Matrix effects demystified: Strategies for resolving challenges in analytical separations of complex samples

Author:

Williams Madison L.12,Olomukoro Aghogho Abigail12,Emmons Ronald V.12,Godage Nipunika H.12,Gionfriddo Emanuela123ORCID

Affiliation:

1. Department of Chemistry and Biochemistry The University of Toledo Toledo Ohio USA

2. Dr. Nina McClelland Laboratory for Water Chemistry and Environmental Analysis The University of Toledo Toledo Ohio USA

3. School of Green Chemistry and Engineering The University of Toledo Toledo Ohio USA

Abstract

Matrix effects can significantly impede the accuracy, sensitivity, and reliability of separation techniques presenting a formidable challenge to the analytical process. It is crucial to address matrix effects to achieve accurate and precise measurements in complex matrices. The multifaceted nature of matrix effects which can be influenced by factors such as target analyte, sample preparation protocol, composition, and choice of instrument necessitates a pragmatic approach when analyzing complex matrices. This review aims to highlight common challenges associated with matrix effects throughout the entire analytical process with emphasis on gas chromatography‐mass spectrometry, liquid chromatography‐mass spectrometry, and sample preparation techniques. These techniques are susceptible to matrix effects that could lead to ion suppression/enhancement or impact the analyte signal at various stages of the analytical workflow. The assessment, quantification, and mitigation of matrix effects are necessary in developing any analytical method. Strategies can be implemented to reduce or eliminate the matrix effect by changing the type of ionization, improving extraction and clean‐up methods, optimization of chromatography conditions, and corrective calibration methods. While development of an effective strategy to completely mitigate matrix effects remains elusive, an integrated approach that combines sample preparation, analytical extraction, and effective instrumental analysis remains the most promising avenue for identifying and resolving matrix effects.

Funder

National Science Foundation

Publisher

Wiley

Subject

Filtration and Separation,Analytical Chemistry

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