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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Influence of halogen bonding on gold(i)-ligand bond components and DFT characterization of a gold-iodine halogen bond
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Influence of halogen bonding on gold(i)-ligand bond components and DFT characterization of a gold-iodine halogen bond

机译:卤素键对金 - 碘卤素键的金(I)--ligand键组分和DFT表征的影响

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摘要

A gold(i) complex bearing nitrogen acyclic carbene (NAC) and selenourea (SeU) has been used to verify whether the second-sphere SeMIDLINE HORIZONTAL ELLIPSISI halogen bond (XB) is able to modify the Dewar-Chatt-Duncanson components of the Au-C and Au-Se bonds. The chosen system was found to be thermically unstable but it allowed an in-depth theoretical study by means of Energy Decomposition Analysis, Natural Bond Orbital and Natural Orbitals for Chemical Valence methods, coupled with Charge Displacement analysis. Indeed, in the presence of iodoperfluoroalkanes as XB donors, iodine interacts with the lone pair of the coordinated selenium, enhancing the Au <- C sigma donation and depressing the Au -> C pi back-donation, as demonstrated also by the increase of the rotational barrier of the C-N bond of the NAC (see G. Ciancaleoni and others, Chem. - Eur. J., 2015, 21, 2467). On the other hand, in the presence of N-iodosuccinimide (NIS), the gold directly establishes a XB with the iodine by using its d lone pairs. This AuMIDLINE HORIZONTAL ELLIPSISI XB is favored by the low steric hindrance of the ligands coordinated to the gold and the presence of the amino protons of SeU, which establish additional hydrogen bonds with the NIS. Also in this case, the effect is to increase the sigma acidity and decrease the pi basicity of the metal.
机译:金(I)复合轴承氮含氮环纤维(NAC)和Selenourea(SEU)用于验证第二球形半线水平椭圆溶酶卤素键(XB)是否能够改变AU的杜瓦特Chatt-Duncanson组分-c和au-se键。发现所选的系统是热不稳定的,但是通过能量分解分析,天然键和天然轨道进行化学价方法,允许深入的理论研究,与电荷位移分析相结合。实际上,在碘丙酮烷烃作为XB供体的存在下,碘与孤独的协调硒相互作用,增强Au < - c sigma捐赠和抑制Au - > C pi返回捐赠,如上所示NAC的CN键的旋转屏障(参见G. Ciancaleoni等,化学。 - EUR。J.,2015,21,2467)。另一方面,在N-碘阳琥珀酰亚胺(NIS)存在下,通过使用其D孤立对直接与碘建立XB。该Aumidline水平椭圆磷酸Xb是由与金的配体的低空间阻碍以及Seu的氨基质子的存在,该氨基质子与NIS建立额外的氢键。同样在这种情况下,效果是增加σ酸度并降低金属的PI碱度。

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