Parte de libro

Nap, R.J.; Tagliazucchi, M.; Solveyra, E.G.; Ren, C.-L.; Uline, M.J.; Szleifer, I. "Modeling of Chemical Equilibria in Polymer and Polyelectrolyte Brushes" (2017) Polymer and Biopolymer Brushes: For Materials Science and Biotechnology:161-221
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Documento: Parte de libro
Título:Modeling of Chemical Equilibria in Polymer and Polyelectrolyte Brushes
Autor:Nap, R.J.; Tagliazucchi, M.; Solveyra, E.G.; Ren, C.-L.; Uline, M.J.; Szleifer, I.
Filiación:Department of Biomedical Engineering, Department of Chemistry and Chemistry of Life Processes Institute, Northwestern University, Evanston, IL, United States
INQUIMAE-CONICET, Ciudad Unversitaria, Buenos Aires, Argentina
National Laboratory of Solid State Microstructures and Department of Physics, Collaborative Innovation Center of Advanced Microstructures, Nanjing University, Nanjing, China
Department of Chemical Engineering, University of South CarolinaSC, United States
Año:2017
Página de inicio:161
Página de fin:221
DOI: http://dx.doi.org/10.1002/9781119455042.ch6
Título revista:Polymer and Biopolymer Brushes: For Materials Science and Biotechnology
Título revista abreviado:Polym. and Biopolym. Brushes: For Mater. Sci. and Biotechnol.
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97811194_v_n_p161_Nap

Referencias:

  • Rühe, J., Ballauff, M., Biesalski, M., Dziezok, P., Grohn, F., Johannsmann, D., Houbenov, N., Zhang, H., (2004) Adv. Polym. Sci, 165, pp. 79-150
  • Santer, S., Kopyshev, A., Yang, H.-K., Rühe, J., (2006) Macromolecules, 39, pp. 3056-3064
  • Ballauff, M., Borisov, O., (2006) Curr. Opin. Colloid Interface Sci, 11, pp. 316-323
  • Cohen Stuart, M.A., Huck, W.T.S., Genzer, J., Müller, M., Ober, C., Stamm, M., Sukhorukov, G.B., Minko, S., (2010) Nat. Mater, 9, pp. 101-113
  • Alexander, S., (1977) J. Phys. France, 38, pp. 983-987
  • de Gennes, P.G., (1980) Macromolecules, 13, pp. 1069-1075
  • Milner, S.T., Witten, T.A., Cates, M.E., (1988) Macromolecules, 21, pp. 2610-2619
  • Szleifer, I., Carignano, M.A., (1996) Adv. Chem. Phys, 94, pp. 165-260
  • de Beer, S., Muser, M.H., (2013) Soft Matter, 9, pp. 7234-7241
  • Grest, G.S., (1996) Phys. Rev. Lett, 76, pp. 4979-4982
  • Zhulina, E.B., Borisov, O.V., Priamitsyn, V.A., (1990) J. Colloid Interface Sci, 137, pp. 495-511
  • Williams, D.R.M., (1993) J. Phys. II, 3, pp. 1313-1318
  • Pattanayek, S.K., Pham, T.T., Pereira, G.G., (2005) J. Chem. Phys, 122, p. 214908
  • Yameen, B., Ali, M., Neumann, R., Ensinger, W., Knoll, W., Azzaroni, O., (2009) Nano Lett, 9, pp. 2788-2793
  • Tagliazucchi, M., de la Cruz, M.O., Szleifer, I., (2010) Proc. Natl. Acad. Sci. U. S. A, 107, p. 5300
  • Tam, T.K., Ornatska, M., Pita, M., Minko, S., Katz, E., (2008) J. Phys. Chem. C, 112, pp. 8438-8445
  • Li, D., He, Q., Yang, Y., Mohwald, H., Li, J., (2008) Macromolecules, 41, pp. 7254-7256
  • Tokareva, I., Minko, S., Fendler, J.H., Hutter, E., (2004) J. Am. Chem. Soc, 126, pp. 15950-15951
