Area of research
Materials Chemistry · Electrical and Electronic Engineering
Research interest
Research focused on Electrolyte and Intercalation (chemistry), with related work in Battery (electricity), Electrode, Generalizability theory. Notable publications include 'Phase Selection Rules of Multi‐Principal Element Alloys', 'Computational Investigation of MAX as Intercalation Host for Rechargeable Aluminum‐Ion Battery', and 'Data driven design of compositionally complex energy materials'.
Elemental Stability Rules for High Entropy Disordered Rocksalt Type Li‐Ion Battery Positive Electrodes
General Model for d-Center Prediction in Multi-Principal-Element Alloys
Aqueous Stability of Metallic Materials and Metal Oxides
Impact of Domain Knowledge on the Property Prediction of Specialized Machine Learning Models
High throughput screening of high entropy spinel electrolytes for multivalent batteries
Origin of enhanced disorder in high entropy rocksalt type Li-ion battery cathodes
A Predictive Framework for Discovering Organic Metal Halide Hybrids beyond Perovskites
The Impact of Domain Knowledge on Universal Machine Learning Models
Design principles for anode stable solid-state electrolytes
Phase Selection Rules of Multi‐Principal Element Alloys
Computational Investigation of MAX as Intercalation Host for Rechargeable Aluminum‐Ion Battery
Data driven design of compositionally complex energy materials
Computational investigation of MAX as intercalation host for rechargeable aluminum-ion battery