The three-dimensional configuration of the ester heterocycle is basically the same as that of the carbocycle. Compound: Bis(acetylacetonato)dioxomolybdenum(VI)(SMILESS: O=[Mo+2]12(O=C([CH-]C(C)=O1)C)(O=C([CH-]C(C)=O2)C)=O,cas:17524-05-9) is researched.Formula: C21H16N2. The article 《Impact of morphology on the oxygen evolution reaction of 3D hollow Cobalt-Molybdenum Nitride》 in relation to this compound, is published in Applied Catalysis, B: Environmental. Let’s take a look at the latest research on this compound (cas:17524-05-9).
The oxygen evolution reaction (OER) is an essential process for water electrolysis and to realize the scalability of renewable energy sources. In this work, a strategy is developed to fabricate anisotropic metallic Cobalt-Molybdenum Nitride materials combining hollow 3D structures and 2D nanosheets which result highly active OER electrocatalysts. The sample structure and morphol. is investigated to derive its formation process following the synthesis strategy relying on the ligand-metal interactions of metal-organic framework (ZIF-67 and Mo-aMOF). Three different sample morphologies with large sp. surface areas are obtained by changing the water and 2-methylimidazole contents. After ammonification in NH3, the morphologies and the sp. surface areas of the samples are preserved. The electronic structure can also be adjusted to regulate electron d. of Co and Mo by N-doping. These Co-Mo binary metals offer a viable way for realizing the electronic transfer between the different components, as demonstrated by XPS. Taking advantage from the above features, the as-obtained electrocatalyst exhibits a high catalytic activity and long-term cyclic stability for OER with low overpotential (η10 is 294 mV).
《Impact of morphology on the oxygen evolution reaction of 3D hollow Cobalt-Molybdenum Nitride》 provides a strategy for the preparation of materials with excellent comprehensive properties, which is conducive to broaden the application field of this compound(Bis(acetylacetonato)dioxomolybdenum(VI))Product Details of 17524-05-9.
Reference:
Nitrile – Wikipedia,
Nitriles – Chemistry LibreTexts