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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Amphiphilic gemini-iridium (III) complex for rapid and selective detection of picric acid in water and intracellular
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Amphiphilic gemini-iridium (III) complex for rapid and selective detection of picric acid in water and intracellular

机译:Amphiphilic Gemini-Iridium(III)复合物,用于快速和选择性地检测水和细胞内的麦克酸

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摘要

Inspired by the structure and properties of gemini surfactant, a novel amphiphilic gemini-iridium complex (GIC-Ir) has been developed, which can spontaneously form vesicles by self-assembly and exhibit excellent dispersibility and high emission intensity in water. The emission of GIC-Ir can be rapidly and selectively quenched by picric acid (PA) due to the aromatic groups and two long-chain quaternary ammonium (QA) groups with positive charge, which endow GIC-Ir vesicles outstanding capability to capture negatively charged PA, and greatly promote the interaction between GIC-Ir and PA. Theoretical calculations and spectral studied indicated that the photoinduced electron transfer and resonance energy transfer may be responsible to the emission quenching. Furthermore, the real water samples and in vitro studies further prove that GIC-Ir can be used as a promising chemosensor for the detection of PA both in water and intracellular.
机译:由Gemini表面活性剂的结构和性质的启发,已经开发了一种新型两亲的双子铱 - 铱络合物(GIC-IR),其可以通过自组装自发地形成囊泡,并在水中表现出优异的分散性和高发射强度。 由于芳香族基团和具有正电荷的两种长链季铵(QA)组,GIC-IR的发射可以通过野酸(PA)快速且选择性地淬灭,其中具有正电荷的两种长链季铵(QA)组,其赋予GIC-IR囊泡的出色能力捕获带负电荷 PA,大大推广了GIC-IR和PA之间的相互作用。 理论计算和光谱研究表明,光导电子传递和共振能量转移可能对排放淬火负责。 此外,实水样和体外研究进一步证明GIC-IR可以用作有希望的化学传感器,用于检测水和细胞内的PA。

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