首页> 外文期刊>Journal of Labelled Compounds and Radiopharmaceuticals >Baeyer‐Villiger oxidation tuned to chemoselective conversion of non‐activated [ 18 18 F]fluorobenzaldehydes to [ 18 18 F]fluorophenols
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Baeyer‐Villiger oxidation tuned to chemoselective conversion of non‐activated [ 18 18 F]fluorobenzaldehydes to [ 18 18 F]fluorophenols

机译:Baeyer-Villiger氧化调整为非激活[18 18 f]氟苯甲醛的化学选择转化为[18 18 f]氟苯酚

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A reaction pathway via oxidation of [ 18 F]fluorobenzaldehydes offers a very useful tool for the no‐carrier‐added radiosynthesis of [ 18 F]fluorophenols, a structural motive of several potential radiopharmaceuticals. A considerably improved chemoselectivity of the Baeyer‐Villiger oxidation (BVO) towards phenols was achieved, employing 2,2,2‐trifluoroethanol as reaction solvent in combination with Oxone or m ‐CPBA as oxidation agent. The studies showed the necessity of H 2 SO 4 addition, which appears to have a dual effect, acting as catalyst and desiccant. For example, 2‐[ 18 F]fluorophenol was obtained with a RCY of 97% under optimised conditions of 80°C and 30‐minute reaction time. The changed performance of the BVO, which is in agreement with known reaction mechanisms via Criegee intermediates, provided the best results with regard to radiochemical yield (RCY) and chemoselectivity, i.e. formation of [ 18 F]fluorophenols rather than [ 18 F]fluorobenzoic acids. Thus, after a long history of the BVO, the new modification now allows an almost specific formation of phenols, even from electron‐deficient benzaldehydes. Further, the applicability of the tuned, chemoselective BVO to the n.c.a. level and to more complex compounds was demonstrated for the products n.c.a. 4‐[ 18 F]fluorophenol (RCY 95%; relating to 4‐[ 18 F]fluorobenzaldehyde) and 4‐[ 18 F]fluoro‐ m ‐tyramine (RCY 32%; relating to [ 18 F]fluoride), respectively.
机译:通过氧化[18 f]氟苯甲醛的反应途径为[18 f]氟苯酚的无载体添加的辐射合成,是几种潜在放射性药物的结构动机提供了非常有用的工具。实现了Baeyer-Villiger氧化(BVO)的大大改善的化学选择性,达到了酚醛酚,其用2,2,2-三氟乙醇作为反应溶剂与氧化剂组合,作为氧化剂。研究表明,H 2 SO 4的必要性,这似乎具有双重效果,其作为催化剂和干燥剂。例如,在80℃和30分钟的反应时间的优化条件下,在Rcy为97%的RCy获得2- [18f]氟苯酚。通过Criegee中间体与已知的反应机制一致的BVO的改变性能提供了关于放射化学产率(Rcy)和化学选择性的最佳结果,即形成[18 f]氟苯酚而不是[18 f]氟苯甲酸。因此,在BVO的历史悠久之后,即使来自电子缺乏苯甲醛,新改性现在允许几乎特异地形成酚。此外,调节的化学选择性BVO对N.C.A的适用性。水平和更复杂的化合物被证明了N.C.A. 4- [18 f]氟苯酚(Rcy 95%;与4- [18 f]氟苯甲醛)和4- [18 f]氟 - m氨碱(Rcy 32%;与[18 f]氟化物有关)。

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