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Reversible signal regulation system of 19F NMR by redox reactions using a metal complex as a switching module.

机译:使用金属配合物作为开关模块通过氧化还原反应进行的19F NMR可逆信号调节系统。

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摘要

We present here the reversible signal regulation of (19)F NMR using the transition metal complex as a switching module. Water-soluble fluorinated dendrimers containing ferrocene were synthesized as a probe, and the signal intensities of (19)F NMR of the probes were monitored by changing the valence state of the ferrocene moiety. By oxidation of the ferrocene moiety, the relaxation of the nearby fluorine atoms was accelerated via the paramagnetic relaxation enhancement, as a result the (19)F NMR signal from the probe was significantly decreased. The reduction of the ferrocenium cation of the probe recovered the signal intensity. Finally, in combination with the difference of the fluorescence quenching ability between ferrocene and ferrocenium cation, we constructed the multimodal (19)F NMR/fluorescence probe based on the redox switching system.
机译:我们在这里介绍了使用过渡金属配合物作为开关模块的(19)F NMR可逆信号调节。合成了包含二茂铁的水溶性氟化树枝状聚合物作为探针,并通过改变二茂铁部分的价态来监测探针的(19)F NMR的信号强度。通过二茂铁部分的氧化,附近的氟原子的弛豫通过顺磁弛豫增强而加速,结果是来自探针的(19)F NMR信号显着降低。探针的二茂铁阳离子的还原恢复了信号强度。最后,结合二茂铁与二茂铁阳离子之间的荧光猝灭能力差异,我们构建了基于氧化还原转换系统的多峰(19)F NMR /荧光探针。

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