推荐产品
化驗
95%
形狀
powder or crystals
反應適用性
reaction type: C-C Bond Formation
reagent type: catalyst
reaction type: C-H Activation
mp
145 °C
儲存溫度
−20°C
應用
This 2-pyridone ligand developed in the laboratory of Jin-Quan Yu binds to palladium and accelerates non-directed C-H functionalization. Developed for C-H olefination and carboxylation with arene as the limiting reagent, the Wang-Yu ligand enables diversification of drugs, synthetic intermediates, and other bioactive small molecules.
儲存類別代碼
11 - Combustible Solids
水污染物質分類(WGK)
WGK 3
閃點(°F)
Not applicable
閃點(°C)
Not applicable
Direct perfluoroalkylation including trifluoromethylation of aromatics with perfluoro carboxylic acids mediated by xenon difluoride.
The Journal of Organic Chemistry, 53 (19), 4582?4585-4582?4585 (1988)
Nature communications, 8, 14353-14353 (2017-02-07)
Catalytic oxidative C-H bond functionalization reactions that proceed without requiring stoichiometric amounts of external oxidants or pre-functionalized oxidizing reagents could maximize the atom- and step-economy in chemical syntheses. However, such a transformation remains elusive. Here, we report that a photo-driven
Nature, 551(7681), 489-493 (2017-11-24)
The directed activation of carbon-hydrogen bonds (C-H) is important in the development of synthetically useful reactions, owing to the proximity-induced reactivity and selectivity that is enabled by coordinating functional groups. Palladium-catalysed non-directed C-H activation could potentially enable further useful reactions
Angewandte Chemie (International ed. in English), 56(18), 5125-5129 (2017-04-04)
Meta-C-H functionalization of benzylamines has been developed using a PdII /transient mediator strategy. Using 2-pyridone ligands and 2-carbomethoxynorbornene (NBE-CO2 Me) as the mediator, arylation, amination, and chlorination of benzylamines are realized. This protocol features a broad substrate scope and is
相关内容
The Yu program centers around the discovery of catalytic carbon–carbon and carbon–heteroatom bond forming reactions based on C–H activation. Target transformations are selected to enable 1) the use of simple and abundant starting materials such as aliphatic acids, amines and alcohols, and 2) disconnections that drastically shorten the synthesis of a drug molecule or a major class of biologically active compounds.
我们的科学家团队拥有各种研究领域经验,包括生命科学、材料科学、化学合成、色谱、分析及许多其他领域.
联系技术服务部门