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Multimodal Analysis of Microplastics in Drinking Water using a Silicon Nanomembrane Analysis Pipeline
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Nanodevice Approaches for Detecting Micro- and Nanoplastics in Complex Matrices.

Rita Paola Debri1, Fabrizia Sepe2, Silvia Romano3

  • 1Faculty of Medicine and Surgery, Saint Camillus International University of Health Sciences, Via di Sant'Alessandro 8, 00131 Rome, Italy.

Nanomaterials (Basel, Switzerland)
|January 9, 2026
PubMed
Summary

New nanodevices offer enhanced detection of micro- and nanoplastics (MNPs) in the environment. These advanced tools promise greater sensitivity and real-time analysis, overcoming limitations of traditional methods for MNP monitoring.

Keywords:
biosensorsenvironmental monitoringlab-on-a-chipmicrofluidicsmicroplasticsnanodevicesnanoplasticsnanopore

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Area of Science:

  • Environmental Science
  • Analytical Chemistry
  • Nanotechnology

Background:

  • Micro- and nanoplastics (MNPs) are widespread environmental contaminants.
  • Their small size and diverse matrices present significant analytical challenges.
  • Conventional detection methods have limitations in sensitivity and throughput.

Purpose of the Study:

  • To review nanodevice-based detection methods for MNPs.
  • To compare nanodevices with conventional MNP analysis techniques.
  • To identify future needs for MNP detection technology.

Main Methods:

  • Review of current literature on nanodevices for MNP detection.
  • Analysis of principles, performance, and limitations of nanodevices.
  • Comparison with established spectroscopic, chromatographic, and microscopic methods.

Main Results:

  • Nanodevices, including nanosensors and nanopore systems, show promise for enhanced MNP detection.
  • These technologies offer improved sensitivity, specificity, and real-time, in situ capabilities.
  • Nanodevices facilitate high-throughput analysis and integrated characterization across various matrices.

Conclusions:

  • Nanodevices represent a significant advancement in MNP detection.
  • Further development is needed for standardization and matrix-specific adaptation.
  • Regulatory harmonization is crucial for widespread adoption of these technologies.