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Vapor Generation Techniques for Trace Element Analysis

- Fundamental Aspects

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Vapor Generation Techniques for Trace Element Analysis: Fundamental Aspects provides an overview and discussion of the fundamental aspects governing derivatization reactions of trace-level elements for analytical purposes. Vapor generation techniques coupled with atomic or mass spectrometry have been employed for over 50 years, but their popularity has dramatically increased in recent years, especially as alternative vapor generation approaches have been developed. This book bridges the knowledge gap of the derivatization mechanisms that yield volatile compounds and provides an update on recent developments in vapor generation techniques used for the determination and speciation of trace elements by atomic optical and mass spectrometry. It will serve as a comprehensive, single-source overview of recent developments, providing readers with an understanding of the correct implementation—and limitations—of applying vapor generation techniques to everyday analytical problems facing the trace element analyst.

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Detaljer
Størrelse og vægt
  • Vægt450 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Øs Efficiency Hydrolysis Nanoparticles. Chelates Trace elements Photochemistry Acetic acid Grignard reagents Sonochemistry AFS Amine-Boranes Hydrogen Transfer Interferences Speciation Analysis Elemental Analysis Mechanism Metal organic frameworks Dielectric Barrier Discharge Redox Reactions TiO2 AAS Aerosol Cathode Material Catalyst Analyte atomization Analyte derivatization Analyte release Analyte collection Aqueous boranes Atomic Absorption Spectrometry atomic spectrometry Atomic mass spectrometry Atomic fluorescence spectrometry Atomic fluorescence spectroscopy Aquated electron Cold vapor Conventional quartz tube atomizers Charge-transfer-to-solvent Carboxylate anion radical Electrolytic Cell Chemical Vapor Generation Cell geometry Dielectric barrier discharge (DBD) Flame-in-gas-shield Generation efficiency Halogen atom transfer Formic Acid Headspace analysis Inorganic anions In-atomizer collection Liquid electrode glow discharge Ligand-to-metal charge transfer Metal Carbonyls Miniature diffusion flame Metal speciation Microextraction Techniques Nonaqueous chemical vapor generation Hydride Generation Online atomization Photochemical vapor generation Preconcentration Reductive Elimination Radical oxidative coupling Sensitizer Reaction modifiers Sample introduction Sample nebulization thermochemical Inductively coupled plasma optical emission spectroscopy Tetraalkylborates Tetrahydridoborate(1-) Volatile species W-coil Volatile halides Volatile oxides Multiatomizer Plasma chemical reaction mechanism Metal ion-assisted PCVG Photochemical mechanisms Radical Reactions Transition and noble metals Plasma-mediated vapor generation Volatile metal esters Trialkyloxonium salts Vapor generation Volatile metal chelates
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