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The understanding of the principles of ICP-MS and its application as an analytical technique is continually evolving and this book provides a unique snapshot of the current state-of-the-art. Plasma Source Mass Spectrometry: The New Millennium covers a diverse range of topics including the fate of the sample as it passes through the sample introduction system, chemical resolution using reaction and collision cells, various methods of mass analysis, approaches to account for spectral interferences, hyphenation methods to enable speciation, and the results of analyses ranging from natural waters and archaeological isotope ratios to organometallic speciation in biological materials. Describing explicitly the analytical methods that deal with current analytical challenges, and offering a current perspective on elemental analysis by plasma source mass spectrometry that is not to be found elsewhere, this book will be welcomed by both academics and industrialists as containing the most up-to-date information available on this burgeoning topic.
This book provides a snapshot of the current state-of-the-art of the understanding of the fundamentals of ICPMS, instrumental development, methods development, spectral interpretation and applications. It covers a diverse range of topics including: bioanalytical applications (immunoassay, state of phosphorylation, metallo-drugs); environmental applications (drinking water, groundwater, seawater, speciation); reaction cells and collision cells (theory and applications); archaeology; laser ablation; isotope ratio analysis; and the performance, characterization and applications of multicollector instruments. Written by international contributors who emphasize their current perceptions and understanding of the subject, Plasma Source Mass Spectrometry: Applications and Emerging Technologies offers a current perspective on elemental analysis by plasma source mass spectrometry that is not to be found elsewhere. Researchers and professionals in many areas will welcome this book, particularly those in the fields of bioanalytical, environmental and geological chemistry.
The field of plasma-source mass spectrometry is critically reviewed and its current status assessed. An overview of PS-MS applications is provided and a discussion is offered of key problem areas that currently exist in the field. Areas that are now receiving strong research attention are outlined and a view if offered for future prospects of plasma-source mass spectrometry as a technique for elemental analysis. Keywords: Plasma source, Mass spectrometry, Review, Multielement analysis. (MJM).
Atomic spectrometry has exciting new bio-analytical horizons open to it, principally through the developments in the capabilities of ICP-MS coupled with the inventiveness of experimentalists. This is reflected in the use of the technique for ion-, capillary electrophoresis-, liquid- and gas-chromatographic separation in biological applications, as reported in this book. Traditional (environmental, semiconductor, geological and clinical) applications are also well represented. In addition, recent and future developments in sample introduction devices, multicollector sector, reaction cells and collision cells instruments, as well as co-existence, divergence and potential convergence of atomic and biomolecular mass spectrometries are discussed. Reflecting the current state of practical ICP-MS and drawing together the latest developments in the field, Plasma Source Mass Spectrometry: Current Trends and Future Developments is ideal for university researchers and laboratory practitioners. It will be of interest to all those involved in the development and application of this technique.
Plasma Source Mass Spectrometry is an analytical technique with a considerable range of applications. Still in its infancy, there are always new ideas emerging and original work on which to report. This book is a unique presentation of the most recent developments in this exciting field, with a wide array of topics covered and original world-wide contributions. Discussions include various methods of mass analysis, data analysis strategies, plasma dynamics, and the results of an extensive range of analyses in areas such as drinking water contamination, landfill groundwater contamination and nuclear materials processing. Development of instrumentation, the application of chromatography and methods of dealing with spectral and non-spectral interferences are also included. Plasma Source Mass Spectrometry offers a current perspective on elemental analysis that is not to be found elsewhere. With an invaluable index of references, it will be of interest to graduates and researchers alike in analysis and spectroscopy as well as the environmental disciplines.
It also includes information on processing and interpreting results to obtain high-quality data.".