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通过气相电子衍射和量子化学计算确定环状(烷基)(氨基)卡宾氯化铜(I)的平衡分子结构

The Equilibrium Molecular Structure of Cyclic (Alkyl)(Amino) Carbene Copper(I) Chloride via Gas-Phase Electron Diffraction and Quantum Chemical Calculations.

作者信息

Belyakov Alexander V, Altova Ekaterina P, Rykov Anatoliy N, Sharanov Pavel Yu, Shishkov Igor F, Romanov Alexander S

机构信息

Saint-Petersburg State Technological Institute, 190013 Saint Petersburg, Russia.

Department of Chemistry, Moscow State University, 119992 Moscow, Russia.

出版信息

Molecules. 2023 Oct 1;28(19):6897. doi: 10.3390/molecules28196897.

Abstract

Copper-centered carbene-metal-halides (CMHs) with cyclic (alkyl)(amino) carbenes (CAACs) are bright phosphorescent emitters and key precursors in the synthesis of the highly promising class of the materials carbene-metal-amides (CMAs) operating via thermally activated delayed fluorescence (TADF). Aiming to reveal the molecular geometry for CMH phosphors in the absence of the intermolecular contacts, we report here the equilibrium molecular structure of the (CAAC)Cu(I)Cl () molecule in the gas-phase. We demonstrate that linear geometry around a copper atom shows no distortions in the ground state. The structure of complex has been determined using the electron diffraction method, supported by quantum chemical calculations with RI-MP2/def2-QZVPP level of theory and compared with the crystal structure determined by X-ray diffraction analysis. Mean vibrational amplitudes, , and anharmonic vibrational corrections ( • ) were calculated for experimental temperature T = 20 °C, using quadratic and cubic force constants, respectively. The quantum theory of atoms in molecules (QTAIM) and natural bond order (NBO) analysis of wave function at MN15/def2TZVP level of theory revealed two CuH, three HH, and one three-center HHH bond paths with bond critical points. NBO analysis also revealed three-center, four-electron hyperbonds, (3c4e), [π(N-C) (Cu) ↔ (N) π(N-Cu)], or [N-C: Cu ↔ N: C-Cu] and (Cu) → π(C-N)* hyperconjugation, that is the delocalization of the lone electron pair of Cu atom into the antibonding orbital of C-N bond.

摘要

含有环状(烷基)(氨基)卡宾(CAAC)的铜中心卡宾 - 金属卤化物(CMH)是明亮的磷光发射体,也是通过热激活延迟荧光(TADF)运行的极具前景的卡宾 - 金属酰胺(CMA)类材料合成中的关键前体。为了揭示在不存在分子间接触情况下CMH磷光体的分子几何结构,我们在此报告了气相中(CAAC)Cu(I)Cl( )分子的平衡分子结构。我们证明铜原子周围的线性几何结构在基态下没有畸变。配合物 的结构已通过电子衍射方法确定,并得到了理论水平为RI - MP2 / def2 - QZVPP的量子化学计算的支持,并与通过X射线衍射分析确定的晶体结构进行了比较。分别使用二次和三次力常数,针对实验温度T = 20°C计算了平均振动幅度 、 和非谐振动校正( • )。在理论水平MN15 / def2TZVP下对波函数进行的分子中的原子量子理论(QTAIM)和自然键序(NBO)分析揭示了两条Cu - H、三条H - H和一条三中心H - H - H键路径以及键临界点。NBO分析还揭示了三中心、四电子超键(3c4e),[π(N - C)(Cu)↔(N)π(N - Cu)],或[N - C:Cu↔N:C - Cu]以及(Cu)→π(C - N)*超共轭,即Cu原子的孤电子对离域到C - N键的反键轨道中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/041e/10574683/9eda995cff9e/molecules-28-06897-g001.jpg

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