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SPME Applications Guide - Overbrook Scientific

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(New references added to the 7th edition are in bold) <strong>SPME</strong> Fiber /<br />

Analyte / Extraction<br />

Matrix Literature Reference Conditions Instrument<br />

412<br />

Solventless Analytical Separation Method --<br />

<strong>SPME</strong>/Microcolumn LC<br />

Chromatography (1998), 19(2), 6063<br />

Jinno, K.<br />

HPLC<br />

261 Fatty acid<br />

Derivatization/<strong>SPME</strong>: New Approach to Polar Analytes<br />

Anal. Chem. 69(2): 196-205 (1997) 85µm polyacrylate GC-FID<br />

methyl esters Pan, L., Pawliszyn, J. 2 hr<br />

in air and water headspace, pH 6<br />

derivative: 1-pyrenyldiazomethane<br />

819 Formaldehyde<br />

Solid phase analytical derivatization: enhancement of<br />

sensitivity and selctivity of analysis<br />

J.Chromatogr. A., 843, 19-27<br />

Rosenfeld, J.<br />

On-fiber derivatization<br />

553 9 references<br />

New Gas chromatographic approach to polar compounds<br />

by derivatization-<strong>SPME</strong><br />

Bunseki, 1999 (7), 595-597<br />

Takauchi, M. Japanese<br />

262 Alcohol and ketones<br />

Strategies for the Analysis of Polar Solvents in Liquid Matrixes<br />

Anal. Chem. 70 (1): 19-27 (1998) Nafion fiber GC-ECD<br />

in water Gorecki, T., Martos, P., Pawliszyn, J. 10 min<br />

headspace, stirring<br />

738 Phenanthrene, PCB<br />

Absorption of hydrophobic compounds into the<br />

poly(dimethylsiloxane) coating of <strong>SPME</strong> fibers: high 7µm PDMS GC-MS<br />

pentachlorobenzene partition coefficients and fluorescence 10min<br />

in water microscopy images<br />

Anal. Chem. (2000) 72(3), 459-464<br />

Mayer, P., Vaes,W., Hermens, J.<br />

739 Hydrophobic<br />

Nonequilibrium <strong>SPME</strong> for determination of the freely<br />

dissolved concentration of hydrophobic organic 7µm PDMS GC-ECD<br />

compounds (PCBs) compounds: matrix effects and limitations 0.5-60min @ 37°C<br />

in water Anal. Chem 2000, 72(13), 2802-2808<br />

Oomen, A., Mayer, P., Tolls, J.<br />

263 nC8 to nC14,<br />

Methodological Aspects of Headspace <strong>SPME</strong>. Application<br />

J. High Resolut. Chromatogr. 20 (4): 217-221 (1997) various fibers GC-FID<br />

neat Schafer, B. Hennig, P., Engewald, W.<br />

Headspace <strong>SPME</strong>. Dynamics and Quantitative Analysis Before<br />

80°C, 5 min<br />

headspace<br />

264 Phenol, alcohols Reaching a Partition Equilibrium 85µm polyacrylate GC-MS<br />

in water Anal. Chem. 69 (16): 3260-3266 (1997) 1-80 min at 25°C,<br />

Ali, J. 1-40 min at 80°C<br />

headspace, stirring<br />

413 Tetraethyllead<br />

<strong>SPME</strong> as a Sample Introduction Technique for Radio Frequency<br />

Glow Discharge MS 30µm PDMS radio frequency<br />

in water Anal. Commun. (1997), 34(10), 275-277 5 min glow discharge<br />

Gorecki, T., Belkin, M., Caruso, J., Pawliszyn, J. headspace, stirred MS<br />

Effect of Sample Volume on Quantitative Analysis by <strong>SPME</strong>,<br />

265 Part 1 - Theoretical Considerations<br />

Analyst (Cambridge) 122 (10): 1079-1086 (1997)<br />

Gorecki, T., Pawliszyn, J.<br />

Steady-state diffusion regime in solid-phase microextraction kinetics<br />

2835 Theory Anal Chim Acta 609, #1, 113-119 (Feb 18 2008)<br />

ter Laak, Thomas L.; van Leeuwen, Herman P.; Benhabib, Karim<br />

Ambient temperature, unless otherwise indicated. 220

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