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October 11, 2025Chemistry - An Asian Journal2 citations

Size‐Tunable BaZrO3 Cubes and Rhombic Dodecahedra Exhibiting Facet‐Dependent Optical, Photocatalytic, and Piezocatalytic Behaviors

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BCBo‐Wei ChenBCBo‐Hao ChenPYPeidong Yang

Key Points

  • Cubes and rhombic dodecahedra show size effects that influence both optical properties and photocatalytic behaviors.
  • Rhombic dodecahedra have higher piezocatalytic activity than cubes, particularly in degrading rhodamine B.
  • X-ray diffraction patterns indicate size-related peak shifts, especially notable in rhombic dodecahedra.
  • Both shapes exhibit variations in lattice structure, impacting their photocatalytic efficiency.

Abstract

Abstract BaZrO 3 cubes with four average sizes from 167 to 671 nm, and rhombic dodecahedra with four size ranges from 90 to 627 nm, have been synthesized solvothermally. In addition to slight cell constant differences between cubes and rhombic dodecahedra, synchrotron X‐ray diffraction (XRD) patterns verify size‐related peak shifts especially for rhombic dodecahedra. The cubes also show peak asymmetry that can be fitted with bulk and surface layer lattice components. Fast fourier transform (FFT) of high‐resolution transmission electron microscopy (HR‐TEM) images reveal greater lattice point deviations in the area near the particle surfaces. The lattice disturbance and cell constant changes produce size and facet effects in their band gaps. Despite very low photocatalytic hydrogen evolution yields, cubes are moderately more active than rhombic dodecahedra in this reaction. However, rhombic dodecahedra exhibit a stronger piezoelectric response, and are piezocatalytically more active than cubes toward rhodamine B (RhB) degradation. These phenomena should be linked to their internal lattice variations.

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Cite This Study

Chen et al. (2025) studied this question.

synapsesocial.com/papers/68e9b1c1ba7d64b6fc132457https://doi.org/10.1002/asia.70364
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