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April 10, 2026Nanomaterials1 citationsOpen Access

Mn-CeO2 Nanomaterial for the Colorimetric Sensing of H2O2 and Ascorbic Acid

FMFaxue MaHuanghe Science and Technology CollegeXWXiangju WuShandong Academy of Agricultural SciencesZMZhen MaHuanghe Science and Technology College

Key Points

  • This work aims to develop and characterize Mn-CeO2 nanomaterials for sensing hydrogen peroxide and ascorbic acid.
  • Prepared CeO2 nanoflowers and doped with various metals.
  • Screened manganese-doped CeO2 for highest peroxidase activity.
  • Examined effects of doping ratio, pH, temperature, reaction time, and material concentration.
  • Developed a colorimetric method for detection of H2O2 and ascorbic acid.
  • Mn-CeO2 showed high enzyme-like activity due to strong metal-support interaction.
  • Linear response for H2O2 detected between 2.0–120.0 μM (R2 = 0.9959, LOD = 1.7 μM).
  • Linear relationship found for ascorbic acid detection (1.0–40.0 μM, R2 = 0.992, LOD = 0.98 μM).

Abstract

Owing to the high stability and low cost of nanozymes, they have been extensively investigated and reported. In this work, highly active CeO2 nanoflowers were first prepared and then different metal elements were doped into the CeO2 nanoflower matrix via a novel synthesis method to fabricate M-CeO2 (M = Cu, Fe, Co, Mn, La) nanomaterials. Mn-CeO2 with the highest peroxidase-like activity was selected via systematic screening, the as-prepared Mn-CeO2 nanocomposites exhibited enhanced enzyme-like activity due to the strong metal-support interaction. This article explored the effects of doping ratio, pH, temperature, reaction time, and material concentration on its activity. A simple sensitive and selective colorimetric method was established and successfully used to detect hydrogen peroxide and ascorbic acid sensitively. When the hydrogen peroxide (H2O2) concentration is within the 2.0–120.0 μM range, the UV-visible absorbance at 652 nm was associated linearly with the H2O2 concentration, R2 = 0.9959, LOD = 1.7 μM (S/N = 3). The absorbance of the reaction system showed a good linear relationship with the ascorbic acid (AA) concentration (1.0–40.0 μM, R2 = 0.992), LOD = 0.98 μM (S/N = 3). This study provides an effective way to construct efficient nanozymes and their potential applications in sensing and detection.

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Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/69d8940c6c1944d70ce04fdfhttps://doi.org/10.3390/nano16070443
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