Results 151 to 160 of about 176,693 (289)

The Progress of Orbitronics: The Enhancement of Orbital Torque Efficiency

open access: yesAdvanced Physics Research, EarlyView.
Orbit‐torque (OT) devices attract significant attention for their low‐power consumption and high stability in applications. This review systematically outlines strategies for enhancing OT efficiency. We categorize approaches into boosting orbital currents/torques and improving the orbital‐to‐spin conversion coefficient.
Pengfei Liu   +6 more
wiley   +1 more source

The M2 Phase of Free‐Standing Ga‐Doped VO2 Single Crystals Over Wide Temperature Ranges

open access: yesAdvanced Physics Research, EarlyView.
Upon heating, the free‐standing crystal Ga 0.04V0.96O2(6) transits abruptly from the T‐phase to the M2‐phase at 295.5 K and from the M2‐phase to the R‐phase at 358 K with no coexisting phases. Resistive switching related to these first‐order transitions is exhibited by low current R(T), DC, and pulsed I–V plots under fixed ambient temperature ...
Larisa Patlagan   +4 more
wiley   +1 more source

Vanadium [PDF]

open access: yesJournal of the Franklin Institute, 1920
openaire   +1 more source

Diffusion Coefficient and Viscosity of Methyl Viologen Electrolyte Estimation Based on a Kinetic Monte Carlo Computational Approach Coupled with the Mean Square Displacement Method

open access: yesBatteries &Supercaps, Volume 8, Issue 3, March 2025.
A novel and comprehensive 3D‐resolved kinetic Monte Carlo model coupled with mean square displacement analysis is introduced. This computational approach allows to explore, for the first time, the concentration and the state of charge effects on ionic diffusion coefficient and viscosity in methyl viologen‐based electrolytes used in organic redox flow ...
Jia Yu   +2 more
wiley   +1 more source

Electrolyte‐free cathode design for solid‐state batteries demonstrated with bifunctional Li2VCl4

open access: yesBatteries &Supercaps, Volume 8, Issue 3, March 2025.
The “electrolyte‐free” cathode design is demonstrated by utilizing the ion‐conducting active material Li2VCl4. This design is exclusively viable within all‐solid‐state battery configurations, where both active materials and electrolytes exist in the solid state.
Takuma Kasahara   +3 more
wiley   +1 more source

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