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SIFTER(单频重聚焦技术)的分子间贡献、过滤效应和信号组成

Intermolecular contributions, filtration effects and signal composition of SIFTER (single-frequency technique for refocusing).

作者信息

Vanas Agathe, Soetbeer Janne, Breitgoff Frauke Diana, Hintz Henrik, Sajid Muhammad, Polyhach Yevhen, Godt Adelheid, Jeschke Gunnar, Yulikov Maxim, Klose Daniel

机构信息

Laboratory of Physical Chemistry, ETH Zürich, Vladimir-Prelog-Weg 2, 8093 Zurich, Switzerland.

Department of Chemistry, Bielefeld University, Universitätsstrasse 25, 33615 Bielefeld, Germany.

出版信息

Magn Reson (Gott). 2023 Jan 12;4(1):1-18. doi: 10.5194/mr-4-1-2023. eCollection 2023.

Abstract

To characterize structure and molecular order in the nanometre range, distances between electron spins and their distributions can be measured via dipolar spin-spin interactions by different pulsed electron paramagnetic resonance experiments. Here, for the single-frequency technique for refocusing dipolar couplings (SIFTER), the buildup of dipolar modulation signal and intermolecular contributions is analysed for a uniform random distribution of monoradicals and biradicals in frozen glassy solvent by using the product operator formalism for electron spin . A dipolar oscillation artefact appearing at both ends of the SIFTER time trace is predicted, which originates from the weak coherence transfer between biradicals. The relative intensity of this artefact is predicted to be temperature independent but to increase with the spin concentration in the sample. Different compositions of the intermolecular background are predicted in the case of biradicals and in the case of monoradicals. Our theoretical account suggests that the appropriate procedure of extracting the intramolecular dipolar contribution (form factor) requires fitting and subtracting the unmodulated part, followed by division by an intermolecular background function that is different in shape. This scheme differs from the previously used heuristic background division approach. We compare our theoretical derivations to experimental SIFTER traces for nitroxide and trityl monoradicals and biradicals. Our analysis demonstrates a good qualitative match with the proposed theoretical description. The resulting perspectives for a quantitative analysis of SIFTER data are discussed.

摘要

为了表征纳米范围内的结构和分子有序性,可以通过不同的脉冲电子顺磁共振实验,利用偶极自旋-自旋相互作用来测量电子自旋之间的距离及其分布。在此,对于用于重新聚焦偶极耦合的单频技术(SIFTER),通过使用电子自旋的乘积算符形式,分析了冷冻玻璃态溶剂中单自由基和双自由基均匀随机分布时偶极调制信号的积累和分子间贡献。预测在SIFTER时间迹线的两端会出现一种偶极振荡伪像,它源于双自由基之间的弱相干转移。预计这种伪像的相对强度与温度无关,但会随着样品中的自旋浓度增加而增大。预测双自由基和单自由基情况下分子间背景的组成不同。我们的理论分析表明,提取分子内偶极贡献(形状因子)的适当程序需要拟合和减去未调制部分,然后除以形状不同的分子间背景函数。该方案与先前使用的启发式背景除法方法不同。我们将理论推导与氮氧化物和三苯甲基单自由基及双自由基的实验SIFTER迹线进行了比较。我们的分析表明与所提出的理论描述有良好的定性匹配。讨论了对SIFTER数据进行定量分析的结果前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/501f/10807728/4befe274b3cb/mr-4-1-f01.jpg

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