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The Green Electrochemical Synthesis of Periodate

机译:高碘酸盐的绿色电化学合成

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摘要

High‐grade periodate is relatively expensive, but is required for many sensitive applications such as the synthesis of active pharmaceutical ingredients. These high costs originate from using lead dioxide anodes in contemporary electrochemical methods and from expensive starting materials. A direct and cost‐efficient electrochemical synthesis of periodate from iodide, which is less costly and relies on a readily available starting material, is reported. The oxidation is conducted at boron‐doped diamond anodes, which are durable, metal‐free, and nontoxic. The avoidance of lead dioxide ultimately lowers the cost of purification and quality assurance. The electrolytic process was optimized by statistical methods and was scaled up in an electrolysis flow cell that enhanced the space–time yields by a cyclization protocol. An LC‐PDA analytical protocol was established enabling simple quantification of iodide, iodate, and periodate simultaneously with remarkable precision.
机译:高级高碘酸盐相对昂贵,但是对于许多敏感应用(例如活性药物成分的合成)是必需的。这些高成本源自当代电化学方法中使用二氧化铅阳极和昂贵的起始原料。据报道,由碘化物直接,经济高效地从碘化物电化学合成高碘酸盐,其成本较低且依赖于容易获得的起始原料。氧化在耐用,无金属且无毒的掺硼金刚石阳极上进行。避免二氧化铅最终降低了纯化和质量保证的成本。电解过程通过统计方法进行了优化,并在电解流通池中进行了放大,该电解池通过环化方案提高了时空产率。建立了LC-PDA分析规程,可同时以极高的精度对碘化物,碘酸盐和高碘酸盐进行简单定量。

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