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Updated: Jun 24, 2026

Atomic Layer Deposition of Vanadium Dioxide and a Temperature-dependent Optical Model
Published on: May 23, 2018
Tuning the electronic structure of molybdenum oxide nanoclusters with vanadium doping for electrochemical H2O2
Luyao Zhang1, Yingbo Li1, Shuhao Zhang2
1Department of Chemistry, Southern University of Science and Technology Shenzhen 518055 China yangf3@sustech.edu.cn.
Abstract:
Electrosynthesis of H2O2 has gained tremendous attention as a highly promising alternative strategy to the traditional anthraquinone technique. Nevertheless, there is still a lack of highly efficient, robust, and low-cost electrocatalysts to propel the industrialization of electrosynthesis of H2O2. Herein, we constructed carboxyl functionalized CNTs decorated with V-doped MoO x nanoclusters (MoVO x NCs/CNTs) with uniform subnanometer size (∼0.7 nm). The incorporation of V significantly modified the electronic structure of MoO x , enabling an impressive H2O2 electrosynthesis selectivity of up to 98% at 0.4 V, surpassing that of the undoped MoO x NCs/CNTs. The MoVO x NCs/CNTs catalyst retained 93% H2O2 electrosynthesis selectivity across a wide potential range (0.2-0.6 V). Moreover, the catalyst demonstrated excellent activity stability for 10 h with minimal decay. This work offers a pathway by rational design of a subnanometer catalyst for the electrocatalysis of O2 to H2O2.
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