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February 8, 2026NANO0 citations

Achieving sheet-on-sheet structure of Pt and Ni(OH) 2 for electrochemical detection of ammonia-nitrogen

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YHYingying HuangTWTianyue WangXZXinxin Zhao

Key Points

  • This research aims to develop a new sensor using Pt and Ni(OH)2 nanosheets to improve the detection of ammonia-nitrogen in water.
  • Fabricated Pt-Ni(OH)2-NF sensor on Ni foam using hydrothermal synthesis method
  • Controlled electrochemical deposition of Pt nanosheets by adjusting time and potential
  • Evaluated catalytic activity through ammonia oxidation reaction
  • Utilized differential pulse voltammetry for electrochemical performance testing
  • Optimized Pt-Ni(OH)2-NF sensor exhibited superior electrochemical catalytic activity for ammonia detection
  • Achieved a detection limit of 1.124 μM and a sensitivity of 61.4 μA μM-1
  • Demonstrated a linear detection range from 5 to 1000 μM
  • Confirmed excellent selectivity and overall performance in electrochemical measurements

Abstract

This work introduced one new sensor based on Ni(OH) 2 nanosheets and Pt nanosheets on the surface of Ni foam (Pt-Ni(OH) 2 -NF) for electrochemical detection of ammonia-nitrogen in the aqueous environment. This Pt-Ni(OH) 2 -NF sensor has been fabricated via hydrothermal synthesis method and electrochemical I-t technique. The electrochemical deposition process of Pt nanosheets have been controlled including deposition time and deposition potential. The optimized Pt-Ni(OH) 2 -NF showed the best electrochemical catalytic activity for ammonia oxidation reaction compared to other samples. Furthermore, optimized Pt-Ni(OH) 2 -NF exhibited great electrochemical detection performances for ammonia-nitrogen via differential pulse voltammetry (DPV) technique. The detection limit, sensitivity and linear range have been calculated with the value of 1.124 μM, 61.4 μA μM -1 and from 5 to 1000 μM based on the measured results. Finally, the selectivity and other measurements have been conducted and showed the great performances.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/698827b40fc35cd7a8846a88https://doi.org/10.1142/s1793292026500785
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