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Crystals in Which Some Metal Atoms are More Equal Than Others: Inequalities From Crystal Packing and Their Spectroscopic/Magnetic Consequences

机译:某些金属原子比其他金属原子更均等的晶体:晶体堆积及其光谱/磁性后果中的不等式

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摘要

Crystal structures of the heterometallic compounds CrCrFe(dpa)_4Cl_2 (1), CrCrMn(dpa)_4Cl_2 (2), and MoMoMn(dpa)_4Cl_2 (3) (dpa = 2,2'-dipyridylamide) show disorder in the metal atom positions such that the linear M_A≡M_A…M_b array for a given molecule in the crystal is oriented in one of two opposing directions. Despite the fact that the direct coordination sphere of the metals in the two crystallographically independent orientations is identical, subtle differences in some metal-ligand bond distances are observed in 1 and 3 due to differences in the orientation of a solvent molecule of crystallization. The Fe(Ⅱ) and Mn(Ⅱ) ions serve as sensitive local spectroscopic probes that have been interrogated by Mossbauer spectroscopy and high-field EPR spectroscopy, respectively. The subtle differences in the two independent Fe and Mn sites in 1 and 3 unexpectedly give rise to unusually large differences in the measured Fe quadrupole splitting (△E_Q) in 1 and Mn zero-field splitting (D) in 3. Variable-temperature/single-crystal EPR spectroscopy has allowed us to determine that the temperature-dependent D tensors in 3 are oriented along the metal-metal axis and that they show significantly different dynamic behavior with temperature. The differences in △E_Q and D axe reproduced by density functional calculations on truncated models for 1 and 3 that lack the quadruply bonded M_A=M_A groups, though the magnitude of the calculated effect is not as large as that observed experimentally. We suggest that the large observed differences in △E_Q and D for the individual sites could be due to the influence of the strong diamagnetic anisotropy of the quadruply bonded M≡M unit.
机译:杂金属化合物CrCrFe(dpa)_4Cl_2(1),CrCrMn(dpa)_4Cl_2(2)和MoMoMn(dpa)_4Cl_2(3)(dpa = 2,2'-dipyridylamide)的晶体结构在金属原子位置显示无序这样,晶体中给定分子的线性M_A≡M_A…M_b阵列会沿两个相反方向之一取向。尽管在两个晶体学上独立的方向上金属的直接配位球是相同的,但由于结晶溶剂分子的方向不同,在1和3中观察到某些金属-配体键距的细微差别。 Fe(Ⅱ)和Mn(Ⅱ)离子是敏感的局部光谱探针,分别由Mossbauer光谱法和高场EPR光谱法进行了研究。 1和3中两个独立的Fe和Mn位点的细微差异出乎意料地导致1中测得的Fe四极分裂(△E_Q)和3中Mn零场分裂(D)的异常大差异。单晶EPR光谱学使我们能够确定3中随温度变化的D张量沿金属-金属轴取向,并且它们显示的随温度的动态行为显着不同。通过密度函数计算,在缺少四重结合的M_A = M_A组的1和3的截短模型上,通过密度泛函计算重现了△E_Q和D ax的差异,尽管所计算出的效果的大小没有实验观察到的大。我们认为,在各个位置观察到的△E_Q和D的较大差异可能是由于四重键合的M≡M单元的强抗磁各向异性的影响。

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  • 来源
    《Journal of the American Chemical Society》 |2010年第40期|p.14261-14272|共12页
  • 作者单位

    Department of Chemistry, University of Wisconsin - Madison, 1101 University Avenue,Madison, Wisconsin 53706;

    rnDepartment of Chemistry and Biochemistry, Florida State University,P.O. Box 3064390 Tallahassee, Florida 32306;

    rnMax Planck Institutfur Bioanorganische Chemie,Stiftstrasse 34-36, D-45470 Mulheim an der Ruhr, Germany;

    rnDepartment of Chemistry,University of California, Davis, One Shields Avenue, Davis, California 95616;

    rnDepartment of Chemistry and Biochemistry, Florida State University,P.O. Box 3064390 Tallahassee, Florida 32306;

    rnDepartment of Chemistry, University of Wisconsin - Madison, 1101 University Avenue,Madison, Wisconsin 53706;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:15:52

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