In this research article, we describe the structure, spectroscopy, and reactivity of a family of copper complexes bearing bidentate redox-active ligands that contain H-bonding donor groups. Single-crystal X-ray crystallography shows that these tetracoordinate complexes are stabilized by intramolecular H-bonding interactions between the two ligand scaffolds. Interestingly, the Cu complexes undergo multiple reversible oxidation–reduction processes associated with the metal ion (CuI, CuII, CuIII) and/or the o-phenyldiamido ligand (L2–, L•–, L). Moreover, some of the CuII complexes catalyze the aerobic oxidation of alcohols to aldehydes (or ketones) at room temperature. Our extensive mechanistic analysis suggests that the dehydrogenation of alc...
Cooperative catalysis between Cu<sup>II</sup> and redox-active organic cocatalysts is a key feature ...
The metabolism of short chain alcohols is a vital process for various organisms, not just ethanol co...
Two new monomeric Cu(II) alkoxide complexes were prepared and fully characterized as models for int...
In this research article, we describe the structure, spectroscopy, and reactivity of a family of cop...
Density functional theory reveals the detailed mechanism of alcohol oxidation by a model copper comp...
Metalloenzymes, as natural catalysts, can break a reaction with high activation energy to multiple s...
The reductive activation of dioxygen, which is often coupled to other processes such as substrate hy...
Catalytic oxidation mediated by bimetallic complexes is a rapidly expanding area of chemistry due to...
Within the active sites of metalloenzymes the timely transfer of protons and electrons to the approp...
Synthetic bioinorganic chemistry has played a crucial role in the understanding of fundamental aspec...
We have investigated the reaction mechanism of the selective aerobic oxidation of primary alcohols i...
Abstract: Radical copper oxidases (including the fungal enzymes galactose oxidase and glyoxal oxidas...
Here, we disclose a new copper(I)-Schiff base complex series for selective oxidation of primary alco...
Cooperative catalysis between Cu<sup>II</sup> and redox-active organic cocatalysts is a key feature ...
The metabolism of short chain alcohols is a vital process for various organisms, not just ethanol co...
Two new monomeric Cu(II) alkoxide complexes were prepared and fully characterized as models for int...
In this research article, we describe the structure, spectroscopy, and reactivity of a family of cop...
Density functional theory reveals the detailed mechanism of alcohol oxidation by a model copper comp...
Metalloenzymes, as natural catalysts, can break a reaction with high activation energy to multiple s...
The reductive activation of dioxygen, which is often coupled to other processes such as substrate hy...
Catalytic oxidation mediated by bimetallic complexes is a rapidly expanding area of chemistry due to...
Within the active sites of metalloenzymes the timely transfer of protons and electrons to the approp...
Synthetic bioinorganic chemistry has played a crucial role in the understanding of fundamental aspec...
We have investigated the reaction mechanism of the selective aerobic oxidation of primary alcohols i...
Abstract: Radical copper oxidases (including the fungal enzymes galactose oxidase and glyoxal oxidas...
Here, we disclose a new copper(I)-Schiff base complex series for selective oxidation of primary alco...
Cooperative catalysis between Cu<sup>II</sup> and redox-active organic cocatalysts is a key feature ...
The metabolism of short chain alcohols is a vital process for various organisms, not just ethanol co...
Two new monomeric Cu(II) alkoxide complexes were prepared and fully characterized as models for int...