首页> 外文期刊>The Journal of Organic Chemistry >Facile nucleophilic fluorination reactions using tert-alcohols as a reaction medium: Significantly enhanced reactivity of alkali metal fluorides and improved selectivity
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Facile nucleophilic fluorination reactions using tert-alcohols as a reaction medium: Significantly enhanced reactivity of alkali metal fluorides and improved selectivity

机译:使用叔醇作为反应介质的容易的亲核氟化反应:显着提高了碱金属氟化物的反应性并提高了选择性

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[GRAPHICS] Although protic solvents are generally not preferred for nucleophilic displacement reactions because of their partial positive charge and hydrogen-bonding capacity that solvate the nucleophile and reduce its reactivity, we, recently reported a remarkably beneficial effect of using tertiary alcohols as a reaction media for nucleophilic fluorination with alkali metal fluorides, as well as fluorine-18 radiolabeling with [F-18]fluoride ion for the preparation of PET radiopharmaceuticals. In this work, we investigate further the influence of the tert-alcohol reaction medium for nucleophilic fluorination with alkali metal fluorides by studying various interactions among tert-alcohols, the alkali metal fluoride (CsF), and the sulfonyloxy substrate. Factors such as hydrogen bonding between CsF and the tert-alcohol solvent, the formation of a tert-alcohol solvated fluoride, and hydrogen bonding between the sulfonate leaving group and the tert-alcohol appear to contribute to the dramatic increase in the rate of the nucleophilic fluorination reaction in the absence of any kind of catalyst. We found that fluorination of 1-(2-mesyloxyethyl)naphthalene (5) and N-5-bromopentanoyl-3,4-dimethoxyaniline (8) with Bu4N+F- in a tert-alcohol afforded the corresponding fluoro products in much higher yield than obtained by the conventional methods using dipolar aprotic solvents. The protic medium also suppresses formation of byproducts, such as alkenes, ethers, and cyclic adducts.
机译:尽管质子溶剂由于其部分正电荷和氢键合能力可亲核亲核试剂并降低其反应性,因此通常不优选用于亲核取代反应,但我们最近报道了使用叔醇作为反应介质的显着有益效果用碱金属氟化物进行亲核氟化,以及用[F-18]氟离子对18氟进行放射性标记,以制备PET放射性药物。在这项工作中,我们通过研究叔醇,碱金属氟化物(CsF)和磺酰氧基底物之间的各种相互作用,进一步研究叔醇反应介质对与碱金属氟化物进行亲核氟化的影响。诸如CsF和叔醇溶剂之间的氢键,叔醇溶剂化氟化物的形成以及磺酸盐离去基团和叔醇之间的氢键等因素似乎有助于亲核速率的急剧增加在没有任何催化剂的情况下进行氟化反应。我们发现,在叔醇中用Bu4N + F-氟化1-(2-甲氧基氧乙基)萘(5)和N-5-溴戊酰基-3,4-二甲氧基苯胺(8)可以以更高的收率得到相应的氟化产物。与使用偶极非质子溶剂的常规方法所获得的相比。质子介质还抑制副产物的形成,例如烯烃,醚和环状加合物。

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