Results 201 to 210 of about 12,199 (307)

Waste Adsorbent Valorization of Biopolymer‐Modified Zn–Fe Layered Double Hydroxides for Crystal Violet Removal and Enhanced Nonenzymatic Urea Detection

open access: yesChemElectroChem, Volume 13, Issue 16, 18 August 2026.
This graphical abstract illustrates the synthesis of Zn–Fe LDH composites with biopolymers (chitosan, cellulose, and carrageenan) for the efficient removal of crystal violet dye. The resulting spent adsorbents are subsequently repurposed for electrocatalytic urea detection, demonstrating a sustainable, circular approach to wastewater treatment and ...
Abdalla Abdelwahab   +8 more
wiley   +1 more source

Upcycling Water Pollutants Into Long‐Chain Polymers via Synergistic Interfacial Dechlorination and Organic Radical Stabilization

open access: yesAngewandte Chemie, Volume 138, Issue 32, 3 August 2026.
HEO‐regulated electronic structure drives nonradical PI activation, promoting ETP‐mediated polymerization of 4CP into high‐molecular‐weight products with enhanced surface enrichment. Concurrent dechlorination occurs via radical coupling and •OHads attack, enabling efficient carbon retention and selective product evolution at the liquid–solid interface.
Ziwei Yao   +8 more
wiley   +2 more sources

Upcycling of waste sodium sulfate to sodium carbonate and sulfur. [PDF]

open access: yesNat Commun
Wang H   +9 more
europepmc   +1 more source

Waste‐Derived Onion‐Like Carbon Nanoparticles/Recycled Silicon Composite for Sustainable High‐Performance Lithium‐Ion Batteries

open access: yesChemElectroChem, Volume 13, Issue 16, 18 August 2026.
Recycled silicon and waste rubber are upcycled into a high‐performance Si/C composite anode for lithium‐ion batteries. Uniformly distributed onion‐like carbon nanoparticles form a conductive and mechanically robust buffer that accommodates silicon volume expansion, enhancing electrochemical performance and cycling stability while providing a ...
Mohsen Hajian Foroushani   +4 more
wiley   +1 more source

Elektrothermische Oxidation von Ethylenglycol an Co3O4

open access: yesAngewandte Chemie, Volume 138, Issue 32, 3 August 2026.
Die elektrothermische Oxidation von Ethylenglykol unter Druck steigert die katalytische Effizienz hin zu Glykolat unter milden Bedingungen. Höhere Reaktionsraten treten bei 70–90°C und 15 bar O2 auf, und sowohl das Potential als auch der O2‐Druck reoxidieren Co2+ zu Co3+ an der Oberfläche.
Adarsh Koul   +9 more
wiley   +1 more source

Electrothermal Oxidation of Ethylene Glycol Over Co3O4

open access: yesAngewandte Chemie International Edition, Volume 65, Issue 32, 3 August 2026.
Pressurized electrothermal oxidation of ethylene glycol enhances catalytic performance toward glycolate under mild conditions. Higher reaction rates occur at 70–90°C and 15 bar O2, and potential and O2 pressure re‐oxidize Co2+ to Co3+ at the surface.
Adarsh Koul   +9 more
wiley   +1 more source

Home - About - Disclaimer - Privacy