联轴节(管道)
物理
材料科学
计算机科学
化学
工作(物理)
加速度
特征(语言学)
鉴定(生物学)
噪音(视频)
作者
Jingyuan Liu,An Lin,Cheng Ma,Chonghuan Zhang,Chenxi Yang,Yan Zhang,Cuitong Zhou,Kai Xue,Lebin Su,Kuangbiao Liao
出处
期刊:JACS Au
[American Chemical Society]
日期:2026-05-22
卷期号:6 (6): 3176-3189
标识
DOI:10.1021/jacsau.6c00160
摘要
High Resolution Image Download MS PowerPoint Slide Carbamates constitute ubiquitous structural motifs across pharmaceuticals, agrochemicals, and materials, yet isocyanate-free strategies that accommodate sensitive functional groups remain underdeveloped. We report an efficient ruthenium-catalyzed C–O coupling of dioxazolones with phenols and alcohols that delivers carbamates under mild conditions with CO 2 as the sole byproduct. This transformation establishes dioxazolone-derived nitrenes as a general platform for carbamate synthesis, exhibiting a broad substrate scope, functional-group tolerance, and scalability. Reaction development employed a preregistered, high-throughput workflow integrating machine learning. A model trained on phenolic substrates prospectively predicted reaction yields for unseen alcohol substrates, enabling direct prioritization and translation from microscale screening to preparative synthesis without substrate-specific reoptimization. This approach facilitated the late-stage functionalization of bioactive molecules and gram-scale preparation. Mechanistic studies and DFT support a novel Ru–nitrenoid pathway with Curtius-type rearrangement, where C–O bond formation is rate-determining. This work establishes both a practical catalytic platform for carbamate synthesis and a prospective strategy for integrating data-driven tools into the synthetic methodology.
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