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Structure of nanometre-sized Xe particles embedded in Al crystals
Authors:M. SONG,K. MITSUISHI,K. FURUYA,C. W. ALLEN&dagger  ,R. C. BIRTCHER&dagger  ,&   S. E. DONNELLY&Dagger  
Affiliation:National Institute for Materials Science, 3–13 Sakura, Tsukuba, Ibaraki 3050003 Japan;Materials Science Division, Argonne National Laboratory, Argonne, IL 60439, U.S.A.; Joule Physics Laboratory, University of Salford, Manchester M5 4WT, U.K.
Abstract:The structure and lattice parameters of Xe particles about 1 nm to about 6 nm in size embedded in Al were investigated with off‐Bragg condition high‐resolution transmission electron microscopy. An Xe particle about 1 nm in size had different structural properties from those 2–6 nm in sizes. Some 1‐nm Xe particles had an face‐centred cubic (f.c.c.) structure with the same orientation as the Al matrix, whereas others of the same size had a non‐f.c.c. structure. The lattice parameters of a 1‐nm f.c.c. Xe particle were about 20% smaller than the average value obtained from electron diffraction, i.e. the particle was compressed by about 80%. The lattice parameters of Xe crystals about 2 nm to about 6 nm in size were almost the same as those obtained from diffraction results. One of the reasons for the extra compression seen with a 1‐nm Xe particle is the increase in pressure inside an Xe particle with decreasing particle size.
Keywords:Al    HREM    nanoparticles    Xe particles
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