  • Israels, R., Leermakers, F.A.M., Fleer, G.J., (1994) Macromolecules, 27, pp. 3087-3093
  • Zhulina, E.B., Borisov, O.V., (2011) Langmuir, 27, pp. 10615-10633
  • Zhulina, E.B., Rubinstein, M., (2012) Soft Matter, 8, pp. 9376-9383
  • Israels, R., Leermakers, F.A.M., Fleer, G.J., Zhulina, E.B., (1994) Macromolecules, 27, pp. 3249-3261
  • Zhulina, E.B., Birshtein, T.M., Borisov, O.V., (1995) Macromolecules, 28, p. 1491
  • Nap, R., Gong, P., Szleifer, I., (2006) J. Polym. Sci., Part B: Polym. Phys, 44, pp. 2638-2662
  • Barr, S.A., Panagiotopoulos, A.Z., (2012) J. Chem. Phys, p. 137
  • Ben-Shaul, A., Szleifer, I., Gelbart, W.M., (1984) Proc. Natl. Acad. Sci., U. S. A, 81, pp. 4601-4605
  • Ben-Shaul, A., Szleifer, I., Gelbart, W.M., (1985) J. Chem. Phys, 83, pp. 3597-3611
  • Szleifer, I., Ben-Shaul, A., Gelbart, W.M., (1985) J. Chem. Phys, 83, p. 3612
  • Carignano, M.A., Szleifer, I., (1993) J. Chem. Phys, 98, pp. 5006-5018
  • Carignano, M.A., Szleifer, I., (1994) J. Chem. Phys, 100, pp. 3210-3223
  • Carignano, M.A., Szleifer, I., (1995) Macromolecules, 28, pp. 3197-3204
  • Tang, H., Carignano, M.A., Szleifer, I., (1995) J. Chem. Phys, 102, pp. 3404-3413
  • Szleifer, I., Carignano, M.A., (2000) Macromol. Rapid Commun, 21, pp. 423-448
  • Wu, T., Gong, P., Szleifer, I., VlCek, P., Subr, V., Genzer, J., (2007) Macromolecules, 40, pp. 8756-8764
  • Gong, P., Wu, T., Genzer, J., Szleifer, I., (2007) Macromolecules, 40, pp. 8765-8773
  • Wu, T., Genzer, J., Gong, P., Szleifer, I., Vlcek, P., Subr, V., (2004) Polymer Brushes, pp. 287-315. , Wiley-VCH: Weinheim, Germany
  • Wang, D., Nap, R.J., Lagzi, I., Kowalczyk, B., Han, S., Grzybowski, B.A., Szleifer, I., (2011) J. Am. Chem. Soc, 133, pp. 2192-2197
  • Tagliazucchi, M., Calvo, E.J., Szleifer, I., (2008) J. Phys. Chem. C, 112, pp. 458-471
  • Flory, P.J., (1969) Statistical Mechanics of Chain Molecules, , Wiley-Interscience: New York
  • Longo, G.S., Thompson, D.H., Szleifer, I., (2008) Langmuir, 24, pp. 10324-10333
  • Longo, G.S., de la Cruz, M.O., Szleifer, I., (2013) ACS Nano, 7, pp. 2693-2704
  • Longo, G., Szleifer, I., (2005) Langmuir, 21, pp. 11342-11351
  • Tagliazucchi, M., Szleifer, I., (2015) J. Am. Chem. Soc, 137, pp. 12539-12551
  • Tagliazucchi, M., Calvo, E.J., Szleifer, I., (2008) Electrochim. Acta, 53, pp. 6740-6752
  • Nap, R.J., Park, S.H., Szleifer, I., (2014) J. Polym. Sci., Part B: Polym. Phys, 52, pp. 1689-1699
  • Ren, C.-L., Nap, R.J., Szleifer, I., (2008) J. Phys. Chem. B, 112, pp. 16238-16248
  • Raphael, E., Joanny, J.-F., (1990) Europhys. Lett, 13, pp. 623-628
  • Fleer, G.J., (1996) Ber. Bunsenges. Phys. Chem, 100, pp. 936-942
  • Fleer, G.J., Cohen Stuart, M.A., Scheutjens, J.M.H.M., Cosgrove, T., Vincent, B., (1993) Polymers at Interfaces, , Chapman and Hall: London
  • Tagliazucchi, M., Peleg, O., Kroger, M., Rabin, Y., Szleifer, I., (2013) Proc. Natl. Acad. Sci. U. S. A, 110, pp. 3363-3368
  • Nap, R.J., Losdorfer Bozic, A., Szleifer, I., Podgornik, R., (2014) Biophys. J, 107, pp. 1970-1979
