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对具有形式超价的[N-X-N](X = I,Br)型卤鎓化合物的光谱学影响。

Spectroscopic Implications for [N-X-N] (X = I, Br)-Type Halonium Compounds with Formal Hypervalency.

作者信息

Muramatsu Satoru, Matsuyama Akihito, Iwanaga Daiki, Inokuchi Yoshiya

机构信息

Department of Chemistry, Graduate School of Advanced Science and Engineering, Hiroshima University, 1-3-1 Kagamiyama, Higashi-Hiroshima-shi, Hiroshima 739-8526, Japan.

出版信息

Inorg Chem. 2025 Jul 7;64(26):13364-13373. doi: 10.1021/acs.inorgchem.5c01820. Epub 2025 Jun 18.

Abstract

Bis(pyridine)halonium complexes, [PyX] (Py = CHN, X = I, Br), are formally regarded as hypervalent species, possessing 10 valence electrons at the halogen center in Lewis dot structures. In this study, gas-phase UV spectra of [PyX] complexes were obtained using a cryogenic ion trap. Distinct vibronic structures attributed to charge-transfer (CT) transitions with electron density from the X atom to the terminal Py rings were clearly observed, indicative of halogen bonds. In contrast, transitions between "three-center, four-electron (3c-4e) bond" orbitals, composed of the p orbitals of the X and two N atoms, were observed as broad spectral bands at higher energy regions. Based on these contrasts, we propose that the electronic states of [PyX] can be described by substantial charge-resonance (CR) interactions between two charge-localized states, [(PyX)-Py] and [Py-(XPy)]. Moreover, the well-resolved vibronic bands for the CT transitions enabled the quantitative estimation of the effective N-X bond force constants (at the excited CT state), 159 and 132 N·m for X = Br and I, respectively, where the cause of this difference is associated with the magnitude of electron transfer upon the CT excitation. This study provides a new perspective on hypervalency from the spectroscopic viewpoint.

摘要

双(吡啶)卤鎓配合物[PyX](Py = C₅H₅N,X = I、Br)在路易斯点结构中,从形式上看是超价物种,其卤素中心有10个价电子。在本研究中,使用低温离子阱获得了[PyX]配合物的气相紫外光谱。清晰地观察到了归属于电荷转移(CT)跃迁的独特振动电子结构,电子密度从X原子转移到末端的吡啶环,这表明存在卤键。相比之下,由X和两个N原子的p轨道组成的“三中心、四电子(3c - 4e)键”轨道之间的跃迁,在较高能量区域表现为宽谱带。基于这些对比,我们提出[PyX]的电子态可以用两个电荷定域态[(PyX)⁻ - Py]和[Py⁻(XPy)]之间的大量电荷共振(CR)相互作用来描述。此外,CT跃迁的分辨良好的振动电子带使得能够定量估计有效N - X键力常数(在激发的CT态),对于X = Br和I分别为159和132 N·m,这种差异的原因与CT激发时的电子转移量有关。本研究从光谱学角度为超价提供了新的视角。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5136/12322916/f6d1192eb70a/ic5c01820_0004.jpg

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