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降低 N-烷基取代的双(亚氨基)吡啶钴配合物:不同氧化态的化合物的分子和电子结构。

Reduced N-alkyl substituted bis(imino)pyridine cobalt complexes: molecular and electronic structures for compounds varying by three oxidation states.

机构信息

Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York 14853, USA.

出版信息

Inorg Chem. 2010 Jul 5;49(13):6110-23. doi: 10.1021/ic100717w.

Abstract

The stepwise 1-3 electron reduction of the N-alkyl substituted bis(imino)pyridine cobalt dichloride complexes, ((R)APDI)CoCl(2), was studied where (R)APDI = 2,6-(RN=CMe)(2)C(5)H(3)N, R = C(6)H(11) (Cy), CHMe(2) ((i)Pr). One electron reduction with either zinc metal or NaBEt(3)H furnished the bis(imino)pyridine cobalt monochloride compounds, ((R)APDI)CoCl. X-ray diffraction on the ((iPr)APDI)CoCl derivative established a distortion from square planar geometry where the chloride ligand is lifted out of the idealized cobalt-chelate plane. Superconducting Quantum Interference Device (SQUID) magnetometry on both compounds established spin crossover behavior with an S = 1 state being predominant at room temperature. Computational studies, in combination with experimental results, establish that the triplet spin isomer arises from a high spin Co(II) center (S(Co) = 3/2) antiferromagnetically coupled to a bis(imino)pyridine chelate radical anion, PDI (S(PDI) = 1/2). At lower temperatures, the Co(II) ion undergoes a spin transition to the low spin form (S(Co) = 1/2) and antiferromagnetic coupling gives rise to the observed diamagnetic ground state. Replacing the chloride ligand with a methyl group, namely ((R)APDI)CoCH(3), also yielded distorted compounds, albeit less pronounced, that are diamagnetic at room temperature. Two electron reduction of the ((R)APDI)CoCl(2) derivatives with excess 0.5% sodium amalgam or 2 equiv of NaBEt(3)H furnished the bis(chelate)cobalt complexes, ((R)APDI)(2)Co, while three electron reduction with 3 equiv of sodium naphthalenide yielded the cobalt dinitrogen anions, [Na(solv)(3)][((R)APDI)CoN(2)] (solv = THF, Et(2)O). Both bis(chelate) compounds were crystallographically characterized and determined to have S = 3/2 ground states by SQUID magnetometry and electron paramagnetic resonance (EPR) spectroscopy. Computational studies, in combination with metrical parameters determined from X-ray diffraction, establish a high spin (S(Co) = 3/2) cobalt(II) center with two bis(imino)pyridine chelate radical anions. Antiferromagnetic coupling between the two chelate centered radicals is mediated by a doubly occupied t(2g) cobalt orbital and gives rise to the observed overall quartet ground state.

摘要

N- 烷基取代的双(亚氨基)吡啶钴二氯化物复合物(((R)APDI)CoCl2)的 1-3 电子逐步还原被研究,其中(R)APDI = 2,6-(RN=CMe)2C5H3N,R = C6H11(Cy),CHMe2((i)Pr)。用锌金属或 NaBEt3H 还原一个电子得到双(亚氨基)吡啶钴单氯化物化合物(((R)APDI)CoCl。((iPr)APDI)CoCl 衍生物的 X 射线衍射确定了平面四方几何形状的扭曲,其中氯配体从理想钴螯合物平面中抬起。对两种化合物进行超导量子干涉装置(SQUID)磁测量,确定了自旋交叉行为,室温下主要存在 S = 1 态。计算研究与实验结果相结合,确定三重态自旋异构体来自高自旋 Co(II)中心(S(Co) = 3/2)与双(亚氨基)吡啶螯合自由基阴离子PDI(S(PDI) = 1/2)的反铁磁耦合。在较低温度下,Co(II)离子经历自旋跃迁到低自旋形式(S(Co) = 1/2),反铁磁耦合导致观察到的抗磁性基态。用甲基取代氯配体,即((R)APDI)CoCH3,也得到了扭曲的化合物,尽管程度较轻,但在室温下是抗磁性的。用过量 0.5% 钠汞齐或 2 当量的 NaBEt3H 还原((R)APDI)CoCl2 衍生物得到双(螯合物)钴配合物((R)APDI)(2)Co,而用 3 当量的钠萘化物还原得到钴二氮阴离子[Na(solv)(3)][((R)APDI)CoN2](solv = THF,Et2O)。两种双(螯合物)化合物均通过 SQUID 磁测量和电子顺磁共振(EPR)光谱确定具有 S = 3/2 基态,并用 X 射线衍射确定其结构。计算研究与从 X 射线衍射确定的度量参数相结合,确定了具有两个双(亚氨基)吡啶螯合自由基阴离子的高自旋(S(Co) = 3/2)钴(II)中心。两个螯合中心自由基之间的反铁磁耦合通过双占据的 t(2g)钴轨道介导,导致观察到的整体四重基态。

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