  • Gilles, F.M., Tagliazucchi, M., Azzaroni, O., Szleifer, I., (2016) J. Phys. Chem. C, 120, pp. 4789-4798
  • Croze, O.A., Cates, M.E., (2005) Langmuir, 21, pp. 5627-5638
  • Schwinger, J., DeRaad, J.L.L., Milton, K.A., Tsai, W.-Y., (1998) Classical Electrodynamics, , Persus Books: Reading, MA
  • Wang, Z.-G., (2008) J. Theor. Comput. Chem, 7, pp. 397-419
  • Griffiths, D.J., (1999) Introduction to Electrodynamics, , Prentice-Hall: Upper Saddle River, NJ
  • Nap, R.J., Tagliazucchi, M., Szleifer, I., (2014) J. Chem. Phys, 140, p. 24910
  • Carignano, M.A., Szleifer, I., (1995) J. Chem. Phys, 102, pp. 8662-8669
  • Tagliazucchi, M., Calvo, E.J., Szleifer, I., (2010) ALChE J, 56, pp. 1952-1959
  • Peleg, O., Tagliazucchi, M., Kroger, M., Rabin, Y., Szleifer, I., (2011) ACS Nano, 5, pp. 4737-4747
  • Nap, R.J., Szleifer, I., (2013) Biomater. Sci, 1, pp. 814-823
  • Walker, D.A., Leitsch, E.K., Nap, R.J., Szleifer, I., Grzybowski, B.A., (2013) Nat. Nanotechnol, 8, pp. 676-681
  • Nap, R.J., Won, Y.-Y., Szleifer, I., (2012) Soft Matter, 8, pp. 1688-1700
  • Gong, P., Szleifer, I., (2006) Lnd. Eng. Chem. Res, 45, pp. 5466-5476
  • Hindmarsh, A.C., Brown, P.N., Grant, K.E., Lee, S.L., Serban, R., Shumaker, D.E., Woodward, C.S., (2005) ACM Trans. Math. Software, 31, pp. 363-396
  • Currie, E.P.K., Sieval, A.B., Avena, M., Zuilhof, H., Sudholter, E.J.R., Cohen Stuart, M.A., (1999) Langmuir, 15, pp. 7116-7118
  • Dong, R., Lindau, M., Ober, C.K., (2009) Langmuir, 25, pp. 4774-4779
  • Katchalsky, A., Shavit, N., Eisenberg, H., (1954) J. Polym. Sci, 13, pp. 69-84
  • Alexandrowicz, Z., Katchalsky, A., (1963) J. Polym. Sci., Part A: Gen. Pap, 1, pp. 3231-3260
  • Katchalsky, A., (1971) Pure Appl. Chem, 26, pp. 327-373
  • Katchalsky, A., Spitnik, P., (1947) J. Polym. Sci, 2, pp. 432-446
  • Katchalsky, A., Lifson, S., Mazur, J., (1953) J. Polym. Sci, 11, pp. 409-423
  • Lifson, S., Katchalsky, A., (1954) J. Polym. Sci, 13, pp. 43-55
  • Netz, R.R., (2003) J. Phys., Condens. Matter, 15, pp. S239-S244
  • Naji, A., Seidel, C., Netz, R.R., (2006) Adv. Polym. Sci, 198, pp. 149-183
  • Tagliazucchi, M., Azzaroni, O., Szleifer, I., (2010) J. Am. Chem. Soc, 132, pp. 12404-12411
  • Zhulina, E., Singh, C., Balazs, A.C., (1998) J. Chem. Phys, 108, pp. 1175-1183
  • Pattanayek, S.K., Pereira, G.G., (2005) Macromol. Theory Simul, 14, pp. 347-357
  • Sandberg, D.J., Carrillo, J.-M.Y., Dobrynin, A.V., (2007) Langmuir, 23, pp. 12716-12728
  • Carrillo, J.-M.Y., Dobrynin, A.V., (2009) Langmuir, 25, pp. 13158-13168
  • Koutsos, V., van der Vegte, E.W., Pelletier, E., Stamouli, A., Hadziioannou, G., (1997) Macromolecules, 30, pp. 4719-4726
  • Gao, X., Feng, W., Zhu, S., Sheardown, H., Brash, J.L., (2008) Langmuir, 24, pp. 8303-8308
  • Zhao, W., Krausch, G., Rafailovich, M.H., Sokolov, J., (1994) Macromolecules, 27, pp. 2933-2935
  • Motornov, M., Sheparovych, R., Katz, E., Minko, S., (2008) ACS Nano, 2, pp. 41-52
  • Soga, K.G., Zuckermann, M.J., Guo, H., (1996) Macromolecules, 29, pp. 1998-2005
