F-18化学中的微波:怪癖和调整。

S Stone-Elander, N Elander, J O Thorell, A Fredriksson
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引用次数: 12

摘要

自20世纪80年代末以来,微波介质加热已被用于加速化学转化,也用于正电子发射断层扫描的放射性标记示踪剂。除了更短的反应时间外,对于需要在高温下加热的极性组分的反应,还获得了更高的收率,更清洁的产品混合物和更好的可重复性。微波化学中使用的条件可能与传统加热中的条件有很大不同。了解影响电磁场与样品相互作用的因素对于微波加热的成功实施至关重要。这里讨论了这些参数,并以氟-18放射性标号举例说明。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microwaving in F-18 chemistry: quirks and tweaks.

Since the late 1980s, microwave dielectric heating has been used to speed up chemical transformations, also in radiolabeling tracers for positron emission tomography. In addition to shorter reaction times, higher yields, cleaner product mixtures and improved reproducibility have also been obtained for reactions involving polar components that require heating at elevated temperatures. The conditions used in microwave chemistry can differ considerably from those in conventional heating. Understanding the factors that influence the interaction of the electromagnetic field with the sample is critical for the successful implementation of microwave heating. These parameters are discussed here and exemplified with radiolabelings with fluorine-18.

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