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Volumn 268, Issue 19, 2010, Pages 3269-3272
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AFM characterization of model nuclear fuel oxide multilayer structures modified by heavy ion beam irradiation
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Author keywords
Atomic force microscopy; Heavy ions; Metal oxide films; Radiation effects; Surface modification
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Indexed keywords
ACTINIDE MATERIALS;
AFM;
ANNEALED SAMPLES;
ATOMIC FORCE IMAGING;
CRACK-HEALING;
E-BEAM DEPOSITION;
FISSILE MATERIALS;
FLUENCES;
FORM DESIGN;
IDEALIZED MODELS;
MATRIX;
METAL OXIDE FILMS;
MICROSTRUCTURE AND MECHANICAL PROPERTIES;
MULTILAYER STRUCTURES;
NEW MODEL;
RADIATION TOLERANT;
ROOM TEMPERATURE;
SI (1 1 1);
SINGLE LAYER;
SURFACE MODIFICATION;
TRILAYER STRUCTURE;
ANNEALING;
ATOMIC FORCE MICROSCOPY;
ATOMS;
CHEMICAL MODIFICATION;
CRYSTALLOGRAPHY;
DISPERSIONS;
FISSION PRODUCTS;
FUELS;
HAFNIUM COMPOUNDS;
HEAVY IONS;
IMAGING TECHNIQUES;
ION BEAMS;
IRRADIATION;
MECHANICAL PROPERTIES;
METALLIC COMPOUNDS;
MULTILAYER FILMS;
MULTILAYERS;
RADIATION EFFECTS;
SURFACES;
OXIDE FILMS;
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EID: 77956173272
PISSN: 0168583X
EISSN: None
Source Type: Journal
DOI: 10.1016/j.nimb.2010.06.005 Document Type: Conference Paper |
Times cited : (1)
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References (11)
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