均分解
硝化作用
试剂
化学
激进的
电泳剂
有机合成
离解(化学)
键离解能
组合化学
有机化学
计算化学
硝基化合物
光化学
取代反应
反应机理
化学稳定性
亲核细胞
键裂
无机化学
作者
Lu Yu,Yao Li,Xiao-Song Xue
摘要
ABSTRACT The ability of organic nitrating reagents to release nitro radicals underpins both classical and emerging radical‐based nitration strategies. Herein, we report a comprehensive computational study of 55 representative nitrating reagents to quantify their intrinsic nitro‐radical donating ability. Homolytic R─NO 2 bond dissociation enthalpies (BDEs) were computed to establish a thermodynamic scale for nitro‐radical release, providing quantitative insight into reagent stability and isolability. In parallel, single‐electron reduction potentials were computed to evaluate the propensity of these reagents to undergo single‐electron transfer (SET)‐triggered radical formation. Our results reveal that low BDE values are associated with facile nitro‐radical release and poor isolability, whereas relatively high reduction potentials identify reagents capable of SET activation even when direct homolysis is energetically disfavored. By integrating these metrics, we uncover latent radical potential in several classical electrophilic nitrating reagents and identify promising candidates for future SET‐enabled nitro‐radical chemistry.
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