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对细胞毒性环钌化合物中乙腈配体不稳定性的进一步洞察:钌中心与碳原子反位的抗共生效应证据。

Further Insight into the Lability of MeCN Ligands of Cytotoxic Cycloruthenated Compounds: Evidence for the Antisymbiotic Effect Trans to the Carbon Atom at the Ru Center.

作者信息

Barbosa Ana Soraya Lima, Werlé Christophe, Colunga Claudia Olivia Oliva, Rodríguez Cecilia Franco, Toscano Ruben Alfredo, Le Lagadec Ronan, Pfeffer Michel

机构信息

§Instituto de Química, UNAM, Circuito Exterior s/n, Ciudad Universitaria, Mexico, D. F. 04510, Mexico.

出版信息

Inorg Chem. 2015 Aug 3;54(15):7617-26. doi: 10.1021/acs.inorgchem.5b01236. Epub 2015 Jul 14.

Abstract

The two MeCN ligands in [Ru(2-C6H4-2'-Py-κC,N)(Phen, trans-C)(MeCN)2]PF6 (1), both trans to a sp(2) hybridized N atom, cannot be substituted by any other ligand. In contrast, the isomerized derivative [Ru(2-C6H4-2'-Py-κC,N)(Phen, cis-C)(MeCN)2]PF6 (2), in which one MeCN ligand is now trans to the C atom of the phenyl ring orthometalated to Ru, leads to fast and quantitative substitution reactions with several monodentate ligands. With PPh3, 2 affords [Ru(2-C6H4-2'-Py-κC,N)(Phen, cis-C)(PPh3)(MeCN)]PF6 (3), in which PPh3 is trans to the C σ bound to Ru. Compound 3 is not kinetically stable, because, under thermodynamic control, it leads to 4, in which the PPh3 is trans to a N atom of the Phen ligand. Dimethylsulfoxide (DMSO) can also substitute a MeCN ligand in 2, leading to 5, in which DMSO is coordinated to Ru via its S atom trans to the N atom of the Phen ligand, the isomer under thermodynamic control being the only compound observed. We also found evidence for the fast to very fast substitution of MeCN in 2 by water or a chloride anion by studying the electronic spectra of 2 in the presence of water or NBu4Cl, respectively. An isomerization related to that observed between 3 and 4 is also found for the known monophosphine derivative [Ru(2-C6H4-2'-Py-κC,N)(PPh3, trans-C)(MeCN)3]PF6 (10), in which the PPh3 is located trans to the C of the cyclometalated 2-phenylpyridine, since, upon treatment by refluxing MeCN, it leads to its isomer 11, [Ru(2-C6H4-2'-Py-κC,N)(PPh3, cis-C)(MeCN)3]PF6. Further substitutions are also observed on 11, whereby N^N chelates (N^N = 2,2'-bipyridine and phenanthroline) substitute two MeCN ligands, affording [Ru(2-C6H4-2'-Py-κC,N)(PPh3, cis-C)(N^N)(MeCN)]PF6 (12a and 12b). Altogether, the behavior of the obtained complexes by ligand substitution reactions can be rationalized by an antisymbiotic effect on the Ru center, trans to the C atom of the cyclometalated unit, leading to compounds having the least nucleophilic ligand trans to C whenever an isomerization, involving either a monodentate or a bidentate ligand, is possible.

摘要

在[Ru(2-C6H4-2'-Py-κC,N)(Phen, trans-C)(MeCN)2]PF6(1)中,两个乙腈配体均与一个sp(2)杂化的N原子呈反式,不能被任何其他配体取代。相比之下,异构化衍生物[Ru(2-C6H4-2'-Py-κC,N)(Phen, cis-C)(MeCN)2]PF6(2)中,现在有一个乙腈配体与邻位金属化到Ru的苯环的C原子呈反式,它会与几种单齿配体发生快速且定量的取代反应。与三苯基膦反应时,2会生成[Ru(2-C6H4-2'-Py-κC,N)(Phen, cis-C)(PPh3)(MeCN)]PF6(3),其中三苯基膦与键合到Ru的C原子呈反式。化合物3在动力学上不稳定,因为在热力学控制下,它会生成4,其中三苯基膦与菲咯啉配体的一个N原子呈反式。二甲亚砜(DMSO)也能取代2中的一个乙腈配体,生成5,其中DMSO通过其S原子与Ru配位,该S原子与菲咯啉配体的N原子呈反式,在热力学控制下的异构体是唯一观察到的化合物。通过分别研究在水或四丁基氯化铵存在下2的电子光谱,我们还发现了水或氯离子阴离子能快速到非常快速地取代2中乙腈的证据。对于已知的单膦衍生物[Ru(2-C6H4-2'-Py-κC,N)(PPh3, trans-C)(MeCN)3]PF6(10),其中三苯基膦位于与环金属化的2-苯基吡啶的C原子呈反式的位置,也发现了与3和4之间观察到的异构化相关的异构化现象,因为在回流乙腈处理时,它会生成其异构体11,即[Ru(2-C6H4-2'-Py-κC,N)(PPh3, cis-C)(MeCN)3]PF6。在11上还观察到了进一步的取代反应,其中N^N螯合物(N^N = 2,2'-联吡啶和菲咯啉)取代了两个乙腈配体,生成[Ru(2-C6H4-2'-Py-κC,N)(PPh3, cis-C)(N^N)(MeCN)]PF6(12a和12b)。总之,通过配体取代反应得到的配合物的行为可以通过对Ru中心的反共生效应来合理化,该效应与环金属化单元的C原子呈反式,导致每当可能发生涉及单齿或双齿配体的异构化时,具有最少亲核性配体的化合物与C呈反式。

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