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4-(4-吡啶基)-2,5-二吡唑基吡啶的3d配合物中的自旋交叉、可逆氧化还原及超分子相互作用

Spin Crossover, Reversible Redox, and Supramolecular Interactions in 3d Complexes of 4-(4-Pyridyl)-2,5-dipyrazyl-pyridine.

作者信息

Miller Reece G, Brooker Sally

机构信息

Department of Chemistry and the MacDiarmid Institute for Advanced Materials and Nanotechnology, University of Otago, P.O. Box 56, Dunedin 9054, New Zealand.

出版信息

Inorg Chem. 2015 Jun 1;54(11):5398-409. doi: 10.1021/acs.inorgchem.5b00428. Epub 2015 May 13.

Abstract

A new terpyridine-inspired terdentate ligand, 4-(4-pyridyl)-2,5-dipyrazyl-pyridine (py-pzpypz), featuring three "spare" nitrogen donors "out the back", has been used to synthesize five bis-ligand complexes, [M(II)(py-pzpypz)2]X2, where M = Mn with X = ClO4, or M = Fe, Co, Ni, and Zn with X = BF4. In contrast, when M = Cu(II), regardless of the M:L ratio employed, 1:1 M:L products were obtained: for X = BF4 a 1D chain {Cu(II)(py-pzpypz)(DMF)22}n, and for X = Cl a monometallic complex [Cu(py-pzpypz)Cl2]. All seven complexes were structurally characterized, confirming the expected N6 coordination of the M(II) centers in all cases except Cu(II). Notably, a Jahn-Teller elongation is observed in the Co(II) complex, consistent with it being low spin at 100 K. The Cu(II) 1D chain complex has an N4O2 coordination sphere as in this case the "spare" pyridine donor out the back of the py-pzpypz ligand bridges to the next Cu(II) center in the chain, hence providing both a terdentate site and a monodentate pyridine to the next Cu(II) center, and the coordination sphere is completed by weak axial coordination by two DMF solvent molecules. The Cu(II) center in the monometallic complex has an N3Cl2 square pyramidal coordination sphere. In all cases, the noncoordinating, "spare", pyrazine nitrogen atoms are involved in interesting intermolecular interactions, including NPz-π interactions and nonclassical C-H···NPz hydrogen bonding. The Fe(II) complex is low spin as expected. Two polymorphs of the Co(II) complex were obtained, both of which showed gradual spin crossover, with a room temperature T1/2. Two reversible redox processes are observed for Co(II)(py-pzpypz)22, with Em(M(I)/M(II)) = -0.63 V and Em(M(II)/M(III)) = +0.37 V, and a quasireversible redox process for Fe(II)(py-pzpypz)22, with Em(M(II)/M(III)) = +1.26 V, versus 0.01 M AgNO3/Ag in MeCN. These potentials are shifted to significantly higher potentials (by ∼0.45 V) than the literature values for the corresponding Fe(II) and Co(II) complexes of the equivalent all-pyridine ligand, consistent with replacement of the two pyridine rings by two pyrazine rings significantly stabilizing the lower oxidation states.

摘要

一种受三联吡啶启发的新型三齿配体4-(4-吡啶基)-2,5-二吡唑基吡啶(py-pzpypz),其具有三个位于“背面”的“备用”氮供体,已被用于合成五种双配体配合物[M(II)(py-pzpypz)₂]X₂,其中M = Mn且X = ClO₄,或者M = Fe、Co、Ni和Zn且X = BF₄。相比之下,当M = Cu(II)时,无论采用何种M:L比,均得到1:1的M:L产物:对于X = BF₄,得到一维链状配合物{Cu(II)(py-pzpypz)(DMF)₂₂}ₙ,对于X = Cl,则得到单金属配合物[Cu(py-pzpypz)Cl₂]。对所有七种配合物进行了结构表征,证实了除Cu(II)外所有情况下M(II)中心预期的N₆配位。值得注意的是,在Co(II)配合物中观察到了Jahn-Teller伸长,这与它在100 K时为低自旋状态一致。Cu(II)一维链状配合物具有N₄O₂配位环境,因为在这种情况下,py-pzpypz配体背面的“备用”吡啶供体与链中的下一个Cu(II)中心桥连,从而为下一个Cu(II)中心提供了一个三齿位点和一个单齿吡啶,并且配位环境由两个DMF溶剂分子的弱轴向配位完成。单金属配合物中的Cu(II)中心具有N₃Cl₂四方锥配位环境。在所有情况下,非配位的“备用”吡嗪氮原子都参与了有趣的分子间相互作用,包括NPz-π相互作用和非经典的C-H···NPz氢键。Fe(II)配合物如预期的那样为低自旋。得到了Co(II)配合物的两种多晶型物,二者均显示出逐渐的自旋交叉,室温下的T₁/₂。对于Co(II)(py-pzpypz)₂₂观察到两个可逆氧化还原过程,Em(M(I)/M(II)) = -0.63 V且Em(M(II)/M(III)) = +0.37 V,对于Fe(II)(py-pzpypz)₂₂观察到一个准可逆氧化还原过程,Em(M(II)/M(III)) = +1.26 V,相对于MeCN中0.01 M AgNO₃/Ag。这些电位比相应的全吡啶配体的Fe(II)和Co(II)配合物的文献值显著移向更高的电位(约0.45 V),这与用两个吡嗪环取代两个吡啶环显著稳定较低氧化态一致。

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