Günther Hennes, Weigend Florian, Xie Xiulan, Cao Wenjin, Gao Xiao-Fei, Wang Xue-Bin, Tambornino Frank
Department of Chemistry, Philipps University of Marburg, Hans-Meerwein-Str. 4, D-35043, Marburg, Germany.
Institute for Quantum Materials and Technologies, Karlsruhe Institute of Technology, Hermann-von-Helmholtz-Platz 1, D-76344, Eggenstein-Leopoldshafen, Germany.
Angew Chem Int Ed Engl. 2025 Jul 28;64(31):e202507543. doi: 10.1002/anie.202507543. Epub 2025 Jun 3.
Tellurocyanate, [TeCN], is the heaviest group 16 congener of the cyanate anion, [OCN]. Due to the relative instability of the C─Te bond, tellurocyanate chemistry has seen only scarce attention. Here, we present the facile synthesis and thorough characterization of [K@crypt-222][TeCN]. The anion is essentially linear with interatomic distances C─N = 1.150(6)Å and C─Te = 2.051(4)Å, thus approximating a C≡N triple bond and for C─Te a bond order between 1 and 2. Fully C and N labeled [TeCN] allowed for the extraction of chemical shifts and all possible coupling constants (C = 77.8 ppm, N = 285.7 ppm, Te = -566 ppm, J = 8 Hz, J = 748 Hz, J = 55 Hz), which were also determined independently by quantum chemical calculations. In the series [ChCN] (Ch = O─Te), [TeCN] shows the strongest spin-orbit coupling (SOC) induced heavy-atom effect on the light-atom shielding (SO-HALA-effect). In contrast, N shifts are also well described without considering relativistic effects and/or SOC. Negative-ion photoelectron spectroscopy was used to extract the electron affinity (EA = 3.034 eV) and spin-orbit splitting (3807 cm) of [TeCN]. These values continue the trends of falling EA and rising SOC in the series [ChCN].
碲氰酸盐[TeCN]是氰酸根阴离子[OCN]中原子量最大的第16族同系物。由于C─Te键相对不稳定,碲氰酸盐化学受到的关注很少。在此,我们展示了[K@crypt - 222][TeCN]的简便合成方法及全面表征。该阴离子基本呈线性,原子间距离C─N = 1.150(6)Å,C─Te = 2.051(4)Å,因此近似于C≡N三键,C─Te的键级在1到2之间。完全用C和N标记的[TeCN]使得能够提取化学位移和所有可能的耦合常数(C = 77.8 ppm,N = 285.7 ppm,Te = -566 ppm,J = 8 Hz,J = 748 Hz,J = 55 Hz),这些也通过量子化学计算独立确定。在[ChCN](Ch = O─Te)系列中,[TeCN]对轻原子屏蔽表现出最强的自旋 - 轨道耦合(SOC)诱导重原子效应(SO - HALA效应)。相比之下,不考虑相对论效应和/或SOC时,N位移也能得到很好的描述。负离子光电子能谱用于提取[TeCN]的电子亲和能(EA = 3.034 eV)和自旋 - 轨道分裂(3807 cm)。这些值延续了[ChCN]系列中EA下降和SOC上升的趋势。