Tolerant Molecular Engineering for High‐Rate and Ultra‐Long Cycle Life Zinc Anode
A tolerant molecular engineering is proposed to greatly improve the stability of the zinc anode. This molecule enhances the conductivity of the electrolyte by reconstructing the hydrogen bonding network and accelerates ion transfer at the interface, resulting in uniform zinc stripping/plating.
Chenyang Zhao+10 more
wiley +1 more source
Modeling seawater intrusion along the Alabama coastline using physical and machine learning models to evaluate the effects of multiscale natural and anthropogenic stresses. [PDF]
Gholizadeh H+5 more
europepmc +1 more source
A galvanic replacement strategy is employed to fabricate hollow PdAg alloy nanotubes, where interfacial oxygen triggers surface reconstruction and stabilizes quasi‐single Pd active sites. This atomic‐level engineering optimizes electronic configurations and enriches exposed catalytic centers, significantly boosting oxygen reduction reaction activity ...
Zongge Li+11 more
wiley +1 more source
Evolution characteristics and causes of iodine and fluoride in groundwater of Hengshui city in North China. [PDF]
Tuo Y+6 more
europepmc +1 more source
Sinai Water Resources Study - Arish-Rafah Groundwater Management Study. Supplementary Report on Recommendations for Further Investagations (phase B) [PDF]
core
From Charge Storage Rulebook Rewriting to Commercial Viability of Zinc‐Manganese Batteries
The Mn3O4 cathode undergoes a partially in situ phase transition to MnO2 during the initial charging process, forming a hybrid Mn3O4/MnO2 cathode. The Mn3O4 provides a robust supporting structure for MnO2 to enhance the cathode stability upon H+/Zn2+ co‐insertion/extraction.
Xinhua Zheng+7 more
wiley +1 more source
Revolutionizing dental restorations with nanoparticle-incorporated composites. [PDF]
Karunakaran J+5 more
europepmc +1 more source
Prospect of Cascade Catalysis in Magnesium‐Sulfur Batteries from Desolvation to Conversion Reactions
The dissolution and conversion reactions at the cathode interface of Mg‐S batteries are systematically summarized. This review focuses on the problems and solutions of diffusion/desolvation Mg2+ migration barrier at the sulfur/electrolyte interface as well as the current development and design of S cathodes in Mg‐S batteries under catalysis ...
Qinghua Guan+7 more
wiley +1 more source