Research of properties of nanoscopic structures

Aim of this paper is creation of model of ultrathin films, superlattices, nano wires and quantum dots, and investigations microscopic and macroscopic properties of these low-dimensional crystal systems. It was demonstrated that reducing space dimensions and boundary conditions has great influence on...

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Main Author: Jovan P. Šetrajčić
Format: Article
Language:English
Published: Engineering Society for Corrosion, Belgrade 2016-03-01
Series:Zaštita Materijala
Subjects:
Online Access:https://www.zastita-materijala.org/index.php/home/article/view/724
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author Jovan P. Šetrajčić
author_facet Jovan P. Šetrajčić
author_sort Jovan P. Šetrajčić
collection DOAJ
description Aim of this paper is creation of model of ultrathin films, superlattices, nano wires and quantum dots, and investigations microscopic and macroscopic properties of these low-dimensional crystal systems. It was demonstrated that reducing space dimensions and boundary conditions has great influence on the physically relevant properties in these crystal substances. Resonant absorption, different behavior of specific heat and critical superconductive temperatures up to 100 OC were explained.
format Article
id doaj-art-be22e3a443254054af17c28ceb7e4ce1
institution DOAJ
issn 0351-9465
2466-2585
language English
publishDate 2016-03-01
publisher Engineering Society for Corrosion, Belgrade
record_format Article
series Zaštita Materijala
spelling doaj-art-be22e3a443254054af17c28ceb7e4ce12025-08-20T03:23:31ZengEngineering Society for Corrosion, BelgradeZaštita Materijala0351-94652466-25852016-03-01571819210.5937/ZasMat1601081S723Research of properties of nanoscopic structuresJovan P. Šetrajčić0University of Novi Sad, Faculty of Science, Department of Physics, SerbiaAim of this paper is creation of model of ultrathin films, superlattices, nano wires and quantum dots, and investigations microscopic and macroscopic properties of these low-dimensional crystal systems. It was demonstrated that reducing space dimensions and boundary conditions has great influence on the physically relevant properties in these crystal substances. Resonant absorption, different behavior of specific heat and critical superconductive temperatures up to 100 OC were explained.https://www.zastita-materijala.org/index.php/home/article/view/724electronsphononsexcitonsmolecular structureshigh-temperature superconductivityultrathin filmssuperlatticesnano wiresquantum dots
spellingShingle Jovan P. Šetrajčić
Research of properties of nanoscopic structures
Zaštita Materijala
electrons
phonons
excitons
molecular structures
high-temperature superconductivity
ultrathin films
superlattices
nano wires
quantum dots
title Research of properties of nanoscopic structures
title_full Research of properties of nanoscopic structures
title_fullStr Research of properties of nanoscopic structures
title_full_unstemmed Research of properties of nanoscopic structures
title_short Research of properties of nanoscopic structures
title_sort research of properties of nanoscopic structures
topic electrons
phonons
excitons
molecular structures
high-temperature superconductivity
ultrathin films
superlattices
nano wires
quantum dots
url https://www.zastita-materijala.org/index.php/home/article/view/724
work_keys_str_mv AT jovanpsetrajcic researchofpropertiesofnanoscopicstructures