Inicio
Explorar
nav.journalClub
Tendencias
Más
synapse
⌘+K
Idioma
Español
March 3, 2026
Flash joule heating driven in-situ dispersoid synthesis: Mechanical-interfacial-conductive coupling mechanisms in silicon-based anodes
DL
D.R. Lan
PO
P.Y. Ou
SP
S.Q. Pei
Ver todo
Puntos clave
Mechanical coupling plays a crucial role in enhancing the performance of silicon-based anodes, enabling better energy storage.
Interfacial and conductive coupling mechanisms were identified as vital for the synthesis process, improving anode efficiency.
Flash joule heating provides an innovative approach to in-situ dispersoid synthesis within silicon structures.
These findings highlight the potential for improved battery technology through enhanced silicon-based anodes.
Mark Helpful
Me gusta
Save
Guardar
Relay
Compartir
Mark Helpful
Me gusta
Save
Guardar
Relay
Compartir
Flash joule heating driven in-situ dispersoid synthesis: Mechanical-interfacial-conductive coupling mechanisms in silicon-based anodes | Synapse
Cite This Study
Copy
Lan et al. (Sun,) studied this question.
synapsesocial.com/papers/69a7658dbadf0bb9e87d9872
https://doi.org/https://doi.org/10.1016/j.ensm.2026.104956