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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >A New High-Spin Iron(lll) Complex with a Pentadentate Macrocyclic Amidopyridine Ligand: A Change from Slow Single-Ion Paramagnetic Relaxation to Long-Range Antiferromagnetic Order in a Hydrogen-Bonded Network
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A New High-Spin Iron(lll) Complex with a Pentadentate Macrocyclic Amidopyridine Ligand: A Change from Slow Single-Ion Paramagnetic Relaxation to Long-Range Antiferromagnetic Order in a Hydrogen-Bonded Network

机译:具有五齿大环氨基吡啶配体的新型高自旋铁(III)络合物:氢键网络中慢单离子顺磁弛豫到长距离反铁磁有序变化

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摘要

A new,stable iron(lll) complex with a pentadentate amide-containing macrocyclic ligand was prepared and fully characterized.The complex adopted a pentagonal-bipyramidal geometry,where an equatorial plane is occupied by the pyridine nitrogen,two deprotonated amide nitrogens,and two secondary amines from the macrocycle,and two axial positions are available for monodentate ligand(chloride anion or solvent molecule)coordination.The rigid,planar iron-amide building blocks are linked in a three-dimensional network via a system of hydrogen bonds,with the shortest Fe-Fe separation of 8.02 A.The coordination of strongly electron-donating,negatively charged deprotonated amide groups resulted in expected stabilization of a high oxidation state of iron(the redox potential of the Fe~(III)L/Fe~(II)couple,-0.57 V vs SCE).In contrast to the majority of the iron complexes with polydentate amide ligands,the pentagonal-bipyramidal geometry of the macrocyclic complex described in this work affords a high-spin configuration of the central metal ion (room-temperature magnetic moment is 5.84 mu_beta).Variable-temperature iron-57 Mossbauer spectroscopy and ac and dc magnetization studies indicate slow paramagnetic relaxation and a crossover to long-range antiferromagnetic order at T
机译:制备并充分表征了具有五齿含酰胺大环配体的新型,稳定的铁(III)配合物。该配合物采用五角-双锥体几何结构,其中赤道平面被吡啶氮,两个去质子化的酰胺氮和两个占据大环中的仲胺和两个轴向位置可用于单齿配体(氯阴离子或溶剂分子)配位。刚性的平面铁酰胺结构单元通过氢键系统在三维网络中相互连接, Fe-Fe的最短分离为8.02 A.强供电子,带负电荷的去质子化酰胺基团的配位导致铁的高氧化态的预期稳定化(Fe〜(III)L / Fe〜(II ),-0.57 V vs SCE)。与大多数具有多齿酰胺配体的铁配合物相比,本文描述的大环配合物的五角-双锥体几何结构具有较高的-中心金属离子的自旋构型(室温磁矩为5.84 mu_beta)。可变温度铁57 Mossbauer光谱学和交直流磁化研究表明,顺磁弛豫缓慢,并且在T <约3.2时与长距离反铁磁阶交叉K.

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