Scale-up of Sodium Persulfate Mediated, Nitroxide Catalyzed OxidativeFunctionalization Reactions

化学 过硫酸盐 一氧化氮介导的自由基聚合 表面改性 催化作用 过硫酸钠 氧化磷酸化 比例(比率) 组合化学 光化学 有机化学 生物化学 共聚物 物理 量子力学 物理化学 聚合物 自由基聚合
作者
Katrina E. Doherty,Arturo León Sandoval,Fabrizio Politano,Mason L. Witko,Chelsea M. Schroeder,William P. Brydon,Geoffrey P. Wadey,Kristiane K. Ohlhorst,Nicholas E. Leadbeater
出处
期刊:Current Organic Synthesis [Bentham Science Publishers]
卷期号:21 (7): 941-946
标识
DOI:10.2174/1570179421666230831105337
摘要

Background: Oxidation is a valuable tool in preparative organic chemistry. Oxoam-monium salts and nitroxides have proven valuable as reagents and catalysts in this endeavor. Objective: The objective of this study is to scale up the oxidative amidation, ester formation, and nitrile formation using nitroxide as an organocatalyst. Methods: Oxidative functionalization reactions were scaled from the 1 mmol to the 1 mole level. Sodium persulfate was used as the primary oxidant, and a nitroxide was employed as a catalyst. The products of the reactions were isolated in analytically pure form by extraction with no need for column chromatography. Results: The oxidative amidation and esterification of aldehydes can be scaled up from 1 mmol to 1 mole effectively, with comparable product yields being obtained at each increment. This work shows that conditions developed on a small scale can be transferred to a larger scale without reop-timization. The oxidative functionalization of aldehydes to prepare nitriles is not amenable to direct scale-up due to the concomitant formation of significant quantities of the corresponding carboxylic acid, thereby compromising the product yield. Conclusion: Two of the three oxidative transformations studied here can be scaled up successfully from the 1 mmol to the 1 mole level.
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