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12电子过渡金属片段对铋结构的电荷和结构的影响

Affecting Charges and Structures of {Bi} Architectures by 12-Electron Transition Metal Fragments.

作者信息

Schmidt Andreas, Rienmüller Julia, Weigend Florian, Dehnen Stefanie

机构信息

Institute of Nanotechnology, Karlsruher Institute of Technology, Kaiserstraße 12, 76131, Karlsruhe, Germany.

出版信息

Angew Chem Int Ed Engl. 2025 Jan 27;64(5):e202417234. doi: 10.1002/anie.202417234. Epub 2024 Nov 11.

Abstract

Molecules based on polyatomic bismuth substructures are currently attracting a lot of attention owing to this heavy and essentially non-toxic element's uncommon chemical and physical properties, which include unprecedented bonding properties. Hexaatomic {Bi} substructures that underly more complex cluster structures were recently reported to adopt different structures or exhibit different structural details as a consequence of the charge of the {Bi} unit. This leads to either crown-shaped cycles for a nominal Bi or differently distorted trigonal prisms for compositions close to Bi . It was predicted by quantum chemistry that Bi should adopt a distinctly distorted boat-like shape, yet a corresponding compound has remained elusive. Here, we report a proof of this assumption by the synthesis of [K(crypt-222)][Bi{Zn(hmds)}] ⋅ 1.5THF (1), comprising a bimetallic [Bi{Zn(hmds)}] cluster that fulfills the prediction for the geometric and electronic structure of the missing link (crypt-222=4,7,13,16,21,24-hexaoxa-1,10-diazabicyclo-[8.8.8]hexa-cosane, hmds=hexamethyldisilazanid). A detailed quantum chemical study shows how the nature of Lewis-acidic transition metal complexes-in particular, 12-electron fragments-control and fine-tune the resulting {Bi} architectures in accordance with the degree of electron-withdrawal from the polybismuthide core.

摘要

基于多原子铋亚结构的分子目前正吸引着大量关注,这归因于这种重金属且基本无毒的元素具有非同寻常的化学和物理性质,其中包括前所未有的键合性质。据报道,构成更复杂簇结构基础的六原子{Bi}亚结构由于{Bi}单元的电荷不同而采用不同的结构或展现出不同的结构细节。这导致对于标称的Bi形成冠状环,而对于接近Bi的组成形成不同程度扭曲的三棱柱。量子化学预测Bi应采用明显扭曲的船状形状,但相应的化合物一直难以捉摸。在此,我们通过合成[K(crypt - 222)][Bi{Zn(hmds)}]⋅1.5THF (1)证明了这一假设,该化合物包含一个双金属[Bi{Zn(hmds)}]簇,符合对缺失环节的几何和电子结构的预测(crypt - 222 = 4,7,13,16,21,24 - 六氧杂 - 1,10 - 二氮杂双环-[8.8.8]二十六烷,hmds = 六甲基二硅氮烷)。一项详细的量子化学研究表明,路易斯酸性过渡金属配合物——特别是12电子片段——的性质如何根据从多铋化物核心吸电子的程度来控制和微调所得的{Bi}结构。

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