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Handbook of Size Exclusion Chromatography and Related ...

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4 SUMMARY<br />

Advances in SEC characterization <strong>of</strong> PVA <strong>and</strong> PVAc for molecular weight <strong>and</strong><br />

molecular weight distribution mirror the technological developments that have<br />

become mainstream in the field <strong>of</strong> SEC. Both polymers have been successfully<br />

characterized using TDS packages. MALLS detection has played a key role in<br />

the characterization <strong>of</strong> PVA under aqueous conditions. Molecular weight <strong>and</strong><br />

polymer conformational information can be routinely measured using these<br />

techniques. The use <strong>of</strong> SEC for improved underst<strong>and</strong>ing <strong>of</strong> performance <strong>and</strong><br />

product applications <strong>of</strong> these polymers is finding widespread use.<br />

REFERENCES<br />

1. DJ Nagy. Aqueous size exclusion chromatography <strong>of</strong> polyvinyl alcohol. In:<br />

<strong>H<strong>and</strong>book</strong> <strong>of</strong> <strong>Size</strong> <strong>Exclusion</strong> <strong>Chromatography</strong>. New York: Marcel Dekker, 1996,<br />

pp 279–301.<br />

2. DJ Nagy. Characterization <strong>of</strong> poly(vinyl alcohol) using SEC multiangle laser light<br />

scattering. Amer Labor 27:47J–47V, 1995.<br />

3. DJ Nagy. Aqueous GPC triple detection <strong>of</strong> partially- <strong>and</strong> fully-hydrolyzed<br />

poly(vinyl alcohol). Proceedings <strong>of</strong> International GPC Symposium, Las Vegas,<br />

2000, pp 1–22.<br />

4. DJ Nagy. Applications <strong>and</strong> uses <strong>of</strong> columns for aqueous size exclusion<br />

chromatography <strong>of</strong> water-soluble polymers. In: Column <strong>H<strong>and</strong>book</strong> for <strong>Size</strong> <strong>Exclusion</strong><br />

<strong>Chromatography</strong>. San Diego: Academic Press, 1999, pp 559–581.<br />

5. HJ Barth. Characterization <strong>of</strong> water-soluble polymers using size exclusion<br />

chromatography. In: Water-Soluble Polymers: Beauty with Performance, ACS<br />

Advances in Chemistry Series 213. Washington: American Chemical Society, 1986,<br />

pp 31–55.<br />

6. M Weissmuller. Use <strong>of</strong> thermal field flow fractionation (TFFF) for characterization<br />

<strong>of</strong> polymeric materials. Proceedings <strong>of</strong> Werkst<strong>of</strong>fwoche ’98, B<strong>and</strong> VIII, 1999,<br />

pp 133–138.<br />

7. JV Dawkins, TA Nicholson, AJ H<strong>and</strong>ley, E Meehan, A Nevin, PL Shaw. Polymer<br />

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8. TG Fox, PJ Flory. J Am Chem Soc 73:1904, 1951.<br />

9. OB Ptitsyn, YE Eizner. Sov Phys Tech Phys 4:1020, 1960.<br />

10. DJ Nagy. Aqueous SEC triple detection <strong>of</strong> poly(vinyl alcohol). Amer Labor 35, 2003.<br />

11. DJ Nagy. J Liq Chrom 16:3041–3058, 1993.<br />

12. AJ Beresniewicz. J Polym Sci 39:63, 1959.<br />

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15. B Wang, S Mukataka, E Kokufuta, M Ogiso, M Kodama. J Polym Sci 38:<br />

214–221, 2000.<br />

16. KD Dunn. J Pharm Biomed Anal 25:539–543, 2001.<br />

© 2004 by Marcel Dekker, Inc.

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