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单组分和多组分连续波电子自旋共振谱的模拟无关分析

A Simulation Independent Analysis of Single- and Multi-Component cw ESR Spectra.

作者信息

Roy Aritro Sinha, Dzikovski Boris, Dolui Dependu, Makhlynets Olga, Dutta Arnab, Srivastava Madhur

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY 14853, USA.

National Biomedical Resource for Advanced ESR Spectroscopy, Cornell University, Ithaca, NY 14853, USA.

出版信息

Magnetochemistry. 2023 May;9(5). doi: 10.3390/magnetochemistry9050112. Epub 2023 Apr 23.

Abstract

The accurate analysis of continuous-wave electron spin resonance (cw ESR) spectra of biological or organic free-radicals and paramagnetic metal complexes is key to understanding their structure-function relationships and electrochemical properties. The current methods of analysis based on simulations often fail to extract the spectral information accurately. In addition, such analyses are highly sensitive to spectral resolution and artifacts, users' defined input parameters and spectral complexity. We introduce a simulation-independent spectral analysis approach that enables broader application of ESR. We use a wavelet packet transform-based method for extracting g values and hyperfine (A) constants directly from cw ESR spectra. We show that our method overcomes the challenges associated with simulation-based methods for analyzing poorly/partially resolved and unresolved spectra, which is common in most cases. The accuracy and consistency of the method are demonstrated on a series of experimental spectra of organic radicals and copper-nitrogen complexes. We showed that for a two-component system, the method identifies their individual spectral features even at a relative concentration of 5% for the minor component.

摘要

对生物或有机自由基以及顺磁性金属配合物的连续波电子自旋共振(cw ESR)光谱进行准确分析,是理解其结构 - 功能关系和电化学性质的关键。当前基于模拟的分析方法常常无法准确提取光谱信息。此外,此类分析对光谱分辨率和伪影、用户定义的输入参数以及光谱复杂性高度敏感。我们引入了一种独立于模拟的光谱分析方法,该方法能够更广泛地应用电子自旋共振技术。我们使用基于小波包变换的方法直接从连续波电子自旋共振光谱中提取g值和超精细(A)常数。我们表明,我们的方法克服了与基于模拟的方法相关的挑战,这些挑战在分析分辨率差/部分解析和未解析的光谱时会出现,而这在大多数情况下是常见的。该方法的准确性和一致性在一系列有机自由基和铜 - 氮配合物的实验光谱上得到了证明。我们表明,对于双组分系统,即使次要组分的相对浓度为5%,该方法也能识别出它们各自的光谱特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b621/10357894/3ef3e1330313/nihms-1902379-f0010.jpg

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