Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York 14853, USA.
Inorg Chem. 2010 Jul 5;49(13):6110-23. doi: 10.1021/ic100717w.
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.
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。