Bikbaeva Zarina M, Ivanov Daniil M, Novikov Alexander S, Ananyev Ivan V, Bokach Nadezhda A, Kukushkin Vadim Yu
Saint Petersburg State University , Universitetskaya Nab. 7/9, 199034 Saint Petersburg, Russian Federation.
A. N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences , Vavilova St., 28, 119991 Moscow, Russian Federation.
Inorg Chem. 2017 Nov 6;56(21):13562-13578. doi: 10.1021/acs.inorgchem.7b02224.
The nitrosoguanidinate complex [Ni{NH═C(NMe)NN(O)}] (1) was cocrystallized with I and sym-trifluorotriiodobenzene (FIB) to give associates 1·2I and 1·2FIB. Structures of these solid species were studied by XRD followed by topological analysis of the electron density distribution within the framework of Bader's approach (QTAIM) at the M06/DZP-DKH level of theory and Hirshfeld surface analysis. Our results along with inspection of XRD (CCDC) data, accompanied by the theoretical calculations, allowed the identification of three types of Ni···I contacts. The Ni···I semicoordination of the electrophilic nickel(II) center with electron belt of I was observed in 1·2I, the metal-involving halogen bonding between the nucleophilic nickel(II)-d center and σ-hole of iodine center was recognized and confirmed theoretically in the structure of [FeNi(CN)(IPz)(HO)] (IPz = 4-N-coordinated 2-I-pyrazine), whereas the arrangement of FIB in 1·2FIB provides a boundary case between the semicoordination and the halogen Ni···I bondings. In 1·2I and 1·2FIB, noncovalent interactions were studied by variable temperature XRD detecting the expansion of noncovalent contacts with preservation of covalent bond lengths upon the temperature increase from 100 to 300 K. The nature and energies of all identified types of the Ni···I noncovalent interactions in the obtained (1·2I and 1·2FIB) and in the previously reported ([FeNi(CN)(IPz)(HO)], NiL·2I (L = o-phenylene-bis(dimethylphosphine), [NiL]I (L = 1,4,8,11-tetra-azacyclotetradecane), Ni(en)][AgI] (en = ethylenediamine), and NiL (L = 4-iodo-2-((2-(2-(2-pyridyl)ethylsulfanyl)ethylimino)methyl)-phenolate)) structures were studied theoretically. The estimated strengths of these Ni···I noncovalent contacts vary from 1.6 to 4.1 kcal/mol and, as expected, become weaker on heating. This work is the first emphasizing electrophilic-nucleophilic dualism of any metal center toward noncovalent interactions.
亚硝基胍配合物[Ni{NH═C(NMe)NN(O)}](1)与I和对称三氟三碘苯(FIB)共结晶,得到缔合物1·2I和1·2FIB。通过X射线衍射(XRD)研究了这些固体物种的结构,随后在M06/DZP-DKH理论水平上,采用巴德方法(QTAIM)框架内的电子密度分布拓扑分析以及 Hirshfeld 表面分析。我们的结果以及对XRD(CCDC)数据的检查,并结合理论计算,确定了三种类型的Ni···I相互作用。在1·2I中观察到亲电镍(II)中心与I的电子带之间的Ni···I半配位,在[FeNi(CN)(IPz)(HO)](IPz = 4-N-配位的2-I-吡嗪)结构中,亲核镍(II)-d中心与碘中心的σ-空穴之间的涉及金属的卤键在理论上得到了确认,而1·2FIB中FIB的排列提供了半配位和卤键Ni···I之间的边界情况。在1·2I和1·2FIB中,通过可变温度XRD研究了非共价相互作用,检测了在温度从100 K升高到300 K时非共价接触的扩展以及共价键长度的保持。对所获得的(1·2I和1·2FIB)以及先前报道的([FeNi(CN)(IPz)(HO)]、NiL·2I(L = 邻亚苯基双(二甲基膦))、[NiL]I(L = 1,4,8,11-四氮杂环十四烷)、Ni(en)[AgI](en = 乙二胺)和NiL(L = 4-碘-2-((2-(2-(2-吡啶基)乙硫基)乙基亚氨基)甲基)-酚盐))结构中所有确定类型的Ni···I非共价相互作用的性质和能量进行了理论研究。这些Ni···I非共价接触的估计强度在1.6至4.1 kcal/mol之间,并且正如预期的那样,加热时会变弱。这项工作首次强调了任何金属中心对非共价相互作用的亲电-亲核二元性。