Iridium Oxide Inverse Opal Anodes with Tailored Porosity for Efficient PEM Electrolysis
The synthesis of Iridium‐based Inverse Opals (Ir‐IO) is reported as electrocatalyst for Proton exchange membrane water electrolysis (PEM‐WE). Using the developed protocol it produces highly porous materials consisting either of metallic, oxidic Iridium or a combination thereof with large surface areas.
Sebastian Möhle+2 more
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Pitching Kinematics and Kinetics Related to the Elbow Joint Load in Young Female Baseball Players: A Comparison With Young Male Baseball Players. [PDF]
Nishino K+8 more
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The Admittance Concept in the Kinetics of Chromatography [PDF]
J. Rosen, W.E. Winsche
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Enhancing Low‐Temperature Performance of Sodium‐Ion Batteries via Anion‐Solvent Interactions
DOL is introduced into electrolytes as a co‐solvent, increasing slat solubility, ion conductivity, and the de‐solvent process, and forming an anion‐rich solvent shell due to its high interaction with anion. With the above virtues, the batteries using this electrolyte exhibit excellent cycling stability at low temperatures. Abstract Sodium‐ion batteries
Cheng Zheng+7 more
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Association of Loading Asymmetry During Squatting With Loading Asymmetry During Drop Jump After ACL Reconstruction: Implications for Rehabilitation Progression. [PDF]
Popovich JM+4 more
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A Treatment of Chemical Kinetics with Special Applicability to Diffusion Controlled Reactions
Richard M. Noyes
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Poly(heptazine) imides (PHIs), a crystalline carbon nitride subclass, intercalate metals to deliver high stability, tunable electronics, and efficient charge separation. These features enable solar‐driven applications such as hydrogen evolution, CO₂ reduction, and organic synthesis.
Gabriel A. A. Diab+6 more
wiley +1 more source
Enzymatic Reactions Dictated by the 2D Membrane Environment. [PDF]
Bai RH, Lin CC, Lin CW.
europepmc +1 more source
THE KINETICS OF THE ENZYMATIC SYNTHESIS OF GLYCOGEN FROM GLUCOSE-1-PHOSPHATE
Gerty T. Cori, Carl F. Cori
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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