Nanoscale Visualization of Phase Transition in Melting of Sn–Bi Particles by In situ Hard X-ray Ptychographic Coherent Diffraction Imaging

The phase transition in the melting of Sn–Bi eutectic solder alloy particles was observed by in situ hard X-ray ptychographic coherent diffraction imaging with a pin-point heating system. Ptychographic diffraction patterns of micrometer-sized Sn–Bi particles were collected at temperatures from room...

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Veröffentlicht in:Microscopy and microanalysis 2020-10, Vol.26 (5), p.878-885
Hauptverfasser: Ishiguro, Nozomu, Higashino, Takaya, Hirose, Makoto, Takahashi, Yukio
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Sprache:eng
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Zusammenfassung:The phase transition in the melting of Sn–Bi eutectic solder alloy particles was observed by in situ hard X-ray ptychographic coherent diffraction imaging with a pin-point heating system. Ptychographic diffraction patterns of micrometer-sized Sn–Bi particles were collected at temperatures from room temperature to 540 K. The projection images of each particle were reconstructed at a spatial resolution of 25 nm, showing differences in the phase shifts due to two crystal phases in the Sn–Bi alloy system and the Sn/Bi oxides at the surface. By quantitatively evaluating the Bi content, it became clear that the nonuniformity of the composition of Sn and Bi at the single-particle level exists when the particles are synthesized by centrifugal atomization.
ISSN:1431-9276
1435-8115
DOI:10.1017/S1431927620024332