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Can I read Non-noble-metal TiC-nanoparticle-promoted charge separation and photocatalytic degradation performance on Bi~2~O~3~ microrods: degradation pathway and mechanism investigation on EtoBox?

Non-noble-metal TiC-nanoparticle-promoted charge separation and photocatalytic degradation performance on Bi~2~O~3~ microrods: degradation pathway and mechanism investigation by Tao Xian; Ke Ma; Lijing Di; Xuelian Ma; Xiaofeng Sun; Hua Yang is a Chemistry article available to read on EtoBox.

What is Non-noble-metal TiC-nanoparticle-promoted charge separation and photocatalytic degradation performance on Bi~2~O~3~ microrods: degradation pathway and mechanism investigation about?

A promising binary TiC/Bi~2~O~3~ photocatalyst was obtained __via__ a simple hydrothermal route. The decoration of TiC led to an obvious improvement in the photocatalytic activity of Bi~2~O~3~ for the degradation of AO7 and TC.

Who reads Non-noble-metal TiC-nanoparticle-promoted charge separation and photocatalytic degradation performance on Bi~2~O~3~ microrods: degradation pathway and mechanism investigation?

It is typically read by researchers, students, and practitioners in Chemistry.

Author
Tao Xian; Ke Ma; Lijing Di; Xuelian Ma; Xiaofeng Sun; Hua Yang
Publisher
Royal Society of Chemistry (RSC)
Published
2023
Language
EN
Field
Chemistry (Physical Sciences)