PEDOT:PSS as a Bio-Solid Electrolyte Interphase for Neural Interfaces: From Molecular Design to Interfacial Intelligence. [PDF]
Liu Z, Liu J, Zhang P, Xu X.
europepmc +1 more source
Self‐Heating and Thermal Gradient in Solid‐State Batteries: Friend or Foe?
This work investigates the role of self‐heating and thermal gradients derived from the kinetics/transport interactions within the cathode microstructure, electrode architecture, and operating regimes, thus encouraging a mechanism‐centric design of anode‐free solid‐state batteries for next‐generation high‐power applications.
Abhinand Ayyaswamy +2 more
wiley +1 more source
SOX2 phosphorylation during mitosis limits genomic damage. [PDF]
Williams CAC +10 more
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A thin gold nanolayer on lithium metal enables stable and uniform lithium plating in solid‐state batteries, enabling nearly 1 year and 11 months of continuous operation. The conductive coating lowers interfacial resistance, suppresses dendrite growth, and improves cycling stability, attributed to homogeneous deposition of Li+ on the gold layer ...
Natalia Voronina +10 more
wiley +1 more source
Nitrogen Enables Superior Strength-Ductility Synergy in Ultra-Low Carbon Steel via Copious Interphase Precipitation and Grain Refinement. [PDF]
Zhu Q +13 more
europepmc +1 more source
Solvation-driven interphase engineering and mechanical failure pathways in large-scale anode-free lithium metal batteries. [PDF]
Joraleechanchai N +4 more
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Analysis of tunneling conductivity for MXene polymer system by the network of interphase: parametric examinations and experimental validation. [PDF]
Hadi Z +5 more
europepmc +1 more source
Homogenizing solvation: a polarity-gradient strategy for extreme cryogenic batteries. [PDF]
Guo Z, Zhao Y, Titirici MM.
europepmc +1 more source
Fluorinated sodiophilic interphase for high-rate and low-temperature initially anode-free sodium battery. [PDF]
Wang M +8 more
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