Core-shelled multimetallic nanoparticles have unique catalytic properties compared to their single-element counterparts. Due to the different lattice parameters of the core and shell, the strain field is built up at the interface between the two phases. As for thin films, a formation of misfit and threading dislocations is an approach to release interface strain. However, for two-phase nanoparticles especially when their sizes are at nanometer scale, their dislocation formation in the volume remains to be investigated owing to the large surface-to-volume ratio. Here, we confirmed the existence of dislocations in the Au-FePt core-shelled nanoparticles of sizes less than 10 nm. It is suggested that the different atom sizes of the core and the shell materials are likely to be a key factor to generate and lock dislocations inside the nanoparticles.
Alice Lay, Chris Siefe, Stefan Fischer, Randy D. Mehlenbacher, Feng Ke, Wendy L. Mao, Paul Alivisatos, Miriam B. Goodman, Jennifer A. Dionne, Alice Lay, Chris Siefe, Stefan Fischer, Randy D. Mehlenbacher, Feng Ke, Wendy L. Mao, Paul Alivisatos, Miriam B. Goodman, Jennifer A. Dionne
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