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Fluorescence-Guided Raman Spectroscopy with an Integrated Adapter for Faster and Cost-Effective Microplastic Detection

Analytical Chemistry 2025 1 citation ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 43 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Liam Kelleher, Liam Kelleher, Liam Kelleher, Anna Kukkola Anna Kukkola Anna Kukkola Stefan Krause, Stefan Krause, Anna Kukkola Iseult Lynch, Stefan Krause, Stefan Krause, Stefan Krause, Anna Kukkola Anna Kukkola Stefan Krause, Anna Kukkola Stefan Krause, Stefan Krause, Iseult Lynch, Stefan Krause, Stefan Krause, Anna Kukkola Stefan Krause, Anna Kukkola Stefan Krause, Liam Kelleher, Stefan Krause, Iseult Lynch, Stefan Krause, Anna Kukkola Stefan Krause, Anna Kukkola Stefan Krause, Anna Kukkola Liam Kelleher, Iseult Lynch, Stefan Krause, Stefan Krause, Iseult Lynch, Stefan Krause, Iseult Lynch, Iseult Lynch, Stefan Krause, Iseult Lynch, Stefan Krause, Iseult Lynch, Liam Kelleher, Stefan Krause, Iseult Lynch, Iseult Lynch, Iseult Lynch, Stefan Krause, Iseult Lynch, Iseult Lynch, Iseult Lynch, Stefan Krause, Iseult Lynch, Stefan Krause, Stefan Krause, Stefan Krause, Iseult Lynch, Stefan Krause, Anna Kukkola Stefan Krause, Stefan Krause, Iseult Lynch, Anna Kukkola Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Iseult Lynch, Stefan Krause, Stefan Krause, Liam Kelleher, Liam Kelleher, Liam Kelleher, Stefan Krause, Liam Kelleher, Liam Kelleher, Anna Kukkola Anna Kukkola Anna Kukkola Stefan Krause, Iseult Lynch, Anna Kukkola Stefan Krause, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Anna Kukkola Iseult Lynch, Stefan Krause, Liam Kelleher, Stefan Krause, Stefan Krause, Iseult Lynch, Stefan Krause, Stefan Krause, Stefan Krause, Liam Kelleher, Stefan Krause, Liam Kelleher, Anna Kukkola Stefan Krause, Anna Kukkola Anna Kukkola Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Liam Kelleher, Liam Kelleher, Liam Kelleher, Liam Kelleher, Anna Kukkola Stefan Krause, Anna Kukkola Stefan Krause, Iseult Lynch, Iseult Lynch, Liam Kelleher, Stefan Krause, Stefan Krause, Anna Kukkola Stefan Krause, Liam Kelleher, Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Iseult Lynch, Stefan Krause, Anna Kukkola Liam Kelleher, Anna Kukkola Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Stefan Krause, Iseult Lynch, Stefan Krause, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Stefan Krause, Anna Kukkola Stefan Krause, Stefan Krause, Stefan Krause, Anna Kukkola Liam Kelleher, Stefan Krause, Iseult Lynch, Iseult Lynch, Stefan Krause, Iseult Lynch, Iseult Lynch, Iseult Lynch, Anna Kukkola Stefan Krause, Anna Kukkola Iseult Lynch, Stefan Krause, Iseult Lynch, Stefan Krause, Iseult Lynch, Stefan Krause, Iseult Lynch, Iseult Lynch, Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Stefan Krause, Iseult Lynch, Stefan Krause, Iseult Lynch, Iseult Lynch, Anna Kukkola Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Anna Kukkola Iseult Lynch, Iseult Lynch, Stefan Krause, Liam Kelleher, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Iseult Lynch, Stefan Krause, Iseult Lynch, Iseult Lynch, Iseult Lynch, Anna Kukkola

Summary

A fluorescence-guided Raman spectroscopy system with integrated adaptive optics was developed to improve detection of microplastics in complex environmental matrices. The instrument advances the sensitivity and speed of microplastic identification, supporting more thorough environmental monitoring.

Study Type Environmental

Microplastic (MP) research is a rapidly evolving field, with their presence extensively evidenced across all environmental and biological matrices. However, the lack of standardized detection techniques in MP studies presents challenges in obtaining consistent and reliable results. This study introduces an integrated analytical approach within a single instrument, enhancing efficiency and accuracy in MP analysis. A cost-effective adapter was developed to seamlessly combine fluorescence staining with Nile Red and Raman spectroscopy for MP identification and polymer type determination. The system's principle and performance were evaluated using ten different stained polymer types, demonstrating compatibility with both measurement modalities without interference. The validity was assessed by using environmental samples, including river and drinking water samples, which were analyzed using the system. An average reduction of 84 ± 8% (33 min) in analysis time was achieved, with 87 ± 6% of MPs correctly identified (19 out of 22 spectra measured) in comparison to measurements without fluorescence guided prescreening, where only 9 ± 3% of MPs were identified (10 out of 108 spectra measured). This approach improved analytical accuracy due to prescreening selectivity with fluorescence, leading to measurement times being drastically reduced. These findings suggest that the proposed system offers a significant cost-effective advancement for laboratories using Raman spectroscopy, enabling greater selectivity and higher sample throughput.

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