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Mono- vs. bi-metallic assembly on a bulky bis(imino)terpyridine framework: a combined experimental and theoretical study

机译:庞大的双(亚氨基)吡啶骨架上的单金属或双金属组装:结合实验和理论研究

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摘要

The bis(imino)terpyridine ligands, 6,6″-{(2,6-i-Pr[subscript 2]C[subscript 6]H[subscript 3])N=CR}[subscript 2]-2,2′:6′,2″-C[subscript 15]H[subscript 9]N[subscript 3] (R = H L1, Me L2), have been prepared in high yield from the condensation reaction of the corresponding carbonyl compound with two equivalents of 2,6-diisopropylaniline. The molecular structure of L2 reveals a transoid relationship between the imino and pyridyl nitrogen groups throughout the ligand framework. Treatment of aldimine-containing L1 with one equivalent or an excess of MX[subscript 2] in n-BuOH at 110 °C gives the mononuclear five-coordinate complexes, [(L1)MX[subscript 2]] (M = Fe, X = Cl 1a; M = Ni, X = Br 1b; M = Zn, X = Cl 1c), in which the metal centre occupies the terpyridine cavity and the imino groups pendant. Conversely, reaction of ketimine-containing L2 with excess MX[subscript 2] in n-BuOH at 110 °C affords the binuclear complexes, [(L2)M[subscript 2]X[subscript 4]] (M = Fe, X = Cl 3a; M = Ni, X = Br 3b; M = Zn, X = Cl 3c), in which one metal centre occupies a bidentate pyridylimine cavity while the other a tridentate bipyridylimine cavity. [superscript 1]H NMR studies on diamagnetic 3c suggests a fluxional process is operational at ambient temperature in which the central pyridine ring undergoes an exchange between metal coordination. Under less forcing conditions (room temperature in dichloromethane), the monometallic counterpart of 1b [(L2)NiBr[subscript 2]] (2b) has been isolated which can be converted to 3b by addition of one equivalent of (DME)NiBr[subscript 2] (DME = 1,2-dimethoxyethane) in n-BuOH at 110 °C. Quantum mechanical calculations (DFT) have been performed on [(L1)ZnCl[subscript 2]] and [(L2)ZnCl[subscript 2]] for different monometallic conformations and show that 1a is the energetically preferred structure for L1 while there is evidence for dynamic behaviour in L2-containing species leading to bimetallic formation. Single-crystal X-ray diffraction studies have been performed on 1a, 1b, 1c, 2b, 3a, 3b(H[subscript 2]O) and 3c.
机译:双(亚氨基)三联吡啶配体6,6''-{(2,6-i-Pr [下标2] C [下标6] H [下标3])N = CR} [下标2] -2,2'通过相应的羰基化合物与两个当量的缩合反应,高收率地制备了:6′,2″ -C [下标15] H [下标9] N [下标3](R = H L1,Me L2) 2,6-二异丙基苯胺。 L2的分子结构揭示了整个配体框架中亚氨基和吡啶基氮基团之间的反式关系。在110°C的正丁醇中用当量或过量的MX [下标2]处理含醛亚胺的L1,得到单核五配位络合物[(L1)MX [下标2]](M = Fe,X = Cl 1a; M = Ni,X = Br 1b; M = Zn,X = Cl 1c),其中金属中心占据了联吡啶腔,亚氨基基团悬垂。相反,含酮亚胺的L2与过量的MX [下标2]在正丁醇中于110°C反应,得到双核络合物[(L2)M [下标2] X [下标4]](M = Fe,X = Cl 3a; M = Ni,X = Br 3b; M = Zn,X = Cl 3c),其中一个金属中心占据二齿吡啶嘧啶腔,而另一金属中心占据三齿联吡啶胺腔。对反磁性3c的[1 H] NMR研究表明,通量过程在环境温度下是可操作的,在该温度下,中央吡啶环经历金属配位之间的交换。在较少的强迫条件下(室温于二氯甲烷中),已分离出1b [(L2)NiBr [下标2]](2b)的单金属对应物,可以通过添加一当量的(DME)NiBr [下标]转化为3b。 2](DME = 1,2-二甲氧基乙烷)在110°C的正丁醇中。对[(L1)ZnCl [下标2]]和[(L2)ZnCl [下标2]]进行了不同单金属构象的量子力学计算(DFT),结果表明1a是L1的能量优选结构,同时有证据表明在导致双金属形成的含L2物质中的动力学行为。已经对1a,1b,1c,2b,3a,3b(H [下标2] O)和3c进行了单晶X射线衍射研究。

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