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Materials Chemistry

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We are interested in the following research axes: 
  1. Synthesis of Nanomaterials using Bottom-Up approach: 0D, 1D, 2D and 3D nanomaterials
  2. Single crystal growth
  3. Molecular Modelling

​Materials chemistry is a branch of chemistry that focuses on the design, synthesis, characterization, and application of materials. It involves studying the relationship between the structure, properties, and performance of different materials, such as metals, ceramics, polymers, and composites. Materials chemists aim to develop new materials with specific properties to meet various technological and societal needs. They work on improving the performance, durability, and sustainability of materials used in a wide range of applications, including electronics, energy storage and conversion, medicine, environmental remediation, and more.
​Some key areas of research in materials chemistry include nanomaterials, biomaterials, functional materials, catalytic materials, and sustainable materials. Materials chemists use various techniques, such as spectroscopy, microscopy, and computational modeling, to understand the structure-property relationships of materials and to design new materials with desired properties.

Research projects
  • Nanostructured hybrid architectures with tunable magneto-luminescent properties PN-III-P4-PCE-2021-1561 No. 82/2022- c4s.utcluj.ro/Nano-Mag@Lu 
  • Advanced materials for smart energy-efficient windows- SMARTWIN, cod proiect PN-III-P1-1.1-TE-2016-2017, contract no. 132/10.10.2018 (2019-2021), https://c4s.utcluj.ro/SMARTWIN/Team.html
  • Catalyst oxide materials for high-capacity Li-O2 batteries - OXIBAT, Internal research project UTCN, nr. 1993/2017 (2017-2018)
  • Superconducting films with magnetic nanocenters by CSD  for the efficiency of electric energy transport SUPRAMAG, Internal research project UTCN, CICDI-1991-UTCN (2017-2018)
  • Smart windows for green house - GINTECO, Internal research project UTCN, contract no. 29316/14.11.2014 (2014-2015)

Recent Publications
​A Mesaros, BV Neamțu, TF Marinca, F Popa, G Cupa, OR Vasile, Preparation of Fe@Fe3O4/ZnFe2O4 Powders and Their Consolidation via Hybrid Cold-Sintering/Spark Plasma-Sintering, Nanomaterials 14 (2), 149

BV Neamţu, M Năsui, G Cupa, E Ware, F Popa, TF Marinca, I Chicinas, Effects of adding carbonyl Fe or Mn–Zn ferrite powders to fibre-based soft magnetic composites prepared via hybrid cold sintering/spark plasma sintering, Journal of Materials Research and Technology 28, 2969-2979

C. Ciont, A. Mesaroș, O.L. Pop,  D.C. Vodnar, Iron oxide nanoparticles carried by probiotics for iron absorption: a systematic review, Journal of Nanobiotechnology, 21 (2023) 124, DOI: 10.1186/s12951-023-01880-9

T.F. Marinca, B.V. Neamtu, F. Popa, A. Mesaros, I. Ciascai, I. Chicinas, Novel supermalloy/alumina type soft magnetic composite obtained by reaction spark plasma sintering of Al-Supermalloy (Ni70.5Fe18.8Mo4.7Al6) surface oxidized particles, Journal of Alloys and Compounds, 940 (2023) 168899, DOI: 10.1016/j.jallcom.2023.168899

B.V. Neamtu, F. Popa, E. Ware, T.F. Marinca, M.S. Gabor, F. Pop Piglesan, M. Nasui, Hydrothermal Deposition of ZnO Layer on Fe-Based amorphous Fibres Used for the Preparation of Cold Sintered Fibre-Based Soft Magnetic Composites, Coatings, 12 (2022) 1527, DOI: 10.3390/coatings12101527

T.F. Marinca, M.C. Sas, A. Mesaros, R. Hirian, F. Popa, B.V. Neamtu, I. Chicinas, Al-Supermalloy and Al-Supermalloy@oxide magnetic powder. Structural, morphological, thermal, and magnetic characterization, Materials Chemistry and Physics, 291 (2022) 126727, DOI: 10.1016/j.matchemphys.2022.126727

Publication List
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Prof.dr.eng. Lelia Ciontea
Conf.dr.eng. Amalia Mesaros
CS.dr.eng. Ramona Bianca Sonher
Lect.dr.eng. Mircea Nasui
Drd. Andrada Daniel
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