Hagen Wilfred R
Department of Biotechnology , Delft University of Technology , Van der Maasweg 9 , 2629HZ Delft , The Netherlands.
J Phys Chem A. 2019 Aug 15;123(32):6986-6995. doi: 10.1021/acs.jpca.9b03574. Epub 2019 Aug 1.
Analysis of the electron paramagnetic resonance (EPR) of transition ion complexes requires data taken at different microwave frequencies because the spin Hamiltonian contains operators linear in the frequency as well as operators independent of the frequency. In practice, data collection is hampered by the fact that conventional EPR spectrometers have always been designed to operate at a single frequency. Here, a broadband instrument is described and tested that operates from 0.5 to 12 GHz and whose sensitivity approaches that of single-frequency spectrometers. Multifrequency EPR from triclinic substitutional (0.5%) Cu(II) in ZnSO is globally analyzed to illustrate a novel approach to reliable determination of the molecular electronic structure of transition ion complexes from field-frequency 2D data sets.
对过渡离子配合物的电子顺磁共振(EPR)进行分析需要在不同微波频率下采集数据,因为自旋哈密顿量既包含与频率呈线性关系的算符,也包含与频率无关的算符。在实际操作中,传统的EPR光谱仪一直被设计为在单一频率下运行,这一事实阻碍了数据的收集。在此,我们描述并测试了一种宽带仪器,其工作频率范围为0.5至12 GHz,灵敏度接近单频光谱仪。对硫酸锌中三斜晶系替代型(0.5%)铜(II)的多频EPR进行了全局分析,以说明一种从场频二维数据集可靠测定过渡离子配合物分子电子结构的新方法。