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VO2 as a Highly Efficient Electrocatalyst for the Oxygen Evolution Reaction.


ABSTRACT: Herein, we report high electrocatalytic activity of monoclinic VO2 (M1 phase) for the oxygen evolution reaction (OER) for the first time. The single-phase VO2 (M1) nanoparticles are prepared in the form of uniformly covering the surface of individual carbon fibers constituting a carbon fiber paper (CFP). The VO2 nanoparticles reveal the metal-insulator phase transition at ca. 65 °C (heating) and 62 °C (cooling) with low thermal hysteresis, indicating a high concentration of structural defect which is considered a grain boundary among VO2 nanoparticles with some particle coalescence. Consequently, the VO2/CFP shows a high electrocatalytic OER activity with the lowest η10 (350 mV) and Tafel slope (46 mV/dec) values in a 1 M aqueous solution of KOH as compared to those of the vacuum annealed V2O5 and the hydrothermally grown VO2 (M1), α-V2O5, and γ'-V2O5. The catalytically active site is considered V4+ components and V4+/5+ redox couples in VO2. The oxidation state of V4+ is revealed to be more favorable to the OER catalysis compared to that of V5+ in vanadium oxide through comparative studies. Furthermore, the amount of V5+ component is found to be increased on the surface of VO2 catalyst during the OER, giving rise to the performance degradation. This work suggests V4+ and its redox couple as a novel active component for the OER in metal-oxide electrocatalysts.

SUBMITTER: Choi YH 

PROVIDER: S-EPMC8951100 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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VO<sub>2</sub> as a Highly Efficient Electrocatalyst for the Oxygen Evolution Reaction.

Choi Yun-Hyuk YH  

Nanomaterials (Basel, Switzerland) 20220312 6


Herein, we report high electrocatalytic activity of monoclinic VO<sub>2</sub> (M1 phase) for the oxygen evolution reaction (OER) for the first time. The single-phase VO<sub>2</sub> (M1) nanoparticles are prepared in the form of uniformly covering the surface of individual carbon fibers constituting a carbon fiber paper (CFP). The VO<sub>2</sub> nanoparticles reveal the metal-insulator phase transition at <i>ca.</i> 65 °C (heating) and 62 °C (cooling) with low thermal hysteresis, indicating a hig  ...[more]

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