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Redox noninnocence of carbene ligands: Carbene radicals in (Catalytic) C-C bond formation

机译:卡宾配体的氧化还原无毒度:(催化)C-C键形成中的碳自由基

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In this Forum contribution, we highlight the radical-type reactivities of one-electron-reduced Fischer-type carbenes. Carbene complexes of group 6 transition metals (Cr, Mo, and W) can be relatively easily reduced by an external reducing agent, leading to one-electron reduction of the carbene ligand moiety. This leads to the formation of "carbene-radical" ligands, showing typical radical-type reactivities. Fischer-type carbene ligands are thus clearly redox-active and can behave as so-called "redox noninnocent ligands". The "redox noninnocence" of Fischer-type carbene ligands is most clearly illustrated at group 9 transition metals in the oxidation state II+ (Co~(II), Rh~(II), and Ir~(II)). In such carbene complexes, the metal effectively reduces the carbene ligand by one electron in an intramolecular redox process. As a result, the thus formed "carbene radicals" undergo a variety of radical-type C-C and C-H bond formations. The redox noninnocence of Fischer-type carbene ligands is not just a chemical curiosity but, in fact, plays an essential role in catalytic cyclopropanation reactions by cobalt(II) porphyrins. This has led to the successful development of new chiral cobalt(II) porphyrins as highly effective catalysts for asymmetric cyclopropanation with unprecedented reactivity and stereocontrol. The redox noninnocence of the carbene intermediates results in the formation of carbene-radical ligands with nucleophilic character, which explains their effectiveness in the cyclopropanation of electron-deficient olefins and their reduced tendency to mediate carbene dimerization. To the best of our knowledge, this represents the first example in which the redox noninnocence of a reacting ligand plays a key role in a catalytic organometallic reaction. This Forum contribution ends with an outlook on further potential applications of one-electron-activated Fischer-type carbenes in new catalytic reactions.
机译:在该论坛的贡献中,我们重点介绍了单电子还原的菲舍尔型碳烯的自由基型反应性。第6族过渡金属(Cr,Mo和W)的卡宾络合物可以通过外部还原剂相对容易地还原,从而导致卡宾配体部分的单电子还原。这导致形成“卡宾基”配体,表现出典型的自由基型反应性。因此,费歇尔型卡宾配体显然具有氧化还原活性,并且可以表现为所谓的“氧化还原非纯配体”。 Fischer型卡宾配体的“氧化还原无毒”在氧化态II +(Co〜(II),Rh〜(II)和Ir〜(II))的第9组过渡金属上最清楚地显示。在这种卡宾配合物中,金属在分子内氧化还原过程中通过一个电子有效地还原卡宾配体。结果,如此形成的“卡宾自由基”经历了各种自由基类型的C-C和C-H键形成。 Fischer型卡宾配体的氧化还原无毒不仅是化学上的好奇心,而且实际上在钴(II)卟啉催化环丙烷化反应中起着至关重要的作用。这导致了新型手性钴(II)卟啉的成功开发,它是非对称环丙烷化的高效催化剂,具有空前的反应性和立体控制能力。卡宾中间体的氧化还原非纯导致形成具有亲核特性的卡宾-自由基配体,这解释了它们在缺电子烯烃的环丙烷化中的有效性以及降低的介导卡宾二聚化的趋势。据我们所知,这是第一个例子,其中反应性配体的氧化还原非纯在催化有机金属反应中起关键作用。该论坛的贡献以对单电子活化的费歇尔型碳烯在新的催化反应中的进一步潜在应用的前景作为结尾。

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