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Mechanical Milling–Induced Microstructure Changes in Argyrodite LPSCl Solid‐State Electrolyte Critically Affect Electrochemical Stability
Microstructure of argyrodite solid‐state electrolyte (SSE) critically affects lithium metal
electrodeposition/dissolution. While the stability of unmodified SSE is mediocre, once …
electrodeposition/dissolution. While the stability of unmodified SSE is mediocre, once …
Interrogating the Role of Stack Pressure in Transport‐Reaction Interaction in the Solid‐State Battery Cathode
As solid‐state batteries (SSBs) emerge as leading contenders for next‐generation energy
storage, chemo‐mechanical challenges and instabilities at solid‐solid interfaces remain a …
storage, chemo‐mechanical challenges and instabilities at solid‐solid interfaces remain a …
Dendrite Growth—Microstructure—Stress—Interrelations in Garnet Solid‐State Electrolyte
This study illustrates how the microstructure of garnet solid‐state electrolytes (SSE) affects
the stress‐state and dendrite growth. Tantalum‐doped lithium lanthanum zirconium oxide …
the stress‐state and dendrite growth. Tantalum‐doped lithium lanthanum zirconium oxide …
[HTML][HTML] Investigating sulfide-based all solid-state cells performance through P2D modelling
D Dessantis, P Di Prima, D Versaci, M Santarelli… - Chemical Engineering …, 2024 - Elsevier
All solid-state batteries, combining metallic lithium with a solid-state electrolyte, are now
considered as a very promising answer to the growing need for higher energy density in …
considered as a very promising answer to the growing need for higher energy density in …
Heterogeneous solid electrolyte interphase interactions dictate interface instability in sodium metal electrodes
Sodium (Na) metal batteries have attracted recent attention due to their low cost and high
abundance of Na. However, the advancement of Na metal batteries is impeded due to key …
abundance of Na. However, the advancement of Na metal batteries is impeded due to key …
[HTML][HTML] SOLID-STATE LITHIUM-ION BATTERY ELECTROLYTES: REVOLUTIONIZING ENERGY DENSITY AND SAFETY
PU Nzereogu, A Oyesanya, SN Ogba, SO Ayanwunmi… - Hybrid Advances, 2024 - Elsevier
Solid-state lithium-ion batteries (SSLIBs) are poised to revolutionize energy storage, offering
substantial improvements in energy density, safety, and environmental sustainability. This …
substantial improvements in energy density, safety, and environmental sustainability. This …
Electrodeposition Stability Landscape for Solid–Solid Interfaces
As solid‐state batteries (SSBs) with lithium (Li) metal anodes gain increasing traction as
promising next‐generation energy storage systems, a fundamental understanding of …
promising next‐generation energy storage systems, a fundamental understanding of …
Computational Investigation of MAX as Intercalation Host for Rechargeable Aluminum‐Ion Battery
Layered carbides and their analogs with MAX phase (general formula AMn+ 1Xn) have
emerged as promising candidates for energy storage and conversion applications. One …
emerged as promising candidates for energy storage and conversion applications. One …
Rate-dependent peeling behavior of the viscoelastic film-substrate system
In contrast to the well-understood peeling behavior of an elastic film-substrate system, the
peeling behavior of a viscoelastic film bonded to a rigid substrate remains unclear. This …
peeling behavior of a viscoelastic film bonded to a rigid substrate remains unclear. This …
Consequences of plane-strain and plane-stress assumptions in fully coupled chemo-mechanical Li-ion battery models
In Li-ion battery research, it is common to simulate chemo-mechanical phenomena in
reduced dimensions (eg, 2-D) as opposed to fully resolve these complex physics in 3-D. It is …
reduced dimensions (eg, 2-D) as opposed to fully resolve these complex physics in 3-D. It is …