Synthesis, structural characterization and Hirshfeld surface analysis of copper(I) complexes containing hemilabile-ferrocenylbisphosphine [Fe{C5H4P(C6H4CH2NMe2-o)2}2]

IF 0.4 4区 化学 Q4 CHEMISTRY, ORGANIC INDIAN JOURNAL OF CHEMISTRY Pub Date : 2023-10-18 DOI:10.56042/ijc.v62i10.6188
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Abstract

The reactions of ferrocenylbisphosphine, [Fe{C5H4P(C6H4CH2NMe2-o)2}2] (1) comprising dangling amine functionalities with CuX yielded dinuclear complexes [{Cu2(μ-X)2}{Fe(C5H4P(C6H4CH2NMe2-o)2)2}] (2, X = Cl; 3, X = Br; 4 X = I). The reaction of 4 with pyridine affords a binuclear complex, [{Cu2I2(py)2}{Fe(C5H4P(C6H4CH2NMe2-o)2)2}] (5) (py = pyridine) in which each copper atom is tetracoordinated. Similarly, treatment of 4 with 2,2'-bipyridine in 1:1 molar ratio afforded the binuclear complex, [{Cu2I2(2,2′-bipy)}{Fe-(C5H4P(C6H4CH2NMe2-o)2)2}] (6). The equimolar reaction of 3 and 4,4'-bipyridine affords [{Cu2Br2(4,4′-bipy)}2{Fe(C5H4P- (C6H4CH2NMe2-o)2)2}2] (7) in good yield. The complexes 2 and 4 have been structurally characterized; both crystallize in the monoclinic space group with C2/c. In the crystal packing of 2 and 4, the invention-related intermolecular C-H×××X (X = Cl and I) and C-H×××p(ring) interactions are primarily responsible for the crystal packing. A Hirshfeld surface analysis indicates that the most significant contributions to the crystal packing of 2 are from H×××H (81.7%), C×××H/H×××C (12.4%), Cl×××H/H×××Cl (4.3%) contacts, while those for 4 are from H×××H (80.9%), C×××H/H×××C (12.1%), I×××H/H×××I (5.4%) contacts.
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半稳定性二茂铁双膦配合物[Fe{C5H4P(C6H4CH2NMe2-o)2}2]的合成、结构表征及Hirshfeld表面分析
含悬胺官能团的二茂铁双膦[Fe{C5H4P(C6H4CH2NMe2-o)2}2](1)与CuX反应生成双核配合物[{Cu2(μ-X)2}{Fe(C5H4P(C6H4CH2NMe2-o)2)2}] (2, X = Cl;3、X = Br;4与吡啶反应生成双核配合物[{Cu2I2(py)2}{Fe(C5H4P(C6H4CH2NMe2-o)2)2}] (5) (py =吡啶),其中每个铜原子都是四配位的。同样,用2,2′-联吡啶以1:1的摩尔比处理4,得到双核配合物[{Cu2I2(2,2′-bipy)}{Fe-(C5H4P(C6H4CH2NMe2-o)2)2}](6)。3和4,4′-联吡啶的等摩尔反应得到[{Cu2Br2(4,4′-bipy)}2{Fe(C5H4P- (C6H4CH2NMe2-o)2)2}2](7),产率很高。对配合物2和4进行了结构表征;均在C2/c的单斜空间群中结晶。在2和4的晶体填充中,与本发明相关的分子间C-H×××X (X = Cl和I)和C-H×××p(环)相互作用是晶体填充的主要原因。Hirshfeld表面分析表明晶体包装最重要的贡献的2 H×××H(81.7%)、C×××H / H×××C(12.4%)、Cl×××H / H×××Cl(4.3%)接触,而4来自H×××H(80.9%)、C×××H / H×××C(12.1%),我×××H / H×××我接触(5.4%)。
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