MXene-COF for Catalysis and Energy Storages

MXene–COF offer a pathway to overcome the fundamental trade-offs that limit existing active materials, where electronic conductivity, charge-storage capacity, and ion-transport efficiency are often mutually constrained. By integrating the metallic …

MXene-MOF for Electrochemical Devices

MXene–MOF hybrid architectures integrate metallic charge transport with framework-engineered ion pathways, overcoming the intrinsic limitations of conventional electrochemical materials. This synergy enables high-rate, high-capacity, and durable electrochemical devices for energy …

Sulfurized COF for Stable Lithium-Sulfur Batteries

Sulfurized covalent organic frameworks provide ordered, porous hosts that confine sulfur and guide efficient lithium-ion transport in lithium–sulfur batteries. This framework-level control suppresses polysulfide shuttling and stabilizes redox reactions, enabling …

The Charles University Rector's Award for Top Students has been awarded to a member of our Department

The Professor Jaroslav Heyrovský Award for the Best Graduates of Natural Science Programs has been awarded to Samuel Kolesár, B.Sc. In his thesis, he independently designed and implemented the synthesis …

Listen to an interview with Associate Professor Peter Košovan on Český rozhlas (Czech Radio)

On the program Věda Plus, Šárka Martanová spoke with Assoc. Prof. Peter Košovan about the work of his research group and the integration of theoretical models, computer simulations, and laboratory …