Results 221 to 230 of about 173,020 (351)

A Comparative Evaluation of Carbonaceous and Alloy Type Anodes for Sodium‐Ion Batteries: Capacity, Scalability, and Sustainability Perspectives

open access: yesSmall, EarlyView.
This review critically compares the electrochemical performance of carbon‐based and alloy‐type anodes for sodium‐ion batteries, with an emphasis on strategies that enhance practical deployment. It highlights how synergistic optimization of microstructure, electrolyte, and presodiation improves hard carbon, while nanostructuring and interfacial ...
Anele Tshaka   +3 more
wiley   +1 more source

Scenario-based forecast of the evolution of 75 years of unrest at Campi Flegrei caldera (Italy). [PDF]

open access: yesCommun Earth Environ
Caricchi L   +4 more
europepmc   +1 more source

Severe Scrotal Cellulitis in a Young Man

open access: yes
JEADV Clinical Practice, EarlyView.
Hamad El Hajj   +3 more
wiley   +1 more source

Unlocking Energy Potential: Exploiting Anionic Redox Activity in Na‐Based Layered Oxides

open access: yesSmall, EarlyView.
Anionic redox in Na‐based layered oxide cathodes unlocks additional capacity beyond conventional transition‐metal redox limits, enabling high‐energy sodium‐ion batteries. This review elucidates coupled cationicanionic redox mechanisms across P2‐, O3‐, and related structural phases, while critically addressing key challenges such as voltage hysteresis ...
Neeraja Nair   +6 more
wiley   +1 more source

Zincophilic Porous Carbon Interface with Dendrite‐Free Zinc Deposition via Selective Ion Regulation for Aqueous Zinc Ion Batteries

open access: yesSmall, EarlyView.
A multifunctional zincophilic porous carbon (ZPC) layer is engineered as a protective layer for aqueous zinc‐ion batteries (AZIBs). The ZPC layer guides Zn2+ diffusion and desolvation through ion adsorption sites. Also, its polar functional groups enhance interfacial adhesion and redox activity.
Yanghyun Cho   +12 more
wiley   +1 more source

Recycling of Mill Scale Into High‐Purity Iron Through Hydrogen‐Based Reduction

open access: yessteel research international, EarlyView.
Mill scale, an iron oxide–rich steel by‐product, is difficult to recycle due to impurities. This study evaluates hydrogen‐based direct reduction and hydrogen plasma smelting reduction as low‐carbon recycling routes. Impurity segregation limits reduction kinetics. Direct reduction achieves 92% conversion in 180 min, while plasma reduction reaches 91% in
Nathalia C. Verissimo   +8 more
wiley   +1 more source

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