化学
卡宾
过渡金属
计算化学
光化学
组合化学
有机化学
催化作用
作者
Ze‐Jie Lv,Kim A. Eisenlohr,Robert Naumann,Thomas Reuter,Hendrik Verplancke,Serhiy Demeshko,Regine Herbst‐Irmer,Katja Heinze,Max C. Holthausen,Sven Schneider
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2024-08-05
卷期号:16 (11): 1788-1793
被引量:17
标识
DOI:10.1038/s41557-024-01597-8
摘要
The extraordinary advances in carbene (R1-C-R2) chemistry have been fuelled by strategies to stabilize the electronic singlet state via π interactions. In contrast, the lack of similarly efficient approaches to obtain authentic triplet carbenes with appreciable lifetimes beyond cryogenic temperatures hampers their exploitation in synthesis and catalysis. Transition-metal substitution represents a potential strategy, but metallocarbenes (M-C-R) usually represent high-lying excited electronic configurations of the well-established carbyne complexes (M≡C-R). Here we report the synthesis and characterization of triplet metallocarbenes (M-C-SiMe3, M = PdII, PtII) that are persistent beyond cryogenic conditions, and their selective reactivity towards carbene C-H insertion and carbonylation. Bond analysis reveals significant stabilization by spin-polarized push-pull interactions along both π-bonding planes, which fundamentally differs from bonding in push-pull singlet carbenes. This bonding model, thus, expands key strategies for stabilizing the open-shell carbene electromers and closes a conceptual gap towards carbyne complexes.
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