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钌(ii)催化的具有生物吸引力的 N-芳基异吲哚啉酮的选择性 C(sp2)-H 键苯并氧化反应。

Ruthenium(ii)-catalysed selective C(sp)-H bond benzoxylation of biologically appealing N-arylisoindolinones.

机构信息

Univ Rennes, CNRS, ISCR - UMR6226, F-35000 Rennes, France.

出版信息

Org Biomol Chem. 2019 Aug 28;17(32):7517-7525. doi: 10.1039/c9ob01122f. Epub 2019 Aug 1.

Abstract

Site- and regio-selective aromatic C-H bond benzoxylations were found to take place using biologically appealing N-arylisoindolinones under ruthenium(ii) catalysis in the presence of (hetero)aromatic carboxylic acid derivatives as coupling partners. Besides the presence of two potential C(sp)-H sites available for functionalization in the substrates, exclusive ortho selectivity was achieved in the phenyl ring attached to the nitrogen atom. Notably, the reactions occurred in a selective manner as only mono-functionalized products were formed and they tolerated a large number of functional chemical groups. The ability of the cyclic tertiary amide within the isoindolinone skeleton to act as a weak directing group in order to accommodate six-membered ring ruthenacycle intermediates appears to be the key to reach such high levels of selectivity. In contrast, the more sterically demanding cyclic imides were unreactive under identical reaction conditions.

摘要

在钌(ii)催化下,使用生物上可接受的 N-芳基异吲哚啉酮,并在(杂)芳基羧酸衍生物作为偶联伙伴的存在下,发现了进行位置和区域选择性芳香族 C-H 键苯并氧化反应。除了底物中存在两个可供功能化的潜在 C(sp)-H 位点外,还在与氮原子相连的苯基环上实现了独特的邻位选择性。值得注意的是,反应以选择性方式进行,仅形成单官能化产物,并且它们可以容忍大量官能团。异吲哚啉酮骨架中环状叔酰胺作为弱导向基团的能力,以容纳六元环钌环中间体,似乎是达到这种高选择性的关键。相比之下,在相同的反应条件下,空间位阻要求更高的环状亚酰胺是不反应的。

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