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Korea-Australia Rheology Journal, Vol.24, No.3, 249-253, September, 2012
Conformational transition of polyelectrolyte chains extending over the de Gennes regime in slitlike nanochannels
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The confinement-induced conformational transitions of the polyelectrolyte chain are characterized with the coarse-grained Brownian dynamics simulations and the blob theory. Submicron-sized biopolymer xanthan is chosen as a model polyelectrolyte taking into account both flexible and semiflexible chains for comparison. Confined flexible and semiflexible chains exhibit a nonmonotonic variation in size in weak confinements, where the relative radius of gyration shows a dip and then increases when decreasing the channel width. The rigid chain, realized at low screening, exhibits a sigmoidal transition without minima in size. Major attention should be on the dependence of scaling law exponents on the screening effect of the solution in the moderate confinement of the de Gennes regime. Our findings are expected to provide useful information and new insight into the confined polyelectrolytes when relevant micro/nanochannels are designed and fabricated.
- Camesano TA, Wilkinson KJ, Biomacromolecules, 2(4), 1184 (2001)
- Chun MS, J. Korean Phys. Soc., 53, 3404 (2008)
- Cifra P, Benkova Z, Bleha T, Faraday Discuss., 139, 377 (2008)
- Cordeiro CE, Molisana M, Thirumalai D, J. Phys.II., 7, 433 (1997)
- Daoud M, de Gennes PG, J. Phys. Paris., 38, 85 (1977)
- de Gennes PG, Scaling Concepts in Polymer Physics., Cornell Univ. Press, Ithaca. (1979)
- Ermak DL, McCammon JA, J. Chem. Phys., 69, 1352 (1978)
- Hsie CC, Doyle PS, Korea-Aust. Rheol. J., 20(3), 127 (2008)
- Israelachvili JN, Intermolecular and Surface Forces, 2nd Ed., Academic Press, New York. (1991)
- Jeon J, Chun MS, Korea-Aust. Rheol. J., 19(2), 51 (2007)
- Mannion JT, Reccius CH, Cross KD, Craighead HG, Biophys. J., 90, 4538 (2006)
- Odijk T, Phys. Rev. E., 77, 060901 (2008)
- Persson F, Utko P, Reisner W, Larsen NB, Kristensen A, Nano Lett., 9, 1382 (2009)
- Peter C, Kremer K, Faraday Discuss., 144, 9 (2010)
- Rochefort WE, Middleman S, J. Rheol., 31, 337 (1987)
- Strychalski EA, Geist J, Gaitan M, Locascio LE, Stavis SM, Macromolecules, 45(3), 1602 (2012)
- Tang J, Levy SL, Trahan DW, Jones JJ, Craighead HG, Doyle PS, Macromolecules, 43(17), 7368 (2010)
- Teraoka I, Prog. Polym. Sci., 21, 89 (1996)
- Thamdrup LH, Klukowska A, Kristensen A, Nanotechnology., 19, 125301 (2008)
- Wyatt NB, Liberatore MW, Soft Matter., 6, 3346 (2010)