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Triarylmethyl Radicals: EPR Study of 13C Hyperfine Coupling Constants

机译:三芳基甲基自由基:13C超细偶合常数的EPR研究

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摘要

Triarylmethyl (TAM) radicals are widely used in Electron Paramagnetic Resonance (EPR) spectroscopy as spin labels and in EPR imaging as spin probes for in vivo oxymetry. One of the key advantages of TAMs is extremely narrow EPR line, especially in case of deuterated analogues (~5 μT). Another advantage is their slow spin relaxation even at physiological temperatures allowing, in particular, application of pulsed dipolar EPR methods for distance measurements in biomolecules. In this paper a large series of TAM radicals and their deuterated analogues is synthesized, and corresponding spectroscopic parameters including 13C hyperfine constants are obtained for the first time. The negligible dependence of 13C hyperfine constants on solvent, as well as on structure and number of substituents at para-C atoms of aromatic rings, has been found. In addition, we have demonstrated that 13C signals at natural abundance can be employed for successful room-temperature distance measurements using Pulsed Electron Double Resonance (PELDOR or DEER).
机译:三芳基甲基(TAM)自由基广泛用作电子顺磁共振(EPR)光谱学中的自旋标记,并在EPR成像中用作体内血氧测定法的自旋探针。 TAM的主要优势之一是极窄的EPR线,尤其是在氘代类似物(〜5μT)的情况下。另一个优点是,即使在生理温度下,它们的自旋弛豫也很慢,尤其允许将脉冲偶极EPR方法应用于生物分子中的距离测量。本文合成了一系列TAM自由基及其氘代类似物,并首次获得了包括 13 C超精细常数的相应光谱参数。已经发现, 13 超精细常数对溶剂以及芳环对-C原子上取代基的结构和数量的依赖性可忽略不计。此外,我们已经证明,自然丰度的 13 C信号可用于使用脉冲电子双共振(PELDOR或DEER)成功进行室温距离测量。

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