Growth of Cuprous Oxide Particles in Liquid-Phase Synthesis Investigated by X-ray Laser Diffraction.

Oroguchi, Tomotaka; Yoshidome, Takashi; Yamamoto, Takahiro; Nakasako, Masayoshi · Nano Lett · 2018

basic_science · Level V

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Abstract

Cuprous oxide (Cu<sub>2</sub>O) particles obtained by surfactant-assisted liquid-phase synthesis have cuboid shapes but the internal structures are difficult to be visualized by electron microscopy. Herein, we investigated the internal structures of numerous individual Cu<sub>2</sub>O particles with submicrometer dimensions by X-ray diffraction imaging (XDI) using X-ray free-electron laser (XFEL) pulses. The reconstructed two-dimensional electron density maps, which displayed inhomogeneous internal structures, were divided into five classes characterized by the positions and shapes of high and low electron density areas. Further analysis of the maps in each class by a manifold learning algorithm revealed that the internal structures of Cu<sub>2</sub>O particles varied in correlation with total electron density while retaining the characteristics within each class. On the basis of the analyses, we proposed a growth mechanism to yield the inhomogeneity in the internal structures of Cu<sub>2</sub>O particles in surfactant-mediated liquid-phase synthesis.