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胶束对吲哚在水中进行高效选择性单氟化反应的屏蔽效应

Shielding Effect of Micelle for Highly Effective and Selective Monofluorination of Indoles in Water.

作者信息

Bora Pranjal P, Bihani Manisha, Plummer Scott, Gallou Fabrice, Handa Sachin

机构信息

Department of Chemistry, University of Louisville, 2320 S. Brook St., Louisville, KY, 40292, USA.

Novartis Institutes for BioMedical Research, 250 Massachusetts Ave, Cambridge, MA, 02139, USA.

出版信息

ChemSusChem. 2019 Jul 5;12(13):3037-3042. doi: 10.1002/cssc.201900316. Epub 2019 Mar 26.

Abstract

Highly selective direct monofluorination of indoles and arenes was developed through an approach that allows site-specific solubility of substrate and fluorine source in the micelle. This approach was highly selective for a broad range of substrates with excellent functional group tolerance. Differences in binding constant and solubility of indoles and arenes in the micelle allowed the fine-tuning of selectivity. Control experiments suggested a radical pathway and provided insight into the role of micelles of the environmentally benign amphiphile PS-750-M. Dynamic light scattering experiments strongly indicated the site-specific solubility of the substrate and fluorine source. The methodology was successfully adapted to gram scale, and the E-factor established from a recycle study indicated that the process is environmentally responsible and sustainable.

摘要

通过一种使底物和氟源在胶束中具有位点特异性溶解性的方法,实现了吲哚和芳烃的高选择性直接单氟化。该方法对广泛的底物具有高度选择性,对官能团具有出色的耐受性。吲哚和芳烃在胶束中的结合常数和溶解度差异使得选择性能够得到微调。对照实验表明了自由基途径,并深入了解了环境友好型两亲物PS-750-M胶束的作用。动态光散射实验有力地表明了底物和氟源的位点特异性溶解性。该方法成功地扩大到克级规模,循环研究确定的E因子表明该过程对环境负责且可持续。

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