Dawkins Michael J C, Simonov Alexandr N, Jones Cameron
School of Chemistry, PO Box 23, Monash University, VIC 3800, Australia.
Dalton Trans. 2020 May 26;49(20):6627-6634. doi: 10.1039/d0dt01278e.
Treatment of the 2,6-diiminopyridine, NC5H3{C(Ph)[double bond, length as m-dash]N(Dip)}2-2,6 (PhDimpy, Dip = 2,6-diisopropylphenyl) with [MgI2(OEt2)2] gives the adduct complex [(PhDimpy)MgI2] in which the PhDimpy ligand is neutral. This complex can be singly reduced by KC8 or a magnesium(i) complex to give [(PhDimpy˙)MgI], in which PhDimpy acts as a radical anion. Double reduction of [(PhDimpy)MgI2] in diethyl ether yields [(PhDimpy)Mg(OEt2)], in which the magnesium centre is ligated by dianionic [PhDimpy]2-. [(PhDimpy)Mg(OEt2)] can alternatively be prepared by the simple, high yielding reaction between PhDimpy and activated magnesium. A comproportionation reaction occurs between [(PhDimpy)MgI2] and [(PhDimpy)Mg(OEt2)], leading to the quantitative formation of [(PhDimpy˙)MgI]. The heavier group 2 metal dimeric complexes [{(PhDimpy)M}2] (M = Ca, Sr, Ba) can be similarly accessed by reaction of PhDimpy with the activated metal, or by KC8 reduction of in situ generated [(PhDimpy)MI2] (M = Ca, Sr). All prepared complexes have been characterised by X-ray crystallography and NMR spectroscopy. Electrochemical investigations into the complexes incorporating [PhDimpy]2- ligands reveal that they can undergo quasi-reversible 1- and 2-electron reduction processes, quasi-reversible 1-electron oxidations, and largely irreversible 2-electron oxidation events. These studies suggest that the compounds hold promise as soluble reducing agents in organic and inorganic synthesis.
用[MgI₂(OEt₂)₂]处理2,6 - 二亚氨基吡啶NC₅H₃{C(Ph)[双键,键长如间位短横线]N(Dip)}₂ - 2,6(PhDimpy,Dip = 2,6 - 二异丙基苯基)得到加合物配合物[(PhDimpy)MgI₂],其中PhDimpy配体呈中性。该配合物可被KC₈或镁(Ⅰ)配合物单电子还原得到[(PhDimpy˙)MgI],其中PhDimpy作为自由基阴离子。在乙醚中对[(PhDimpy)MgI₂]进行双电子还原得到[(PhDimpy)Mg(OEt₂)],其中镁中心由双阴离子[PhDimpy]²⁻配位。[(PhDimpy)Mg(OEt₂)]也可通过PhDimpy与活性镁之间简单的高产率反应制备。[(PhDimpy)MgI₂]与[(PhDimpy)Mg(OEt₂)]之间发生歧化反应,定量生成[(PhDimpy˙)MgI]。较重的第2族金属二聚体配合物[{(PhDimpy)M}₂](M = Ca、Sr、Ba)可通过PhDimpy与活性金属反应,或通过KC₈还原原位生成的[(PhDimpy)MI₂](M = Ca、Sr)类似地得到。所有制备的配合物均通过X射线晶体学和核磁共振光谱进行了表征。对含有[PhDimpy]²⁻配体的配合物的电化学研究表明,它们可经历准可逆的1 - 和2 - 电子还原过程、准可逆的1 - 电子氧化过程以及很大程度上不可逆的2 - 电子氧化事件。这些研究表明这些化合物有望作为有机和无机合成中的可溶性还原剂。