Results 201 to 210 of about 680,173 (299)
Coating the standard polypropylene separator with a porous red phosphorous nanosheet greatly improves cycling performance in Li electrode cells. The phosphorus‐based surface chemistry deactivates electrolyte solvent decomposition and enhances the cleavage of F‐containing salt, resulting in an inorganic‐dominated electrolyte interphase (SEI) composition
Jiangpeng Wang+9 more
wiley +1 more source
Nickel cobalt selenide as a nano-moss electrocatalyst for detection of gaseous hydrogen peroxide. [PDF]
Ullah N, Guziejewski D, Mirceski V.
europepmc +1 more source
Boosting Polysulfide Conversion on Fe‐Doped Nickel Diselenide Toward Robust Lithium–Sulfur Batteries
This work reports an advanced functional material based on Fe‐doped nickel diselenides toward robust lithium–sulfur batteries, demonstrating that Fe‐rich cores and surface doping enhance the density of states at the Fermi level and introduce unpaired electrons for the improvement of the LiPS adsorption and catalytic conversion. Abstract Sulfur offers a
Junshan Li+11 more
wiley +1 more source
On a probable error in determinations by means of the hydrogen electrode
C. Lovatt Evans
openalex +2 more sources
Locking-chain electrolyte additive enabling moisture-tolerant electrolytes for sodium-ion batteries. [PDF]
Li W+13 more
europepmc +1 more source
In this work, the tandem catalyst consisted of single Fe atom and Fe3C nanoparticles on porous carbon sheet is initially proposed and developed to facilitate the dissociation of Li(solvent)x+ to release more isolated Li+ to participate in the subsequent polysulfide redox conversions by decreasing the related barriers, contributing to fast kinetics of ...
Yuhang Lin+12 more
wiley +1 more source
Architecture of ytterbium selenite nanorods: unlocking structural, optical, magnetic and electrochemical behaviour with boosting performance for supercapacitors. [PDF]
Shanmugha Soundare S+3 more
europepmc +1 more source
Breaking the Capacity Limit for WO3 Anode‐Based Li‐Ion Batteries Using Photo‐Assisted Charging
This image illustrates a photo‐assisted rechargeable lithium‐ion battery. (a) shows the battery structure, where light enhances electron‐hole generation in the anode, boosting ion flow. (b) compares discharging performance, revealing over 60% higher capacity under light compared to dark conditions, showcasing the benefit of light‐assisted energy ...
Rabia Khatoon+7 more
wiley +1 more source
THE APPLICATION OF THE QUINHYDRONE ELECTRODE TO THE DETERMINATION OF THE pH OF SERUM AND PLASMA
Edwin P. Laug
openalex +1 more source