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选择性偕二氟分子的合成;通过化学酶促反应合成手性偕二氟环丙烷以及通过自由基反应合成偕二氟化合物。

Synthesis of Selectively gem-Difluorinated Molecules; Chiral gem-Difluorocyclopropanes via Chemo-Enzymatic Reaction and gem-Difluorinated Compounds via Radical Reaction.

作者信息

Itoh Toshiyuki, Hayase Shuichi, Nokami Toshiki

机构信息

Toyota Physical and Chemical Research Institute, Emeritus Professor of Tottori University, 41-1 Yokomichi, 480-1192, Nagakute city, Aichi, Japan.

Department of Chemistry and Biotechnology, Tottori University, 4-101 Koyama-minami, 680-8552, Tottori, Japan.

出版信息

Chem Rec. 2023 Sep;23(9):e202300028. doi: 10.1002/tcr.202300028. Epub 2023 Mar 22.

Abstract

The incorporation of fluorine atoms into an organic compound can alter the chemical reactivity or biological activity of the resulting compound due to the strong electron withdrawing nature of the fluorine atom. We have synthesized many original gem-difluorinated compounds and described the results in four sections. The first section describes the synthesis of optically active-gem-difluorocyclopropanes via the chemo-enzymatic reaction; we applied these compounds to liquid crystalline molecules, then further discovered a potent DNA cleavage activity for the gem-difluorocyclopropane derivatives. The second section describes the synthesis of selectively gem-difluorinated compounds via a radical reaction; we synthesized fluorinated analogues of a sex pheromone of the male African sugarcane borer, Eldana saccharina, and used the compounds as proof for investigating the origin of pheromone molecule recognition on the receptor protein. The third involves the synthesis of 2,2-difluorinated-esters by visible light-driven radical addition of 2,2-difluoroacetate with alkenes or alkynes in the presence of an organic pigment. The last section describes the synthesis of gem-difluorinated compounds via the ring-opening of gem-difluorocyclopropanes. We further developed a novel method of synthesizing gem-difluorohomoallylic alcohols via the ring-opening of gem-difluorocyclopropane and aerobic oxidation by photo-irradiation in the presence of an organic pigment. Since gem-difluorinated compounds that were prepared by the present method have two olefinic moieties with a different reactivity at the terminal position, we accomplished the synthesis of four types of gem-difluorinated cyclic alkenols via the ring-closing-metathesis (RCM) reaction.

摘要

由于氟原子具有很强的吸电子性,将氟原子引入有机化合物中会改变所得化合物的化学反应性或生物活性。我们合成了许多新颖的偕二氟化合物,并分四个部分描述了研究结果。第一部分描述了通过化学酶促反应合成光学活性偕二氟环丙烷;我们将这些化合物应用于液晶分子,随后进一步发现偕二氟环丙烷衍生物具有强大的DNA切割活性。第二部分描述了通过自由基反应合成选择性偕二氟化合物;我们合成了雄性非洲甘蔗螟虫(Eldana saccharina)性信息素的氟化类似物,并将这些化合物用作研究受体蛋白上信息素分子识别起源的证据。第三部分涉及在有机颜料存在下,通过2,2 - 二氟乙酸酯与烯烃或炔烃的可见光驱动自由基加成反应合成2,2 - 二氟酯。最后一部分描述了通过偕二氟环丙烷的开环反应合成偕二氟化合物。我们进一步开发了一种新颖的方法,即在有机颜料存在下,通过偕二氟环丙烷的开环反应和光照射下的需氧氧化反应合成偕二氟高烯丙醇。由于通过本方法制备的偕二氟化合物在末端位置具有两个反应性不同的烯烃部分,我们通过闭环复分解(RCM)反应完成了四种类型偕二氟环烯醇的合成。

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