TrAC Trends in Analytical Chemistry
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Solvent effects on mobile phases used in liquid chromatography: factor analysis applied to protonation equilibria and solvatochromic parameters
TrAC Trends in Analytical Chemistry - Tập 18 - Trang 472-479 - 1999
Traceability of sediment analysis
TrAC Trends in Analytical Chemistry - Tập 23 - Trang 217-236 - 2004
Multiplex bioanalytical methods for food and environmental monitoring
TrAC Trends in Analytical Chemistry - Tập 30 - Trang 1526-1537 - 2011
Quantum dots for Förster Resonance Energy Transfer (FRET)
TrAC Trends in Analytical Chemistry - Tập 125 - Trang 115819 - 2020
Structure, thermodynamic and transport properties of biological liquid crystals studied by X-ray methods
TrAC Trends in Analytical Chemistry - Tập 10 - Trang 156-162 - 1991
Applications of a DNA-electrochemical biosensor
TrAC Trends in Analytical Chemistry - Tập 79 - Trang 23-36 - 2016
An overview of analytical methods for enantiomeric determination of chiral pollutants in environmental samples and biota
TrAC Trends in Analytical Chemistry - Tập 143 - Trang 116370 - 2021
Analytical strategies for coupling separation and flow-injection techniques
TrAC Trends in Analytical Chemistry - Tập 67 - Trang 26-33 - 2015
Progress in the materials for optical detection of arsenic in water
TrAC Trends in Analytical Chemistry - Tập 110 - Trang 97 - 2019
Arsenic poisoning of water resources has been of universal concern because of its serious health impact and on the ecosystem. As such, several efforts have been made on promising optical detection of arsenic utilizing various transduction platforms. However, the substantial role of sensor material cannot be ignored in the design of cost-effective, environment-friendly, and user acceptable sensor systems for on-site/in-field application. The goal is to employ sensor materials that enable detection of arsenic with high sensitivity, selectivity, reproducibility, and stability. In the present review, we have covered and critically deliberated upon the progress made over 2013–2018 in sensor materials, including colorimetric dyes, organic fluorophores, nanostructures (metal, carbon, semiconductor, metal oxides, etc.), and bioreceptors (aptamers, peptides, whole cells, etc.), for optical detection of arsenic in water. The possible integration of microfluidics/paper fluidics and imaging with existing optical sensor materials to realize a user friendly system for varied settings is also discussed.
#Arsenic #Optical detection #Materials #Imaging techniques #Biosensors #Water analysis
Analysis of biopharmaceutical proteins in biological matrices by LC-MS/MS I. Sample preparation
TrAC Trends in Analytical Chemistry - Tập 48 - Trang 41-51 - 2013
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