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Microstructure development in lithium lanthanum titanate solid electrolyte

Author(s): Petruša Borštnar (Author), Nina Daneu (Supervisor)

Year: 2025

Type: Doctoral dissertation

All-solid-state batteries are one of the key technologies for future energy storage and the transition to a climate-neutral society. They offer improved safety, stability, and a broader operating temperature range compared to conventional batteries with liquid electrolyte. Perovskite Li0.33La0.56 0.11TiO3 (LLTO) is recognized as one of the most promising solid …

Contact-free physiological monitoring of cardiorespiratory states using radar and optical sensors

Author(s): Gašper Slapničar (Author), Mitja Luštrek (Supervisor), Wenjin Wang (Co-Supervisor)

Year: 2024

Type: Doctoral dissertation

Omnipresence of sensor-equipped devices spurred rapid development of e-health and mhealth applications in the past decades. Despite their wide-spread adoption in the form of wearables, such devices are ultimately not a universal or ideal solution for regular health monitoring due to their reliance on battery, requiring skin contact and general …

Time-efficient method for monitoring electrochemical energy conversion systems

Author(s): Gjorgji Nusev (Author), Pavle Boškoski (Supervisor)

Year: 2022

Type: Doctoral dissertation

According to the EU’s Green Deal plan, one of the main objectives for the EU is to become a net-zero greenhouse emission society by 2050. Achieving this goal requires advancements across many areas ranging from energy production, conversion, distribution and energy storage where the key role is taken by the …

Plasma-enabled design of hybrid carbon nanostructures for energy storage applications

Author(s): Neelakandan Marath Santhosh (Author), Uroš Cvelbar (Supervisor), Gregor Filipič (Co-Supervisor)

Year: 2021

Type: Doctoral dissertation

Carbon, one of the most abundant materials in the earth crust, has gained research attention owing to its high structural stability, electrical conductivity, optical and thermal properties. Additionally, the possibility of tailoring carbon materials at nanoscales makes them promising materials for many applications, including energy storage, sensors, biomedical and electronics. …