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Inductively Coupled Plasma Mass Spectrometry

Analytical Chemistry, 2002
Introduction 4786 Conferences 4788 Book and Reviews 4788 Sample Preparation 4789 Reviews 4789 Original Approaches 4789 Instrument Development, Characterization, and Optimization 4791 Direct Sample Introduction 4791 Nebulization 4791 Plasma Processes 4792 Plasma Sampling Processes 4792 Ion Detection 4792 Spectroscopic Interferences 4793 Nonspectroscopic
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Liquid chromatography–inductively coupled plasma mass spectrometry

Journal of Chromatography A, 2003
It is known that while many elements are considered essential to human health, many others can be toxic. However, because the intake, accumulation, transport, storage and interaction of these different metals and metalloids in nature is strongly influenced by their specific elemental form, complete characterization of the element is essential when ...
María, Montes-Bayón   +2 more
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Inductively coupled plasma mass spectrometry

1989
The first paper describing the coupling of an argon plasma, a highly efficient ion source, and a mass spectrometer was published in 1980 (Houk et al.) as a result of the collaboration between the research group at the Ames Laboratory, Iowa State University (USA) and Gray at the University of Surrey (UK).
Michael Thompson, J. Nicholas Walsh
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Liquid chromatography–inductively coupled plasma mass spectrometry

Journal of Chromatography A, 1999
The technique of coupling liquid chromatography to inductively plasma mass spectrometry (ICP-MS) is reviewed. A brief introduction to the ICP-MS instrument is given as well as methods to couple the two analytical instruments together. The various types of LC that have been used with ICP-MS detection are discussed and advantages over traditional methods
K L, Sutton, J A, Caruso
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Capillary Electrophoresis-Inductively Coupled Plasma Mass Spectrometry

2016
During the recent years, capillary electrophoresis (CE) has been fully established as a powerful tool in separation sciences as well as in element speciation. This road of success is based on the rapid analysis time, low sample requirements, high separation efficiency, and low operating costs of CE. Inductively coupled plasma mass spectrometry (ICP-MS)
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Inductively coupled plasma mass spectrometry‐based immunoassay: A review

Mass Spectrometry Reviews, 2013
AbstractThe last 10 years witnessed the emerging and growing up of inductively coupled plasma mass spectrometry (ICPMS)‐based immunoassay. Its high sensitivity and multiplex potential have made ICPMS a revolutionary technique for bioanalyte quantification after element‐tagged immunoassay.
Liu, R.   +4 more
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Laser-ablation inductively-coupled plasma mass spectrometry

Analytical and Bioanalytical Chemistry, 2001
Laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) has become one of the most widely applied techniques for direct solid analysis. This article describes the working principle, instrumentation, fundamental aspects of the ablation process, quantification strategies, and typical figures of merit of this technique.
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Environmental analysis by inductively coupled plasma mass spectrometry

Mass Spectrometry Reviews, 2009
AbstractThis article reviews the numerous ways in which inductively coupled plasma mass spectrometry has been used for the analysis of environmental samples since it was commercially introduced in 1983. Its multielemental isotopic capability, high sensitivity and wide linear dynamic range makes it ideally suited for environmental analysis.
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Inductively Coupled Plasma Mass Spectrometry Handbook

2005
Chapter 1: Plasma generation, ion sampling and focusing. Chapter 2: Mass spectrometers. Chapter 3: Ion detection, Data Acquisition and Handling. Chapter 4: Calibration strategies and quality assurance. Chapter 5: Liquid sample introduction: Fundamentals and applications of flow injection and electrothermal vaporisation for ICP-MS.
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Capillary electrophoresis inductively coupled plasma mass spectrometry

Microchemical Journal, 2000
Chemical speciation (extraction of elemental information and identification of molecular environment for an analyte in a complex sample) has been a long sought after goal for analytical chemists. Recently, because of successful developments in more sensitive element-specific detectors and gentle separation schemes, which preserve the true chemical ...
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