Point defects in solid electrolyte driven by high electrode potential can hinder solid state batteries performance.
Please check out our recent work in Chemistry of Materials!
#solidstate#Lithium@ACSPublications@mit_dmse@MUSICEFRC@mitenergy
https://t.co/MUeEZ2glbL
A thought:
if we assume that an artificial general intelligence converges to an average human intelligence, then why the recent trend in LLMs is surpassing average human on a number of tasks?
Point defects in solid electrolyte driven by high electrode potential can hinder solid state batteries performance.
Please check out our recent work in Chemistry of Materials!
#solidstate#Lithium@ACSPublications@mit_dmse@MUSICEFRC@mitenergy
https://t.co/MUeEZ2glbL
It was an honor to present a part of my PhD thesis work at @SSIonics24 in London earlier week. Congratulations to all those who attended!
https://t.co/cqw4dQuigX
@mit_dmse@mitenergy@exxonmobil@ENERGY
It was a pleasant evening interacting with people from academia and industry. Thank you again @mitenergy@exxonmobil for choosing me as a fellow and supporting solid-state Li ion battery research!
@MIT@mit_dmse#lithiumbatteries
Glad to share my first published paper!
@mit_dmse#MIT#materials#energystorage#Lithium#Battery
Thermally-driven reactivity of Li0.35La0.55TiO3 solid electrolyte with LiCoO2 cathode - now published in Journal of Materials Chemistry A https://t.co/OFpOcFdLYQ