  • Muller, M., (2002) Phys. Rev. E, 65, p. 30802
  • Wang, J., Muller, M., (2009) J. Phys. Chem. B, 113, pp. 11384-11402
  • Zhao, B., Zhu, L., (2006) J. Am. Chem. Soc, 128, pp. 4574-4575
  • Lin, Y.-H., Teng, J., Zubarev, E.R., Shulha, H., Tsukruk, V.V., (2005) Nano Lett, 5, pp. 491-495
  • Jiang, X., Zhao, B., Zhong, G., Jin, N., Horton, J.M., Zhu, L., Hafner, R.S., Lodge, T.P., (2010) Macromolecules, 43, pp. 8209-8217
  • Tagliazucchi, M., Li, X., Olvera de la Cruz, M., Szleifer, I., (2014) ACS Nano, 8, pp. 9998-10008
  • Sui, X.F., Chen, Q., Hempenius, M.A., Vancso, G.J., (2011) Small, 7, pp. 1440-1447
  • Drechsler, A., Synytska, A., Uhlmann, P., Elmahdy, M.M., Stamm, M., Kremer, F., (2010) Langmuir, 26, pp. 6400-6410
  • Drechsler, A., Synytska, A., Uhlmann, P., Stamm, M., Kremer, F., (2012) Langmuir, 28, pp. 15555-15565
  • Ishida, N., Kobayashi, M., (2006) J. Colloid Interface Sci, 297, pp. 513-519
  • Maeda, N., Chen, N.H., Tirrell, M., Israelachvili, J.N., (2002) Science, 297, pp. 379-382
  • Balastre, M., Li, F., Schorr, P., Yang, J.C., Mays, J.W., Tirrell, M.V., (2002) Macromolecules, 35, pp. 9480-9486
  • Dunlop, I.E., Briscoe, W.H., Titmuss, S., Jacobs, R.M.J., Osborne, V.L., Edmondson, S., Huck, W.T.S., Klein, J., (2009) J. Phys. Chem. B, 113, pp. 3947-3956
  • Bard, A.J., Faulkner, L.R., (2001) Electrochemical Methods, , 2nd ed.; John Wiley and Sons, Inc.: New York
  • Lillethorup, M., Torbensen, K., Ceccato, M., Pedersen, S.U., Daasbjerg, K., (2013) Langmuir, 29, pp. 13595-13604
  • Yu, B., Hu, H., Wang, D., Huck, W.T.S., Zhou, F., Liu, W., (2009) J. Mater. Chem, 19, pp. 8129-8134
  • Kim, B.Y., Ratcliff, E.L., Armstrong, N.R., Kowalewski, T., Pyun, J., (2010) Langmuir, 26, pp. 2083-2092
  • Tagliazucchi, M., Calvo, E.J., Szleifer, I., (2008) Langmuir, 24, pp. 2869-2877
  • Holland, J.G., Geiger, F.M., (2012) J. Phys. Chem. B, 116, pp. 6302-6310
  • Grilley, D., Soto, A.M., Draper, D.E., (2009) Methods Enzymol, 455, pp. 71-94
  • Record, M.T., (1975) Biopolymers, 14, pp. 2137-2158
  • Sines, C.C., McFail-Isom, L., Howerton, S.B., VanDerveer, D., Williams, L.D., (2000) J. Am. Chem. Soc, 122, pp. 11048-11056
  • Davey, C.A., Richmond, T.J., (2002) Proc. Natl. Acad. Sci. U. S. A, 99, pp. 11169-11174
  • Dobi, A., Agoston, D.V., (1998) Proc. Natl. Acad. Sci. U. S. A, 95, pp. 5981-5986
  • Wu, F.Y.H., Wu, C.W., (1987) Annu. Rev. Nutr, 7, pp. 251-272
  • Ghosh, A., Ginty, D.D., Bading, H., Greenberg, M.E., (1994) J. Neurobiol, 25, pp. 294-303
  • Kunkel, T.A., Loeb, L.A., (1979) J. Biol. Chem, 254, pp. 5718-5725
  • DeHaseth, P.L., Lohman, T.M., Record, M.T., (1977) Biochemistry, 16, pp. 4783-4790
  • Liu, J., Cao, Z., Lu, Y., (2009) Chem. Rev, 109, pp. 1948-1998
  • Cho, E.J., Lee, J.-W., Ellington, A.D., (2009) Annu. Rev. Anal. Chem, 2, pp. 241-264
  • Mirkin, C.A., Letsinger, R.L., Mucic, R.C., Storhoff, J.J., (1996) Nature, 382, pp. 607-609
  • Stoltenburg, R., Reinemann, C., Strehlitz, B., (2007) Biomol. Eng, 24, pp. 381-403
