Blog

extremely-sturdy,-nonnoble-steel-electrodes-for-hydrogen-manufacturing-from-seawater

Extremely sturdy, nonnoble steel electrodes for hydrogen manufacturing from seawater

The water electrolysis method, a promising avenue for hydrogen production, relies on substantial freshwater consumption, thereby limiting the regions available with water resources required for water electrolysis . Researchers have developed highly durable electrodes without precious metals to enable direct hydrogen production from seawater.

0
zncl2-activated-mesoporous-carbon-from-rice-straw:-optimization-of-man-made-procedure-and-its-software-as-extremely-environment-friendly-adsorbent-for-amoxicillin.

ZnCl2 activated mesoporous carbon from rice straw: optimization of man-made procedure and its software as extremely environment friendly adsorbent for amoxicillin.

Environ. Sci.: Water Res. Technol., 2024, Accepted ManuscriptDOI: 10.1039/D4EW00171K, PaperSuwiwat Sangon, Kanokwan Kotebantao, Theerakan Suyala, Yuvarat Ngernyen, Andrew J. Hunt, Nontipa SupanchaiyamatAn optimized and efficient zinc chloride (ZnCl2) chemical activation of rice straw yielded highly mesoporous carbons with exceptional ability to adsorb the

0
twin-anion-chemistry-synchronously-regulating-the-solvation-construction-and-electrical-double-layer-for-sturdy-zn-steel-anodes

Twin-anion chemistry synchronously regulating the solvation construction and electrical double layer for sturdy Zn steel anodes

Energy Environ. Sci., 2024, Advance ArticleDOI: 10.1039/D4EE00109E, PaperRong Huang, Jingwei Zhang, Wei Wang, Xiaohong Wu, Xuelong Liao, Tiantian Lu, Youzeng Li, Jialei Chen, Shan Chen, Yu Qiao, Qing Zhao, Huan WangDual-anion chemistry is engineered by adding strong polarity Ac− into Zn(OTf)2 electrolyte, which enables synchronous

0
breaking-sabatier’s-vertex-by-way-of-switching-the-oxygen-adsorption-configuration-and-response-pathway-on-twin-lively-websites-for-acidic-oxygen-relief

Breaking Sabatier’s vertex by way of switching the oxygen adsorption configuration and response pathway on twin lively websites for acidic oxygen relief

Energy Environ. Sci., 2024, Advance ArticleDOI: 10.1039/D4EE00823E, PaperPan Guo, Bo Liu, Fengdi Tu, Yunkun Dai, Ziyu Zhang, Yunfei Xia, Miao Ma, Yunlong Zhang, Lei Zhao, Zhenbo WangSwitching the oxygen adsorption configuration and reaction pathway breaks Sabatier's vertex and achieves an extraordinary acidic oxygen reduction performance.To

0