Development of a highly efficient three-dimensional covalent organic framework, designated TU-82-Fe, for the selective electrocatalytic reduction of nitrate pollutants into ammonia.
#Chemistry #MaterialsChemistry #ReticularChemistry #Electrocatalysis #sflorg
https://www.sflorg.com/2026/02/chm02062601.html
Turning Nitrate Pollution into Green Fuel: A 3D COF Enables Highly Efficient Ammonia Electrosynthesis

Researchers from Tohoku University and collaborating institutions have established a structural blueprint for deploying 3D COFs in electrocatalysis

🧪 Synthesizing solid catalysts is one thing, but for their application, they also need to undergo shaping or - in case of šŸ”Œ #electrocatalysis - deposition on electrodes. Such steps are sometimes underrated in academic #catalysis research.

šŸ‘‰ Find out more on the strong effects of different binder additives on the wetting behavior of electrodes for #watersplitting in our recent collaborative work with the Particle Science and Technology Group of Doris Segets at @unidue.bsky.social.

šŸ”— https://doi.org/10.1021/acsami.5c15573

šŸ¤ We are very happy to provide our powder catalysts for such important studies that open the door towards šŸƒ green applications. Thanks for the fruitful collaboration and special congrats to the first author Adarsh! šŸ‘

Magnetism meets chemistry—scientists flip atomic spin states to supercharge catalysts by 2,880%. #Electrocatalysis #MagneticField #AmmoniaRevolution

https://geekoo.news/magnetic-fields-unlock-hidden-power-in-single-atom-catalysts/

Magnetic Fields Unlock Hidden Power in Single-Atom Catalysts | Geekoo

A spin state switch triggered by magnetism boosts ammonia production by 2,880% in breakthrough catalyst study from Tohoku University.

Geekoo

Electrocatalytic Acetylene Semi-Hydrogenation with High Energy Efficiency:
Catalysts for a petroleum-independent strategy for ethylene production developed
https://www.chemistryviews.org/electrocatalytic-acetylene-semi-hydrogenation-with-high-energy-efficiency/

#electrocatalysis #sustainability #chemistry #chemistryviews #chemviews

Electrocatalytic Acetylene Semi-Hydrogenation with High Energy Efficiency - ChemistryViews

Catalysts for a petroleum-independent strategy for ethylene production

ChemistryViews

COā‚‚ Electroreduction to Ethylene Boosted by Crown Ethers:
Modification enhances the ethylene selectivity of copper-based metal–organic frameworks (MOFs)
https://www.chemistryviews.org/co2-electroreduction-to-ethylene-boosted-by-crown-ethers/

#co2rr #electrocatalysis #crownethers #chemistry #chemistryviews #chemviews

CO2 Electroreduction to Ethylene Boosted by Crown Ethers - ChemistryViews

Modification enhances the ethylene selectivity of copper-based metal–organic frameworks (MOFs)

ChemistryViews
Iron Porphyrinoid for the Electrochemical Reduction of CO2 - ChemistryViews

Methanol formed as a major product

ChemistryViews

Electrocatalyst for Nitrate Reduction to Ammonia

Selenium‐deficient FeSe2/Fe3O4 shows excellent electrochemical performance

https://www.chemistryviews.org/electrocatalyst-for-nitrate-reduction-to-ammonia/

#electrocatalysis #no3rr #chemistry #chemistryviews #chemviews

Electrocatalyst for Nitrate Reduction to Ammonia - ChemistryViews

Selenium‐deficient FeSe2/Fe3O4 shows excellent electrochemical performance

ChemistryViews

Niobium-Doped Tungsten Oxide Nanospheres for Hydrogen Evolution

Straightforward one-pot solvothermal approach gives an electrocatalyst with high activity

https://www.chemistryviews.org/niobium-doped-tungsten-oxide-nanospheres-for-hydrogen-evolution/

#hydrogenevolution #electrocatalysis #nanospheres #chemistry #chemistryviews #chemviews

Niobium-Doped Tungsten Oxide Nanospheres for Hydrogen Evolution - ChemistryViews

Straightforward one-pot solvothermal approach gives an electrocatalyst with high activity

ChemistryViews
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