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Quantum materials: Fundamental phenomena, experimental insights, and emerging technological applications

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2025
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Authors
Matović, Branko
Nidžović, Emilija
Article (Published version)
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Abstract
Quantum materials have emerged at the forefront of contemporary research in solid-state chemistry, physics, and materials science, owing to their unique properties rooted in quantum mechanical phenomena such as coherence, entanglement, and topological protection. This diverse class of materials has immense potential to drive a new technological revolution, with applications ranging from quantum computing and sensing to energy harvesting and spintronics. This review offers a concise summary of the fundamental quantum effects that define these materials, highlights key experimental techniques used for their characterization, and discusses their potential for usage in next-generation technologies. Despite significant advances, notable challenges persist in the synthesis, theoretical modeling, and integration of quantum materials into functional devices. Future research holds a promise for new discoveries, paving the way for novel applications and a deeper understanding of the quantum natu...re of matter.

Source:
Journal of Innovative Materials in Extreme Conditions, 2025, 6, 2, 73-103
Funding / projects:
  • Ministry of Science, Technological Development and Innovation of the Republic of Serbia, institutional funding - 200017 (University of Belgrade, Institute of Nuclear Sciences 'Vinča', Belgrade-Vinča) (RS-MESTD-inst-2020-200017)

ISSN: 2738-0882

[ Google Scholar ]
Handle
https://hdl.handle.net/21.15107/rcub_vinar_16114
URI
https://vinar.vin.bg.ac.rs/handle/123456789/16114
Collections
  • Journal of Innovative Materials in Extreme Conditions
  • Radovi istraživača
Institution/Community
Vinča
TY  - JOUR
AU  - Matović, Branko
AU  - Nidžović, Emilija
PY  - 2025
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/16114
AB  - Quantum materials have emerged at the forefront of contemporary research in solid-state chemistry, physics, and materials science, owing to their unique properties rooted in quantum mechanical phenomena such as coherence, entanglement, and topological protection. This diverse class of materials has immense potential to drive a new technological revolution, with applications ranging from quantum computing and sensing to energy harvesting and spintronics. This review offers a concise summary of the fundamental quantum effects that define these materials, highlights key experimental techniques used for their characterization, and discusses their potential for usage in next-generation technologies. Despite significant advances, notable challenges persist in the synthesis, theoretical modeling, and integration of quantum materials into functional devices. Future research holds a promise for new discoveries, paving the way for novel applications and a deeper understanding of the quantum nature of matter.
T2  - Journal of Innovative Materials in Extreme Conditions
T1  - Quantum materials: Fundamental phenomena, experimental insights, and emerging technological applications
VL  - 6
IS  - 2
SP  - 73
EP  - 103
UR  - https://hdl.handle.net/21.15107/rcub_vinar_16114
ER  - 
@article{
author = "Matović, Branko and Nidžović, Emilija",
year = "2025",
abstract = "Quantum materials have emerged at the forefront of contemporary research in solid-state chemistry, physics, and materials science, owing to their unique properties rooted in quantum mechanical phenomena such as coherence, entanglement, and topological protection. This diverse class of materials has immense potential to drive a new technological revolution, with applications ranging from quantum computing and sensing to energy harvesting and spintronics. This review offers a concise summary of the fundamental quantum effects that define these materials, highlights key experimental techniques used for their characterization, and discusses their potential for usage in next-generation technologies. Despite significant advances, notable challenges persist in the synthesis, theoretical modeling, and integration of quantum materials into functional devices. Future research holds a promise for new discoveries, paving the way for novel applications and a deeper understanding of the quantum nature of matter.",
journal = "Journal of Innovative Materials in Extreme Conditions",
title = "Quantum materials: Fundamental phenomena, experimental insights, and emerging technological applications",
volume = "6",
number = "2",
pages = "73-103",
url = "https://hdl.handle.net/21.15107/rcub_vinar_16114"
}
Matović, B.,& Nidžović, E.. (2025). Quantum materials: Fundamental phenomena, experimental insights, and emerging technological applications. in Journal of Innovative Materials in Extreme Conditions, 6(2), 73-103.
https://hdl.handle.net/21.15107/rcub_vinar_16114
Matović B, Nidžović E. Quantum materials: Fundamental phenomena, experimental insights, and emerging technological applications. in Journal of Innovative Materials in Extreme Conditions. 2025;6(2):73-103.
https://hdl.handle.net/21.15107/rcub_vinar_16114 .
Matović, Branko, Nidžović, Emilija, "Quantum materials: Fundamental phenomena, experimental insights, and emerging technological applications" in Journal of Innovative Materials in Extreme Conditions, 6, no. 2 (2025):73-103,
https://hdl.handle.net/21.15107/rcub_vinar_16114 .

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