Breakthrough in Nanotechnology: New Sensor for Formaldehyde Detection

Researchers at the Durban University of Technology have made a significant discovery in the field of nanotechnology, developing a selective and sensitive electrochemical sensor for detecting formaldehyde in cosmetics. The sensor, based on cobalt ferrite nanoparticles (CoFe2O4 NPs), has been synthesized using a green biosynthetic route and characterized using various spectroscopic and microscopic techniques. The sensor has demonstrated excellent electrochemical performance, linear dynamic range, and selectivity, making it a promising tool for monitoring harmful substances in consumer products.

Key Takeaways:

  • The sensor is based on cobalt ferrite nanoparticles (CoFe2O4 NPs) synthesized using a green biosynthetic route.
  • The sensor has been characterized using UV-Visible spectroscopy (UV-Vis), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), and energy-dispersive X-ray spectroscopy (EDX).
  • The electrochemical performance of the sensor was evaluated using cyclic voltammetry (CV), electrochemical impedance spectroscopy (EIS), differential pulse voltammetry (DPV), and chronoamperometry (CA).
  • The sensor demonstrated a linear dynamic range with a regression coefficient (R2) of 0.9193 and achieved limits of detection (LoD) and quantification (LoQ) of 0.056 mM and 0.184 mM, respectively, using DPV.
  • The sensor exhibited excellent selectivity, with minimal interference from common substances such as ethanol and acetone at 10 mM concentrations.
  • The sensor demonstrated excellent repeatability and reproducibility, with relative standard deviation (RSD) values of less than 5%.
  • The sensor was successfully applied to detect formaldehyde in nail polish remover, yielding recovery rates ranging from 94 to 113%.

Statistics:

  • Limits of detection (LoD): 0.056 mM
  • Limits of quantification (LoQ): 0.184 mM
  • Regression coefficient (R2): 0.9193
  • Relative standard deviation (RSD) values: less than 5%
  • Recovery rates in nail polish remover: 94-113%

Sources:

  • Biosynthesized Cofe 2 o 4 Nanoparticles for Enhanced Electrocatalytic Detection of Formaldehyde In Cosmetic Products. Electrocatalysis, 2025. Springer, One New York Plaza, Suite 4600, New York, Ny, United States. (www.springer.com; www.springerlink.com/content/1868-2529/)
  • NewsRx. New Nanoparticles Study Findings Have Been Reported from Durban University of Technology (Biosynthesized Cofe 2 o 4 Nanoparticles for Enhanced Electrocatalytic Detection of Formaldehyde In Cosmetic Products). Nanotechnology Weekly. August 25, 2025; p 2184.