Issue 2, 2022

Single-walled carbon nanotubes as a reducing agent for the synthesis of a Prussian blue-based composite: a quartz crystal microbalance study

Abstract

We investigated the synthesis mechanism of Prussian blue (PB) crystals supported on single-walled carbon nanotubes (SWCNTs), by performing in situ quartz crystal microbalance (QCM) measurements to probe the change in the electrode mass during the reaction, and using photoirradiation at designated stages of the process. We found that in contrast to existing hypotheses, light irradiation played no role in the synthesis process of Prussian blue on SWCNTs. On the other hand, the number of electrons transferred per one mole of the obtained product, and the number of electrons transferrable from SWCNTs, calculated from the density of states (DOS) of the SWCNTs in the sample, both favor the hypothesis of the reaction being triggered by direct electron transfer from SWCNTs to Fe3+, which occurs because of the energy difference between the Fermi level of SWCNTs and redox potential of Fe3+ ions.

Graphical abstract: Single-walled carbon nanotubes as a reducing agent for the synthesis of a Prussian blue-based composite: a quartz crystal microbalance study

Supplementary files

Article information

Article type
Paper
Submitted
12 Oct 2021
Accepted
19 Nov 2021
First published
24 Nov 2021
This article is Open Access
Creative Commons BY license

Nanoscale Adv., 2022,4, 510-520

Single-walled carbon nanotubes as a reducing agent for the synthesis of a Prussian blue-based composite: a quartz crystal microbalance study

Y. Ishii, A. Al-zubaidi, Y. Taniguchi, S. Jindo and S. Kawasaki, Nanoscale Adv., 2022, 4, 510 DOI: 10.1039/D1NA00739D

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