潜力。该方法为研究结构-性质关系和指导具有各种光学性质的探针的合成提供了重要的策略。

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