Maity Sandeepan, Flowers Robert A, Hoz Shmaryahu
Department of Chemistry, Lehigh University, 6 E Packer Ave., Bethlehem, Pennsylvania-, 18015, USA.
Department of Chemistry, Bar-Ilan University, Geha Road, Ramat Gan-, 52900, Israel.
Chemistry. 2017 Dec 1;23(67):17070-17077. doi: 10.1002/chem.201703394. Epub 2017 Nov 6.
Ligands that coordinate to SmI through oxygen are prevalent in the literature and make up a significant portion of additives employed with the reagent to perform reactions of great synthetic importance. In the present work a series of spectroscopic, calorimetric and kinetic studies demonstrate that nitrogen-based analogues of many common additives have a significantly higher affinity for Sm than the oxygen-based counterparts. In addition, electrochemical experiments show that nitrogen-based ligands significantly enhance the reducing power of SmI . Overall, this work demonstrates that the use of nitrogen-based ligands provides a useful alternative approach to enhance the reactivity of reductants based on Sm .
通过氧与二碘化钐配位的配体在文献中很常见,并且在与该试剂一起用于进行具有重大合成意义的反应的添加剂中占很大比例。在本工作中,一系列光谱、量热和动力学研究表明,许多常见添加剂的氮基类似物对钐的亲和力明显高于相应的氧基类似物。此外,电化学实验表明,氮基配体显著增强了二碘化钐的还原能力。总体而言,这项工作表明,使用氮基配体为提高基于钐的还原剂的反应性提供了一种有用的替代方法。