Plasma Source Mass SpectrometryCheck Access
About this book
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.
Plasma Source Mass Spectrometry, The Royal Society of Chemistry, 2003.
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Table of contents
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Front coverByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Front matterByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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PrefaceByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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ContentsByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Bio-analytical applicationsp1-2ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Simultaneous quantitation of specific proteins using immunoassay ICP-MSp3-15By
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New challenges for ICP-MS instrumentation and data acquisition. Solving problems of real life biologyp16-27By
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Some applications of ICP-MS in the pharmaceutical industryp28-42By
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Quantitation of phosphorus in biologically active materials by ICP-MS detection of P and S with chemical resolutionp43-53By
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Application of sector-field ICP-MS and ICP-MS with collision cell for determination of phosphorus and iron in proteinsp54-65By
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Combination of ICP-MS and ion exchange chromatography permits analyses of specific cisplatin DNA modifications formed in cancer cellsp65-73By
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Conventional and chromatographic ICPMS analysis of cisplatin and carboplatin in plasma and plasma ultrafiltratep74-81By
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Determination, by ICP-MS, of background and BBR 3464 induced levels of platinum bound to DNA isolated from blood cells: A comparison of the sensitivity of the Perkin Elmer SCIEX ELAN 6000 and the Thermofinigan Neptune instrumentsp82-90By
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Environmental applicationsp91-92ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Application of ICP-MS in environmental sciencep93-104By
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Development of “All-ium” analytical method for water samples at Lake Biwap105-111By
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Iron and arsenic speciation in groundwaters from West Bengal, India by coupled HPLC-ICP-MS utilising a hexapole collision cellp112-126By
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Coupled HPLC-ICP-MS analysis indicates highly hazardous concentrations of dissolved arsenic species in Cambodian groundwatersp127-140By
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An old problem of lead contaminationp141-147By
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The use of different enriched isotope mixtures for the determination of butyltin compounds in environmental samples using isotope dilution GC-ICP-MSp148-159By
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Determination of cerium, lead and uranium in bivalve shells using an iminodiacetate based preconcentration system and ICP-MSp160-167By
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New applications for GC-ICP-MS; beyond sensitive, selective analysis of organometallic speciesp168-184By
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The use of a high accuracy isotope dilution mass spectrometry (IDMS) method for the analysis of sulfur in fuel to support analytical technologies used in industryp185-192By
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Archaeological applicationsp193-194ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Anglo-Saxon residential mobility at West Heslerton, North Yorkshire, UK from Combined O- and SR-isotope analysisp195-208By
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The use of ICP-MS in provenancing igneous stone artefacts: Examples from the southern Levantp209-218By
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Preparatory and delivery methodsp219-220ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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A routine method for the dissolution of geological samples for the analysis of REE and trace elements via ICP-MSp221-230By
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Calculation methods for the determination of isotope ratios of transient signals of volatile organometallic compoundsp231-239By
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The uncertainty in ree determination in urine by ETV-ICP-MS: A new approach to data evaluationp240-248By
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Trapped ablation mode in laser ablation ICPMS experiments for the enhancement of the signal-to-noise ratiop249-258By
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Reaction cells and collision cellsp259-260ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Overcoming spectral overlaps: Quadrupole ICP-MS with reaction cell and sector based ICP-MSp261-270By
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Determination of selenium in biological samples by isotope dilution analysis octapole reaction system ICP-MSp271-281By
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The York University ion-molecule reaction database: A biennial reportp282-291By
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Determination of Fe, Ni, Co, Cu and Zn in high-Ca samples using methane as a reaction cell gasp292-304By
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Multi-collectorsp305-306ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Long-term performance characteristics of a plasma ionisation multi-collector mass spectrometer (PIMMS): The thermofinnigan neptunep307-320By
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Chemical Pre-Concentration procedures for high-precision analysis of HF-Nd-Sr isotopes in geological materials by plasma techniques ionisation multi-collector mass spectrometry (PIMMS)p321-337By
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High precision MC-ICPMS measurement of silver isotopic compositionsp338-350By
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Precise and accurate determination of iron isotopes by multi-collector inductively coupled plasma mass spectrometryp351-361By
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Measurement of OS isotopes using plasma ionisation multicollector mass spectrometry and a suggested scheme for the accurate determination of interfering element ratiosp362-373By
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High precision rhenium and platinum isotope dilution analyses by plasma ionisation multicollector mass spectrometryp374-390By
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Uranium and thorium isotope ratio measurements using multiple collector inductively coupled plasma mass spectrometry with multi-ion-counting detectorsp391-403By
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Author indexp404-406ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Subject indexp407-412ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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Back coverpX003-X004ByScott D. TannerScott D. TannerSenior ReporterSearch for other works by this author on:
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