This article provides a comprehensive comparative analysis of the environmental sustainability (greenness) of fluorescence-based and chromatographic analytical methods, a critical consideration for researchers and professionals in drug development.
Handheld Raman spectroscopy is revolutionizing pharmaceutical and biomedical analysis with its portability and non-destructive capabilities.
This article explores the groundbreaking application of handheld X-ray fluorescence (HHXRF) spectrometry for analyzing cigarette ash, a novel forensic methodology with significant implications for biomedical and clinical research.
This article provides a comprehensive guide for researchers and drug development professionals on managing calibration drift in field spectrometers.
Portable mass spectrometry (MS) systems are compact, field-deployable instruments that bring powerful analytical capabilities directly to the sample source, revolutionizing workflows in biomedical research and drug development.
This article provides a thorough overview of miniaturized Near-Infrared (NIR) instrumentation, a technology that has revolutionized analytical capabilities for researchers and drug development professionals.
This article explores the transformative role of handheld FT-IR spectroscopy in biomedical research and drug development.
This article explores the transformative impact of handheld spectrometers for researchers and scientists in drug development and biomedical fields.
This article provides a comprehensive comparison of noise performance between traditional grating-based and emerging speckle-based spectrometers, with a specific focus on applications in biomedical research and drug development.
This comprehensive guide provides researchers, scientists, and drug development professionals with a systematic approach to maintaining optimal LC-MS performance.