Solid-Phase Extraction

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

Beskrivelse

Solid Phase Extraction thoroughly presents both new and historic techniques for dealing with solid phase extraction. It provides all information laboratory scientists need for choosing and utilizing suitable sample preparation procedures for any kind of sample. In addition, the book showcases the contemporary uses of sample preparation techniques in the most important industrial and academic project environments, including solid-phase Microextraction, molecularly imprinted polymers, magnetic nanoparticles, and more. Written by recognized experts in their respective fields, this one-stop reference is ideal for those who need to know which technique to choose for solid phase extraction. Used in conjunction with a similar release, Liquid Phase Extraction, this book allows users to master this crucial aspect of sample preparation.

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Detaljer
Størrelse og vægt
  • Vægt1130 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Separation Screening Drugs Miniaturization Gas chromatography Nanoparticles. Occupational Exposure Analysis Characterization Calibration Fullerenes Adsorption Chromatography Metal ions Volatile organic compounds Extraction Quantum dots Cleanup Derivatization Antibodies Nanodiamonds OPTIMIZATION Sorbents Surface Properties Electrospinning Silica gel Mesoporous materials Graphene Membranes Carbon nanotubes Hydrophilic Design of experiments Preparation Box-Behnken design Core-Shell Sample preparation Aptamers High-throughput Sorption Biomarkers Selectivity Organic Pollutants Applications Metal organic frameworks Carbon-Based Materials Bioanalysis Capacity Biological Samples Composite nanofibers Water samples Optimisation Monolith Solid-Phase Extraction Thin film 3D structures Air Monitoring Contaminants Molecularly imprinted polymers Particle Polydimethylsiloxane Extraction techniques Microextraction Solid phase microextraction Thermal desorption Matrix solid-phase dispersion 96-Well plates Active sampling Air sampling Automated solid-phase extraction (SPE)Automation Batch sorption Bio-analytical applications Biomedical samples Analytical derivatization Central composite design Characterization methods Breakthrough Volumes Doehlert Design Carbon based sorbent Direct biological sample analysis Chemically bonded sorbents Extraction devices Extractive alkylation Clean-up Column-switching LC systems Full Factorial Design Complex samples Extraction and preconcentration Headspace sorptive extraction Food samples Fractional Factorial Design Gas-solid extraction Hollow fibers Immunosorbents Hypercrosslinked Dispersive pipette extraction (DPX)High-throughput Environmental samples Isoreticular metal-organic framework Extraction mechanism Fabric phase sorptive extraction Metal/metal oxides Liquid desorption Flat formats Mixed-mode ion-exchange Materials of Institute Lavoisier Nanofibers Microextraction by packed sorbent Monolithic packed tips Oligosorbents Online SPE green analytical chemistry Off-line development Porous membrane Porous organic polymers High-throughput performance Purge and trap Phase transfer catalyst Postsynthesis modification Inorganic oxides Imprinted materials Restricted access media (RAM)Robotic liquid handler (RLH)Rural air Solid-phase analytical derivatization Sorption-based microextraction Solvation Parameter Model H Solid phase extraction Magnetic nanoparticle sorbents Urban air Sorbent Liquid-solid extraction Nanohorns Natural constituents Offline SPE Micro-solid-phase extraction Plackett-Burman design Macroporous Online LC systems Passive sampling Needle extraction New coatings Porous adsorption material Synthesis of capillaries Polymeric Nanofibers Sorbent characteristics Restricted access materials Stir-bar sorptive extraction Zeolitic imidazolate framework Silanol groups University of Oslo series

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