Simulation and Modeling of Nanomaterials

This Special Issue focuses on computational detailed studies (simulation, modeling, and calculations) of the structures, main properties, and peculiarities of the various nanomaterials (nanocrystals, nanoparticles, nanolayers, nanofibers, nanotubes, etc.) based on various elements, including organic...

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Bibliographic Details
Other Authors: Bystrov, Vladimir S. (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel MDPI - Multidisciplinary Digital Publishing Institute 2022
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DOAB: description of the publication
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520 |a This Special Issue focuses on computational detailed studies (simulation, modeling, and calculations) of the structures, main properties, and peculiarities of the various nanomaterials (nanocrystals, nanoparticles, nanolayers, nanofibers, nanotubes, etc.) based on various elements, including organic and biological components, such as amino acids and peptides. For many practical applications in nanoelectronics., such materials as ferroelectrics and ferromagnetics, having switching parameters (polarization, magnetization), are highly requested, and simulation of dynamics and kinetics of their switching are a very important task. An important task for these studies is computer modeling and computational research of the properties on the various composites of the other nanostructures with polymeric ferroelectrics and with different graphene-like 2-dimensional structures. A wide range of contemporary computational methods and software are used in all these studies. 
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650 7 |a Research & information: general  |2 bicssc 
650 7 |a Physics  |2 bicssc 
653 |a single nanowires 
653 |a silicon 
653 |a dual shells 
653 |a off-resonance 
653 |a absorption 
653 |a photocurrent 
653 |a magnetism 
653 |a transition-metal oxide clusters 
653 |a DFT calculations 
653 |a structure 
653 |a electronic properties 
653 |a LGD theory 
653 |a polarization 
653 |a nanoscale ferroelectrics 
653 |a kinetics 
653 |a homogeneous switching 
653 |a computer simulation 
653 |a fitting 
653 |a diphenylalanine 
653 |a peptide nanotubes 
653 |a self-assembly 
653 |a water molecules 
653 |a DFT 
653 |a molecular modelling 
653 |a semi-empirical methods 
653 |a chirality 
653 |a Ir-modified MoS2 
653 |a decomposition components of SF6 
653 |a adsorption and sensing 
653 |a atomistic simulation 
653 |a core-shell bi-magnetic nanoparticles 
653 |a Monte Carlo simulation 
653 |a interfacial exchange 
653 |a terahertz 
653 |a graphene 
653 |a plasmons 
653 |a Drude absorption 
653 |a polarization conversion 
653 |a yield surface 
653 |a plastic flow 
653 |a crystal plasticity 
653 |a polycrystalline aluminum 
653 |a dipeptides 
653 |a helical structures 
653 |a molecular modeling 
653 |a dipole moments 
653 |a tunnel junction 
653 |a machine learning 
653 |a III-nitride 
653 |a hydroxyapatite 
653 |a modeling 
653 |a density functional theory 
653 |a defects 
653 |a vacancies 
653 |a substitutions 
653 |a structural and optical properties 
653 |a band gap 
653 |a electronic density of states 
653 |a nanomaterials 
653 |a plasmon-induced transparency 
653 |a strontium titanate 
653 |a slow light 
653 |a iron doping 
653 |a hydroxyapatite bioceramics 
653 |a hybrid density functional 
653 |a X-ray absorption spectroscopy 
653 |a phenylalanine 
653 |a protein secondary structure 
653 |a optoelectronic devices 
653 |a nanostructured polymer film 
653 |a antireflection coating 
653 |a finite-difference time-domain method 
653 |a ferroelectrics 
653 |a heterostructures 
653 |a domains 
653 |a negative capacitance 
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856 4 0 |a www.oapen.org  |u https://directory.doabooks.org/handle/20.500.12854/91181  |7 0  |z DOAB: description of the publication