Moretti, Giuliano et al. published their research in Surface and Interface Analysis in 2022 | CAS: 20427-59-2

Cuprichydroxide (cas: 20427-59-2) belongs to copper catalysts. Copper has continued to be one of the most utilized and important transition metal catalysts in synthetic organic chemistry. Copper nanoparticles can catalyze the Ullmann coupling reaction in a wide range of applications.Application of 20427-59-2

On the Auger parameter of Cu(II) compounds was written by Moretti, Giuliano;Beck, Horst P.. And the article was included in Surface and Interface Analysis in 2022.Application of 20427-59-2 This article mentions the following:

The Auger parameter (AP) of Cu(I) halides follow the trend: α’Cu(s) > α’CuI > α’CuBr > α’CuCl > > α’Cu(g), in agreement with the electronic polarizabilities of the nearest-neighbor ligands of the core-ionized Cu(I) ion. On the contrary, the AP of Cu(II) halides and other Cu(II) compounds are close to that of copper metal. We extend our simple AP semiempirical model, published in this journal in 2019, to try to understand the unusual results reported for the Cu(II) compounds In the experiment, the researchers used many compounds, for example, Cuprichydroxide (cas: 20427-59-2Application of 20427-59-2).

Cuprichydroxide (cas: 20427-59-2) belongs to copper catalysts. Copper has continued to be one of the most utilized and important transition metal catalysts in synthetic organic chemistry. Copper nanoparticles can catalyze the Ullmann coupling reaction in a wide range of applications.Application of 20427-59-2

Referemce:
Copper catalysis in organic synthesis – NCBI,
Special Issue “Fundamentals and Applications of Copper-Based Catalysts”