MagNanoTrap Enrichment Empowers Ultra‐Sensitive Quantification of Mixed Nanoplastic Particles From Environmental Water Samples

M Maochao Mao (Institute of Biotechnology RWTH Aachen University Aachen Germany) M Marian Bienstein (Institute of Biotechnology RWTH Aachen University Aachen Germany) F Francisca Contreras (Institute of Biotechnology RWTH Aachen University Aachen Germany) D Dong Wang L Lilin Feng (Institute of Biotechnology RWTH Aachen University Aachen Germany) U Ulrich Schwaneberg

Abstract

ABSTRACT The detection and quantification of nanoplastic particles (NPs) in environmental waters are crucial for monitoring their fate and assessing health impacts. However, the lack of sensitive and universal detection systems hinders effective regulation, as noted by the EU Commission. Here, we present the MagNanoTrap enrichment platform for NPs capture, which integrates a bifunctional peptide (LCI‐DZ‐MBP1) with Fe 3 O 4 superparamagnetic nanoparticles (SPIONs). The LCI‐peptide binds to SPIONs, while the MBP1‐peptide serves as a general binder for common polymers such as polypropylene (PP), polyethylene (PE), polystyrene (PS), and polyethylene terephthalate (PET). MagNanoTrap exhibits a maximum adsorption capacity of 3.95 ± 0.14 g/g for PS‐COOH 500 nm NPs and, when coupled with pyrolysis–gas chromatography/mass spectrometry (Py‐GC/MS), enables reliable compositional analysis for mixed NPs and quantification down to 0.061 µg for PS. The achieved sensitivity ensures that a 1 L water sample is usually sufficient to detect and quantify NPs in environmental water samples. High salt ion concentrations promote hydrophobic interactions, enhancing NPs' binding affinity. The versatility of MagNanoTrap was demonstrated through successful enrichment and quantification of diverse NPs, including PP, PS, PE, PET, poly(methyl methacrylate), polycarbonate, nylon 6, and nylon 66, across seven environmental water matrices from river, lake, marine, and wastewater sources.

Article Details

Volume / Issue Vol. 65, Issue 20
Published May 11, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (6)

M

Maochao Mao

Institute of Biotechnology RWTH Aachen University Aachen Germany

M

Marian Bienstein

Institute of Biotechnology RWTH Aachen University Aachen Germany

F

Francisca Contreras

Institute of Biotechnology RWTH Aachen University Aachen Germany

D

Dong Wang

L

Lilin Feng

Institute of Biotechnology RWTH Aachen University Aachen Germany

U

Ulrich Schwaneberg