Keywords: تابش یون; Ion irradiation; Pyrochlores; X-ray diffraction; Atomistic simulation
مقالات ISI تابش یون (ترجمه نشده)
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Keywords: تابش یون; Ion irradiation; Plasma; Fusion; Carbon; Deuterium
Keywords: تابش یون; Poly(vinyl alcohol); Ion irradiation; Cell pattern;
Keywords: تابش یون; Ion irradiation; Metallic glasses; Synchrotron diffraction; Structural relaxation;
Keywords: تابش یون; Tungsten; Electron backscatter diffraction; Ion irradiation; Helium; Dislocation loop punching
Keywords: تابش یون; In situ transmission electron microscopy (TEM); Single ion strike; Radiation effects; Ion irradiation; Extreme environments;
Keywords: تابش یون; Ion irradiation; Crystal rotation; Thin films; In situ TEM;
Keywords: تابش یون; Copper alloys; Ion irradiation; Precipitation; Core/shell structure; Monte Carlo techniques;
Keywords: تابش یون; Ceria; Silicon carbide; Ion irradiation
Keywords: تابش یون; Helium; In situ transmission electron microscopy; Iron; Ion irradiation; Dislocation loop;
Keywords: تابش یون; Metallic glass; Nanowire; Tensile ductility; Ion irradiation; Fictive temperature;
Keywords: تابش یون; Ion irradiation; Metallic glass; Nanocrystallization; Hardness; Corrosion resistance; Wettability;
Keywords: تابش یون; Graphene; Ion irradiation; XAS; Raman spectroscopy; XPS;
Keywords: تابش یون; Ion irradiation; Mechanical properties; Radiation damage; High temperature nanoindentation
Keywords: تابش یون; Nano patterning; Photoluminescence; AFM; Ion irradiation
Keywords: تابش یون; Carbon nanotubes; Ion irradiation; Molecular dynamics; Computer simulations
Keywords: تابش یون; Metallic glass; Ion irradiation; Plastic deformation; Nanostructure
Keywords: تابش یون; Nanoindentation; Irradiation hardening; Ion irradiation; Fe–Cr alloy
The formation and characterization of optical waveguide in Nd:YLF crystal by 4.5-MeV Si ion implantation
Keywords: تابش یون; Ion irradiation; Waveguide; Photoluminescence; Nd:YLF;
Improvement of hydrogen absorption in Ti induced by ion irradiation
Keywords: تابش یون; Hydrogen storage; Metal hydrides; Titanium; Ion irradiation; ERDA;
Quantifying early stage irradiation damage from nanoindentation pop-in tests
Keywords: تابش یون; Ion irradiation; Nanoindentation; Pop-in; Incipient plasticity;
Dose rate dependence of Cr precipitation in an ion-irradiated Fe18Cr alloy
Keywords: تابش یون; Fe-Cr; Ion irradiation; Precipitation; Dose rate; Atom probe tomography;
Thermal stability of helium bubble superlattice in Mo under TEM in-situ heating
Keywords: تابش یون; Helium; Ion irradiation; Gas bubble superlattice; Transmission electron microscopy; In-situ heating;
Micro-tensile testing of reduced-activation ferritic steel F82H irradiated with Fe and He ions
Keywords: تابش یون; Reduced-activation ferritic steel; Ion irradiation; Helium; Micro-tensile testing;
Improving the quality of AMR of permalloy films by N2+ ion irradiation
Keywords: تابش یون; Permalloy; Ion irradiation; AMR; Magnetic properties;
Comparison of the F-type center thermal annealing in heavy-ion and neutron irradiated Al2O3 single crystals
Keywords: تابش یون; Aluminum oxide; Radiation defects; Neutron irradiation; Ion irradiation; Optical absorption; Diffusion; Thermal annealing; Meyer-Neldel rule;
Mechanical and structural properties of ODS RAF steels submitted to low-energy ions irradiation
Keywords: تابش یون; ODS steel; Ion irradiation; Mechanical properties; Nanoindentation;
Effect of ballistic damage in UO2 samples under ion beam irradiations studied by in situ Raman spectroscopy
Keywords: تابش یون; Raman spectroscopy; Uranium dioxyde; Ion irradiation;
Instability of MX and M23C6 type precipitates in F82H steels under 2.8Â MeV Fe2+ irradiation at 673Â K
Keywords: تابش یون; F82H; Ion irradiation; Precipitates; Instability;
Modification of structural and magnetic properties in Fe/Pt (1Â 1Â 1)-oriented multilayers with ion beam irradiation
Keywords: تابش یون; Magnetic metallic thin films; Multilayers; Magnetic and structural properties; Ion irradiation;
Raman study of InxGa1âxN (xâ¯=â¯0.32-0.9) films irradiated with Xe ions at room temperature and 773â¯K
