4.7 Article

Heterostructured Mn3O4-2D material nanosheets: One-step vacuum kinetic spray deposition and non-enzymatic H2O2 sensing

Journal

CERAMICS INTERNATIONAL
Volume 47, Issue 24, Pages 35111-35123

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2021.09.054

Keywords

Mn3O4-MoS2 nanocomposites; Mn3O4-graphene nanocomposites; Nanoparticle deposition system (NPDS); Non-enzymatic H2O2 sensing; 2D material nanosheets

Funding

  1. National Research Foundation of Korea (NRF) [NRF-2021R1A2C1008248]

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Hybrid nanocomposites of Mn3O4 nanorods and 2D materials successfully deposited on nickel foam porous substrate showed improved sensitivity and selectivity for electrocatalytic detection of H2O2, with a wide linear detection range.
Hybrid nanocomposites (NCs) of Mn3O4 nanorods and 2D materials (MoS2 or graphene) nanosheets are successfully deposited on nickel foam porous substrate at room temperature using a one-step kinetic spray process in low-vacuum conditions. Mn3O4-based NCs are utilized for the electrocatalytic detection of H2O2 in 0.1 M NaOH. The synergy improvement between the Mn3O4 nanomds and either MoS2 or graphene nanosheets improved the non-enzymatic detection of H2O2. All modified electrodes exhibit a wide linear detection range from 0.2 to 1 mM. The working electrodes with Mn3O4 nanomds reveal high sensitivity of 2320 mu A mM(-1) cm(-2) toward H2O2 reduction. The hybridization between Mn3O4 nanorods and either MoS2 or graphene enhances the electrocatalytic reduction sensitivity to 3220 or 5400 IA mM(-1) cm(-2), respectively. Furthermore, the modified electrodes with the Mn3O4-2D material hybrid NCs exhibited high electrocatalytic reduction selectivity for H2O2 in 0.1 M NaOH compared with other interfering species.

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