Sorbelli Diego, Belpassi Leonardo, Belanzoni Paola
Department of Chemistry, Biology and Biotechnology, University of Perugia Via Elce di Sotto, 8 - 06123 Perugia Italy
CNR Institute of Chemical Science and Technologies "Giulio Natta" (CNR-SCITEC) Via Elce di Sotto, 8 - 06123 Perugia Italy
Chem Sci. 2022 Mar 31;13(16):4623-4634. doi: 10.1039/d2sc00630h. eCollection 2022 Apr 20.
The electronic properties of aluminyl anions have been reported to be strictly related to those of carbenes, which are well-known to be easily tunable selected structural modifications imposed on their backbone. Since peculiar reactivity of gold-aluminyl complexes towards carbon dioxide has been reported, leading to insertion of CO into the Au-Al bond, in this work the electronic structure and reactivity of Au-Al complexes with different aluminyl scaffolds have been systematically studied and compared to carbene analogues. The analyses reveal that, instead, aluminyls and carbenes display a very different behavior when bound to gold, with the aluminyls forming an electron-sharing and weakly polarized Au-Al bond, which turns out to be poorly modulated by structural modifications of the ligand. The reactivity of gold-aluminyl complexes towards CO shows, both qualitatively and quantitatively, similar reaction mechanisms, reflecting the scarce tunability of their electronic structure and bond nature. This work provides further insights and perspectives on the properties of the aluminyl anions and their behavior as coordination ligands.
据报道,铝烯阴离子的电子性质与卡宾的电子性质密切相关,众所周知,卡宾的电子性质很容易通过对其主链进行特定的结构修饰来调节。由于已有报道称金 - 铝烯配合物对二氧化碳具有特殊的反应性,会导致CO插入Au - Al键中,因此在本工作中,我们系统地研究了具有不同铝烯骨架的Au - Al配合物的电子结构和反应性,并将其与卡宾类似物进行了比较。分析结果表明,相反,当与金结合时,铝烯和卡宾表现出非常不同的行为,铝烯形成电子共享且弱极化的Au - Al键,结果表明该键受配体结构修饰的调节作用较差。金 - 铝烯配合物对CO的反应性在定性和定量方面都显示出相似的反应机制,这反映了它们电子结构和键性质的可调性较差。这项工作为铝烯阴离子的性质及其作为配位配体的行为提供了进一步的见解和观点。