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首页> 外文期刊>Journal of magnetic resonance >Correlating nuclear frequencies by two-dimensional ELDOR-detected NMR spectroscopy
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Correlating nuclear frequencies by two-dimensional ELDOR-detected NMR spectroscopy

机译:通过二维ELDOR检测的NMR光谱对核频率进行关联

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ELDOR (Electron Double Resonance)-detected NMR (EDNMR) is a pulse EPR experiment that is used to measure the transition frequencies of nuclear spins coupled to electron spins. These frequencies are further used to determine hyperfine and quadrupolar couplings, which are signatures of the electronic and spatial structures of paramagnetic centers. In recent years, EDNMR has been shown to be particularly useful at high fields/high frequencies, such as W-band (~95 GHz, ~3.5 T), for low c quadrupolar nuclei. Although at high fields the nuclear Larmor frequencies are usually well resolved, the limited resolution of EDNMR still remains a major concern. In this work we introduce a two dimensional, triple resonance, correlation experiment based on the EDNMR pulse sequence, which we term 2D-EDNMR. This experiment allows circumventing the resolution limitation by spreading the signals in two dimensions and the observed correlations help in the assignment of the signals. First we demonstrate the utility of the 2D-EDNMR experiment on a nitroxide spin label, where we observe correlations between ~(14)N nuclear frequencies. Negative cross-peaks appear between lines belonging to different M_S electron spin manifolds. We resolved two independent correlation patterns for nuclear frequencies arising from the EPR transitions corresponding to the ~(14)N m_I = 0 and m_I = -1 nuclear spin states, which severely overlap in the one dimensional EDNMR spectrum. The observed correlations could be accounted for by considering changes in the populations of energy levels that S = 1/2, I = 1 spin systems undergo during the pulse sequence. In addition to these negative cross-peaks, positive cross-peaks appear as well. We present a theoretical model based on the Liouville equation and use it to calculate the time evolution of populations of the various energy levels during the 2D-EDNMR experiment and generated simulated 2D-EDMR spectra. These calculations show that the positive cross-peaks appear due to off resonance effects and/or nuclear relaxation effects. These results suggest that the 2DEDNMR experiment can be also useful for relaxation pathway studies. Finally we present preliminary results demonstrating that 2D-EDNMR can resolve overlapping ~(33)S and ~(14)N signals of type 1 Cu(II) center in ~(33)S enriched Azurin.
机译:ELDOR(电子双共振)检测NMR(EDNMR)是脉冲EPR实验,用于测量耦合到电子自旋的核自旋的跃迁频率。这些频率还用于确定超精细和四极耦合,这是顺磁中心的电子和空间结构的特征。近年来,对于低c四极核,EDNMR已显示在高场/高频率(例如W波段(〜95 GHz,〜3.5 T))中特别有用。尽管在高磁场下通常可以很好地分辨拉莫尔核的频率,但EDNMR的有限分辨率仍然是一个主要问题。在这项工作中,我们介绍了基于EDNMR脉冲序列的二维三重共振相关实验,我们将其称为2D-EDNMR。该实验允许通过在二维中扩展信号来规避分辨率限制,并且观察到的相关性有助于信号的分配。首先,我们证明了2D-EDNMR实验在氮氧化物自旋标记上的效用,其中我们观察到〜(14)N核频率之间的相关性。属于不同M_S电子自旋流形的线之间出现负的交叉峰。我们解析了由对应于〜(14)N m_I = 0和m_I = -1核自旋态的EPR跃迁产生的两个独立的核频率相关模式,它们在一维EDNMR光谱中严重重叠。可以通过考虑在脉冲序列期间S = 1/2,I = 1自旋系统经历的能级总体变化来解释观察到的相关性。除了这些负的交叉峰外,还会出现正的交叉峰。我们提出基于Liouville方程的理论模型,并用它来计算2D-EDNMR实验期间各种能级的人口的时间演化,并生成模拟的2D-EDMR光谱。这些计算表明,由于非共振效应和/或核弛豫效应,出现了正的交叉峰。这些结果表明2DEDNMR实验也可用于松弛途径研究。最后,我们提供了初步结果,表明2D-EDNMR可以解析富含(33)S的天青素中1型Cu(II)中心的〜(33)S和〜(14)N重叠信号。

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