Prosjekter
- LiTIA - Li transport and interface reactions in advanced battery materials (2025 - 2028)
- IntelLiGent - Innovative and sustainable high-voltage Li -ion cells for next generation (EV) batteries (2022 - 2025)
- SUMBAT - Sustainable Materials for the Battery Value Chain (2022 - 2025)
- Battery 2030+ - storskala forskningsinitiativ (2020 - 2023)
Laboratorier
Publikasjoner
- Realization of Aqueous Processed LiNi0.5Mn1.5O4 through the pH Optimization of Polyacrylate Binders
- Bulk substitution of F-terminations from Ti3C2Tx MXene by cation pillaring and gas hydrolysation Les publikasjonen
- Removing fluoride-terminations from multilayered V2CTx MXene by gas hydrolyzation Les publikasjonen
- Performance Study of MXene/Carbon Nanotube Composites for Current Collector- and Binder-Free Mg-S Batteries Les publikasjonen
- Are MXenes Suitable as Cathode Materials for Rechargeable Mg Batteries? Les publikasjonen
- Dipentamethylene thiuram tetrasulfide-based cathodes for rechargeable magnesium batteries Les publikasjonen
Annen formidling
- Hvor mye energi kan man lagre i et Li-ionebatteri?
- Hvor mye energi kan man lagre i et Li-ionebatteri?
- Hvor mye energi kan man lagre i et Li-ionebatteri?
- Why we need pilot lines for battery research
- Artificial vs. natural graphite
- SINTEF Battery Lab Introduksjon
- Status update on HEU IntelLiGent project
- Functional binders to tackle transition metal dissolution in LNMO cathode materials
- Investigating the pH buffering effects of PAA as a binder for aqueous processing of LNMO
- SINTEF Battery Lab Introduksjon