معرفی
Milena Dojčinović serves as a Research associate at the Department of Materials Science, Center for Green Technologies, Institute for Multidisciplinary Research, University of Belgrade, while concurrently pursuing doctoral studies at the Faculty of Physical Chemistry, University of Belgrade.
Her academic qualifications include:
- Doctoral candidate at Faculty of Physical Chemistry, University of Belgrade (2018-present)
- Master's degree in Physical Chemistry from Faculty of Physical Chemistry, University of Belgrade (2017-2018)
- Bachelor's degree in Physical Chemistry from Faculty of Physical Chemistry, University of Belgrade (2013-2017)
Her research centers on metal oxide nanomaterials synthesis through solid-state methods, sol-gel processes, and electrospinning, with emphasis on physicochemical characterization using UV-vis spectroscopy. She investigates applications in photocatalysis for environmental remediation, humidity/temperature sensor development, and electrocatalysts for water splitting. Her work bridges advanced materials engineering with sustainable energy solutions.
Analysis of her 2020-2021 publications reveals consistent focus on metal oxide systems for sensing and catalysis, particularly iron manganite humidity sensors, zinc stannate nanocomposites, and spinel ferrites with dual magnetic-photocatalytic functionality. These studies demonstrate interdisciplinary approaches combining materials synthesis, structural characterization, and application testing under natural sunlight conditions.
Milena participated in two Ministry of Education, Science and Technological Development of Serbia projects: "0-3D nanostructures for electronics and renewable energy" (2018-2019) and "Lithium-ion batteries and fuel cells research" (2018-2019). She has been a member of the International Society of Electrochemistry since 2020.
Her laboratory expertise includes UV-vis spectrophotometry and electrochemical characterization systems, supported by proficiency in MS Office, Origin Lab, and Inkscape for data analysis and visualization.





