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核磁共振顺磁弛豫增强:S = 1时零场分裂菱形度控制影响的测试

NMR paramagnetic relaxation enhancement: test of the controlling influence of zfs rhombicity for S = 1.

作者信息

Miller J C, Lohr L L, Sharp R R

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, Michigan 48109, USA.

出版信息

J Magn Reson. 2001 Feb;148(2):267-76. doi: 10.1006/jmre.2000.2244.

Abstract

Prior theoretical work has predicted that the NMR paramagnetic relaxation enhancement (NMR-PRE) produced by electron spin S = 1 ions is highly sensitive to orthorhombic terms in the static zero field splitting (zfs) tensor. Zfs orthorhombicity (which implies chemical inequivalence of the three principal directions of the zfs-principal axis system and is described by the zfs E-parameter) is predicted to suppress the NMR-PRE profoundly relative to the reference cylindrical zfs-limit situation. This expectation was tested experimentally by a comparison of the zfs-limit NMR-PRE produced by Ni(II)(en)(3) (en = ethylenediamine), a trigonal complex which lacks zfs-rhombicity, with the zfs-limit NMR-PRE produced by two orthorhombic complexes, Ni(II)(en)(2)(H(2)O)(2) and Ni(II)(en)(H(2)O)(4). As predicted, the zfs-limit NMR-PRE produced by the orthorhombic complexes in the proton resonance of a dioxane probe species in the solvent was strongly suppressed (by factors of approximately 5 and 7, respectively) relative to the comparable measurement on the trigonal complex. The suppression of the NMR-PRE due to the orthorhombic zfs terms is counteracted by an applied Zeeman field, leading to a predicted rise in the NMR-PRE with increasing Zeeman field strength; this rise occurs when the Zeeman energy is comparable to the orthorhombic zfs splitting, 2E. This second prediction of theory was likewise confirmed: the expected rhombicity-induced magnetic field dependence in the NMR-PRE was observed for the orthorhombic complexes but not for the trigonal complex.

摘要

先前的理论工作预测,电子自旋S = 1离子产生的核磁共振顺磁弛豫增强(NMR-PRE)对静态零场分裂(zfs)张量中的正交项高度敏感。预测zfs正交性(这意味着zfs主轴系统的三个主方向在化学上不等价,并由zfs E参数描述)相对于参考圆柱zfs极限情况会深刻抑制NMR-PRE。通过比较由缺乏zfs菱形性的三角配合物Ni(II)(en)(3)(en = 乙二胺)产生的zfs极限NMR-PRE与由两个正交配合物Ni(II)(en)(2)(H(2)O)(2)Ni(II)(en)(H(2)O)(4)产生的zfs极限NMR-PRE,对这一预期进行了实验检验。如预测的那样,相对于对三角配合物的可比测量,溶剂中二氧六环探针物种质子共振中正交配合物产生的zfs极限NMR-PRE被强烈抑制(分别约为5倍和7倍)。由于正交zfs项导致的NMR-PRE抑制被外加的塞曼场抵消,导致预测NMR-PRE随塞曼场强度增加而升高;当塞曼能量与正交zfs分裂2E相当时,这种升高就会出现。理论的这第二个预测同样得到了证实:在正交配合物中观察到了NMR-PRE中预期的菱形性诱导磁场依赖性,但在三角配合物中未观察到。

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