EaStCHEM, School of Chemistry, University of St. Andrews, St. Andrews, Fife, KY16 9ST, United Kingdom.
Inorg Chem. 2012 Oct 15;51(20):11087-97. doi: 10.1021/ic301627y. Epub 2012 Sep 24.
Twelve related monocation chalconium salts [{Nap(EPh)(E'Ph)Me}(+){CF(3)SO(3)}(-)] 2-4, [{Acenap(Br)(EPh)Me}{CF(3)SO(3)}(-)] 5-7, and [{Acenap(EPh)(E'Ph)Me}(+){CF(3)SO(3)}(-)] 8-13 have been prepared and structurally characterized. For their synthesis naphthalene compounds [Nap(EPh)(E'Ph)] (Nap = naphthalene-1,8-diyl; E/E' = S, Se, Te) N2-N4 and associated acenaphthene derivatives [Acenap(X)(EPh)]/[Acenap(EPh)(E'Ph)] (Acenap = acenaphthene-5,6-diyl; E/E' = S, Se, Te; X = Br) A5-A13 were independently treated with a single molar equivalent of methyl trifluoromethanesulfonate (MeOTf). In addition, reaction of bis-tellurium compound A10 with 2 equiv of MeOTf afforded the doubly methylated dication salt [{Acenap(TePhMe)(2)}(2+){(CF(3)SO(3))(2)}(2-)}] 14. The distortion of the rigid naphthalene and acenaphthene backbone away from ideal was investigated in each case and correlated in general with the steric bulk of the interacting atoms located at the proximal peri positions. Naturally, introduction of the ethane linker in acenaphthene compounds increased the splay of the bay region compared with equivalent naphthalene derivatives resulting in greater peri distances. The conformation of the aromatic rings and subsequent location of p-type lone pairs has a significant impact on the geometry of the peri region, with anomalies in peri separations correlated to the ability of the frontier orbitals to take part in attractive or repulsive interactions. In all but one of the monocations a quasi-linear three-body C(Me)-E···Z (E = Te, Se, S; Z = Br/E) fragment provides an attractive component for the E···Z interaction. Density functional studies confirmed these interactions and suggested the onset of formation of three-center, four-electron bonding under appropriate geometric conditions, becoming more prevalent as heavier congeners are introduced along the series. The increasingly large J values for Se-Se, Te-Se, and Te-Te coupling observed in the (77)Se and (125)Te NMR spectra for 1, 3, 4, 9, 10, and 13 give further evidence for the existence of a weakly attractive through-space interaction.
已制备并结构表征了 12 种相关的一价查耳酮盐 [{Nap(EPh)(E'Ph)Me}(+) {CF(3)SO(3)}(-)] 2-4、[{Acenap(Br)(EPh)Me}{CF(3)SO(3)}(-)] 5-7 和 [{Acenap(EPh)(E'Ph)Me}(+) {CF(3)SO(3)}(-)] 8-13。为了它们的合成,萘化合物 [Nap(EPh)(E'Ph)] (Nap = 萘-1,8-二基; E/E' = S, Se, Te) N2-N4 和相关的苊衍生物 [Acenap(X)(EPh)]/[Acenap(EPh)(E'Ph)] (Acenap = 苊-5,6-二基; E/E' = S, Se, Te; X = Br) A5-A13 分别用单摩尔当量的甲基三氟甲磺酸酯 (MeOTf) 处理。此外,双碲化合物 A10 与 2 当量的 MeOTf 反应得到双甲基化二阳离子盐 [{Acenap(TePhMe)(2)}2+{(CF3SO3)2}-] 14。刚性萘和苊骨架偏离理想的扭曲程度在每种情况下都进行了研究,并与位于近位并置位置的相互作用原子的空间位阻一般相关。自然地,在苊化合物中引入乙烷连接物会导致湾区域的张开度大于等效的萘衍生物,从而导致更大的并置距离。芳环的构象和随后的 p 型孤对电子的位置对并置区域的几何形状有重大影响,异常的并置分离与前线轨道参与吸引或排斥相互作用的能力相关。在所有一价阳离子中,除了一个以外,准线性三原子 C(Me)-E···Z(E = Te、Se、S; Z = Br/E) 片段为 E···Z 相互作用提供了一个吸引力成分。密度泛函研究证实了这些相互作用,并表明在适当的几何条件下,三中心四电子键的形成开始出现,随着该系列中较重同系物的引入变得更加普遍。在 1、3、4、9、10 和 13 的 (77)Se 和 (125)Te NMR 光谱中观察到的 Se-Se、Te-Se 和 Te-Te 偶合的 J 值增加进一步证明了存在弱的空间相互作用。