Keywords: تابش یون; InGaN; Ion irradiation; Raman spectroscopy;
Monitoring volatilization products using Residual Gas Analyzers during MeV ion beam irradiations
Keywords: تابش یون; Residual Gas Analyzers; Ion irradiation; Radiolysis; Volatilization;
In-situ luminescence studies of silica glass during low energy H+, He+ and O+ irradiation
Keywords: تابش یون; Ion irradiation; Luminescence; Silica glass; Energy loss; Defect;
The microstructural evolution of chemical disorder and ferromagnetism in He+ irradiated FePt3 films
Keywords: تابش یون; Chemical disorder; Ion irradiation; Thin film; Bit patterned media; Ferromagnetism; Ion fluence;
Surface structuring in polypropylene using Ar+ beam sputtering: Pattern transition from ripples to dot nanostructures
Keywords: تابش یون; Ion irradiation; Surface ripples; Atomic Force Microscopy (AFM); Polymer;
Modification of WS2 nanosheets with controllable layers via oxygen ion irradiation
Keywords: تابش یون; WS2 nanosheets; Ion irradiation; Controllable layers; Band gap;
Investigation of microstructure defects in EUROFER97 under He+/Fe3+ dual ion beam irradiation
Keywords: تابش یون; Radiation effects; Ion irradiation; Cluster dynamics; Fusion; Helium bubbles; RAFM steels;
Graphene oxide layers modified by irradiation with 1.2â¯MeV He+ ions
Keywords: تابش یون; Graphene oxide; Ion irradiation; Chemical properties; Electrical properties;
Modifications in structural, optical and electrical properties of epitaxial graphene on SiC due to 100Â MeV silver ion irradiation
Keywords: تابش یون; Ion irradiation; Fluence; Epitaxial graphene; Silicon carbide; Optoelectronic;
Microstructural evolution of epitaxial Ti3AlC2 film on sapphire under ion irradiation and nanoindentation-induced deformation
Keywords: تابش یون; Ion irradiation; Accident tolerant fuels; Fuel cladding coating; Ti3AlC2; MAX phase film;
Microstructural evolution and mechanical properties in Cu48Zr48Al4 bulk metallic glass composites induced by He+ ion irradiation
Keywords: تابش یون; Ion irradiation; Metallic glass composites; Martensitic transformation; Nanoindentation;
Characterization of ordered dislocation loop raft in Fe3+ irradiated pure iron at 300â¯Â°C
Keywords: تابش یون; Ion irradiation; Dislocation loop; Ordered structure; Burgers vector;
Thermodynamic mixing energy and heterogeneous diffusion uncover the mechanisms of radiation damage reduction in single-phase Ni-Fe alloys
Keywords: تابش یون; Atomistic simulation; Ion irradiation; Damage reduction mechanisms; Heterogeneous diffusion; Single-phase alloys;
Enhanced photoelectrochemical performance of TiO2 through controlled Ar+ ion irradiation: A combined experimental and theoretical study
Keywords: تابش یون; Ion irradiation; TiO2; Vacancy; Photoelectrochemical water splitting;
3â¯MeV proton irradiation effects on surface, structural, field emission and electrical properties of brass
Keywords: تابش یون; Ion irradiation; 3â¯MeV proton; FESEM analysis; Field emission properties; XRD analysis;
Investigation of ion irradiation hardening behaviors of tempered and long-term thermal aged T92 steel
Keywords: تابش یون; Ferritic/martensitic steels; Ion irradiation; Thermal aging; Irradiation hardening;
Studies of the electronic excitation modifications induced by SHI of Au ions in RF sputtered ZrO2 thin films
Keywords: تابش یون; Zirconium oxide; Ion irradiation; XRD; AFM; UV-Visible; FTIR; PL and RBS;
TEM in situ cube-corner indentation analysis using ViBe motion detection algorithm
Keywords: تابش یون; Ion irradiation; Oxide dispersion strengthened; In situ; Indentation; Picoindenter; TEM; TEM mechanical testing;
TEM characterization of irradiated microstructure of Fe-9%Cr ODS and ferritic-martensitic alloys
Keywords: تابش یون; Dislocation loops; Voids; Ion irradiation; Neutron irradiation; Oxide dispersion strengthened; Ferritic-martensitic;
Characterisation of ODS Fe-14Cr-2W-0.3Ti before and after high temperature triple and low temperature single ion irradiations
Keywords: تابش یون; Oxide dispersion strengthened steels; Ion irradiation; Transmission Electron Microscopy; Nanoindentation; Atom Probe Tomography; Nanoparticles;