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首页> 外文期刊>Physical chemistry chemical physics: PCCP >How paramagnetic and diamagnetic LMOCs detect picric acid from surface water and the intracellular environment: a combined experimental and DFT-D3 study
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How paramagnetic and diamagnetic LMOCs detect picric acid from surface water and the intracellular environment: a combined experimental and DFT-D3 study

机译:顺磁性和反磁性LMOC如何从地表水和细胞内环境中检测苦味酸:结合实验和DFT-D3研究

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摘要

Diamagnetic and Paramagnetic Luminescent Metal Organic Complexes (LMOCs) have been reported for Explosive and Pollutant Nitro Aromatic (epNAC) recognition. The diamagnetic complex shows a highly intense AIE induced by NEt3H+, which disappears after picric acid recognition and subsequently RET will quench the emission intensity. Radical stabilized paramagnetic LMOCs seem to be active but show lower sensing efficiency in comparison with diamagnetic LMOCs. Solution and solid state spectroscopy studies along with DFT-D3 have been executed to enlighten the host guest interaction. Limit of PA detection is similar to 250 ppb with a binding constant of 1.2 x 10(5) M-1. Time-stepping, i.e. intervening in the problem of picric acid recognition from surface water collected from several places of West Bengal, India, has been performed. Mutagenic picric acid has been successfully detected in an aqueous medium inside both prokaryotic and eukaryotic cells at a ppm level using fluorescence microscopy.
机译:据报道,反磁性和顺磁性发光金属有机配合物(LMOC)可用于爆炸性和污染性硝基芳香(epNAC)识别。抗磁性复合物显示出由NEt3H +诱导的高强度AIE,在苦味酸识别后消失,随后RET将淬灭发射强度。自由基稳定的顺磁性LMOC似乎很活跃,但与抗磁性LMOC相比,其感应效率较低。解决方案和固态光谱学研究与DFT-D3一起进行,以启发宿主来宾相互作用。 PA检测的极限类似​​于250 ppb,结合常数为1.2 x 10(5)M-1。已经进行了时间步进,即干预了从印度西孟加拉邦几个地方收集的地表水中识别苦味酸的问题。使用荧光显微镜已成功地在ppm级原核细胞和真核细胞内部的水介质中成功检测到了诱变苦味酸。

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