Synthesis of Cu2O particles by chemical reduction: Controlled morphology and size via pH and PEG for enhanced photocatalytic activity

  • Shin, Seongmin
  • Kubota, Yuta
  • Katsumata, Ken-ichi
  • Matsushita, Nobuhiro
  • Hong, Jeongsoo
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초록

This study presents a controllable synthesis method for Cu2O metal oxide using NaBH4 as a reducing agent, with systematic investigation into the effects of pH and PEG on particle size and morphology. Cu2O was successfully synthesized at pH 5 and 9, where OH-ions influenced particle shape by interacting with surface energy. Increasing the PEG amounts reduced the particle size, enabling size control with the smallest size at PEG 5 g. Comprehensive characterization was performed to determine the valence band position and optical properties, based on which the energy band structure relative to the NHE was derived. These results indicate the photo-catalytic potential of the synthesized Cu2O. These results not only demonstrate the photocatalytic potential of Cu2O but also provide a novel and tunable synthesis route to control both structural and electronic properties. This work offers an integrated framework for optimizing Cu-based nanomaterials for photocatalytic and other energy conversion applications.

키워드

Cu 2 O synthesisParticle sizeSurface propertiesBand structureGRAPHENE OXIDETHIN-FILMSNANOPARTICLESCOPPEROXIDATIONAGENTWATER
제목
Synthesis of Cu2O particles by chemical reduction: Controlled morphology and size via pH and PEG for enhanced photocatalytic activity
저자
Shin, SeongminKubota, YutaKatsumata, Ken-ichiMatsushita, NobuhiroHong, Jeongsoo
DOI
10.1016/j.mseb.2025.119114
발행일
2026-03
유형
Article
저널명
Materials Science & Engineering B: Solid-State Materials for Advanced Technology
325