Abstract: Liquid Chromatography-Mass Spectrometry (LC-MS) has evolved into a cornerstone of analytical science. This review moves beyond a descriptive overview to provide a critical synthesis of the literature, highlighting technological advances, methodological strengths and limitations, and future opportunities. The novelty lies in its analytical perspective-evaluating challenges such as reproducibility, scalability, and regulatory adoption-while contextualizing innovations like highresolution mass analyzers, AI-driven data analysis, and sustainable LC-MS workflows. By combining critique with synthesis, this review offers insights into both the current state and the transformative potential of LC-MS. Mass spectrometry (MS) has significantly enhanced liquid-phase separations by enabling sensitive and precise analysis of complex mixtures. This review examines the integration of MS with chromatographic techniques, including UPLC, HRMS, and IMS. Advances in instrumentation, including novel ionization methods and miniaturization, have improved analytical performance. Methodologies critical for successful liquid phase separations, including sample preparation and chromatographic techniques, are discussed along with innovations in instrumentation such as miniaturization and novel ionization methods. Through miniaturization and automation, multiple parallel experiments can be conducted efficiently. Applications of liquid phase MS in pharmaceutical analysis, environmental monitoring, and metabolomics/proteomics illustrate its broad utility and evolving role. The interfaces for gas chromatography/mass spectrometry (GC/MS) and liquid chromatography/ mass spectrometry (LC/MS) are adapting to rapid developments in MS instrumentation and separation technologies. Recent decades have seen significant advances in analytical techniques like MS and NMR, applicable for the identification and structural analysis of molecules. Highthroughput experimentation is a growing field demanding fast analytical techniques for critical data generation. This review explores recent developments in coupling liquid chromatographic and electrophoretic separations with MS, facilitating structural elucidation and quantitation. It examines current trends, methodologies, and prospects in liquid phase MS, emphasizing the transformative impact of advancements and the drive toward realizing its full potential in analytical chemistry.
Barman et al. (Wed,) studied this question.