Young Ceramics Networks
News
YCN Newsletter 20 - Research in Spot by Emilija Nidžović
Synthesis, processing and characterization of high-entropy spinel oxides
Spinel oxides are metal oxides with the general formula AB2O4 and the spinel structure, where A and B represent different cations located at tetrahedral (A) and octahedral (B) sites. High-entropy spinel oxides (HESOs) contain five or more cations in these positions and have a single-phase crystal structure. These oxides have specific characteristics which make them suitable for a multitude of technological applications (e.g., catalysts, adsorbents, photocatalysts, sensors). Since the pioneering work of Dąbrowa and associates in 2018, various researchers have worked on the synthesis of HESOs, using different precursors and methods, as well as on investigating their properties.
My research focuses on synthesizing HESOs by utilizing the self-propagating room temperature (SPRT) method, which has not been used for this purpose in previous research. The main advantages of this approach are its time- and cost-effectiveness. Using it, I was able to synthesize single-phased high entropy spinel oxides of different compositions. After the synthesis, which produces samples in powder form, spark plasma sintering (SPS) is utilized in order to achieve densification. The sintering process occurs very fast and results in high-density ceramics.
Further steps of my PhD research will include assessing the structural, mechanical, thermal, electrical, magnetic, and other properties of the synthesized and processed samples. The ultimate goal is to contribute to both theoretical understanding and practical application of these materials.
Emilija Nidžović
Department of Materials, Vinča Institute of Nuclear Sciences, National Institute of thе Republic of Serbia, University of Belgrade, Belgrade, Serbia
Last news
YCN Newsletter 31 - Event Overview - Ceramitec 2026 by YCN Committee member Petar Kotevski
YCN’s participation at ceramitec 2026 in Munich from 24th to 26th of March 2026, represented a key step in strengthening ties between young ceramic professionals, academia, and industry. The exhibition provided an international setting where research, innovation and industrial application converge, enabling meaningful engagements. Our main objective was to position YCN as an active interface connecting early-career professionals with industry leaders.
YCN Newsletter 31 - Research in Spot - Naser Hosseini
Interface Engineering: High-Temperature Interactions Between High-Entropy Ceramics and Metals.
My research explores high-temperature interactions between high-entropy ceramics (HECs) and metals, with a focus on joining strategies for extreme environments. By understanding how metals wet and react with these advanced ceramics, I aim to design reliable interfaces for applications such as composites, coatings, and ceramic joining with functional properties. This work contributes to improving the performance and durability of materials used in demanding industries such as energy, aerospace, and advanced manufacturing.
Information
Contact us for any information: youngceramists@ecers.org - We will respond to your inquiry as soon as possible!