质子耦合电子转移
化学
电子转移
键裂
氧化还原
反应性(心理学)
立体化学
金属
计算化学
光化学
有机化学
催化作用
医学
病理
替代医学
作者
Suman K. Barman,Meng-Yin Yang,Trenton H. Parsell,Michael T. Green,A. S. Borovik
标识
DOI:10.1073/pnas.2108648118
摘要
The oxidation of substrates via the cleavage of thermodynamically strong C-H bonds is an essential part of mammalian metabolism. These reactions are predominantly carried out by enzymes that produce high-valent metal-oxido species, which are directly responsible for cleaving the C-H bonds. While much is known about the identity of these transient intermediates, the mechanistic factors that enable metal-oxido species to accomplish such difficult reactions are still incomplete. For synthetic metal-oxido species, C-H bond cleavage is often mechanistically described as synchronous, proton-coupled electron transfer (PCET). However, data have emerged that suggest that the basicity of the M-oxido unit is the key determinant in achieving enzymatic function, thus requiring alternative mechanisms whereby proton transfer (PT) has a more dominant role than electron transfer (ET). To bridge this knowledge gap, the reactivity of a monomeric Mn
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