  • Subirana, J.A., Soler-Lopez, M., (2003) Annu. Rev. Biophys. Biomol. Struct, 32, pp. 27-45
  • Ahmad, R., Arakawa, H., Tajmir-Riahi, H.A., (2003) Biophys. J, 84, pp. 2460-2466
  • Holland, J.G., Malin, J.N., Jordan, D.S., Geiger, F.M., (2011) J. Am. Chem. Soc, 133, pp. 2567-2570
  • Uline, M.J., Rabin, Y., Szleifer, I., (2011) Langmuir, 27, pp. 4679-4689
  • Bloomfield, V.A., Crothers, D.M., Tinoco, I., Jr., (2000) Nucleic Acids: Structures, Properties, and Functions, , University Science Books: Herndon, VA
  • Verdolino, V., Cammi, R., Munk, B.H., Schlegel, H.B., (2008) J. Phys. Chem. B, 112, pp. 16860-16873
  • Lippert, B., (2008) Chem. Biodiversity, 5, pp. 1455-1474
  • Fang, F., Satulovsky, J., Szleifer, I., (2005) Biophys. J, 89, pp. 1516-1533
  • Lau, K.H.A., Ren, C., Sileika, T.S., Park, S.H., Szleifer, I., Messersmith, P.B., (2012) Langmuir, 28, pp. 16099-16107
  • Ren, C.-L., Schlapak, R., Hager, R., Szleifer, I., Howorka, S., (2015) Langmuir, 31, pp. 11491-11501
  • Ren, C.-L., Carvajal, D., Shull, K.R., Szleifer, I., (2009) Langmuir, 25, pp. 12283-12292
  • Maruyama, K., Ishida, O., Takizawa, T., Moribe, K., (1999) Adv. Drug Delivery Rev, 40, pp. 89-102
  • Gabizon, A.A., (2001) Clin. Cancer Res, 7, pp. 223-225
  • Gabizon, A., Horowitz, A.T., Goren, D., Tzemach, D., Shmeeda, H., Zalipsky, S., (2003) Clin. Cancer Res, 9, pp. 6551-6559
  • Satulovsky, J., Carignano, M.A., Szleifer, I., (2000) Proc. Natl. Acad. Sci. U. S. A, 97, pp. 9037-9041
  • Fang, F., Szleifer, I., (2001) Biophys. J, 80, pp. 2568-2589
  • Merkel, R., Nassoy, P., Leung, A., Ritchie, K., Evans, E., (1999) Nature, 397, pp. 50-53
  • Nieba, L., Nieba-Axmann, S.E., Persson, A., Hamalainen, M., Edebratt, F., Hansson, A., Lidholm, J., Pluckthun, A., (1997) Anal. Biochem, 252, pp. 217-228
  • Chao, C.-Y., Carvajal, D., Szleifer, I., Shull, K.R., (2008) Langmuir, 24, pp. 2472-2478
  • Huang, J., Momenzadeh, M., Lombardi, F., (2007) IEEE Des. Test. Comput, 24, pp. 304-311
  • Maruccio, G., Cingolani, R., Rinaldi, R., (2004) J. Mater. Chem, 14, p. 542
  • Petros, R.A., DeSimone, J.M., (2010) Nat. Rev. Drug Discovery, 9, pp. 615-627
  • Sapsford, K.E., Algar, W.R., Berti, L., Gemmill, K.B., Casey, B.J., Oh, E., Stewart, M.H., Medintz, I.L., (2013) Chem. Rev, 113, pp. 1904-2074
  • Sperling, R.A., Parak, W.J., (2010) Philos. Trans. R. Soc., A, 368, pp. 1333-1383
  • Ham, H.O., Park, S.H., Kurutz, J.W., Szleifer, I.G., Messersmith, P.B., (2013) J. Am. Chem. Soc, 135, pp. 13015-13022
  • Palui, G., Aldeek, F., Wang, W., Mattoussi, H., (2014) Chem. Soc. Rev, pp. 1-35
  • Bertrand, N., Wu, J., Xu, X., Kamaly, N., Farokhzad, O.C., (2014) Adv. Drug Delivery Rev, 66, pp. 2-25
  • Mout, R., Moyano, D.F., Rana, S., Rotello, V.M., (2012) Chem. Soc. Rev, 41, p. 2539
  • Tagliazucchi, M., Szleifer, I., (2012) Soft Matter, 8, p. 7292
  • Gonzalez Solveyra, E., Tagliazucchi, M., Szleifer, I., (2016) Faraday Discussions, 191, pp. 351-372
  • Hehmeyer, O.J., Arya, G., Panagiotopoulos, A.Z., Szleifer, I., (2007) J. Chem. Phys, 126, p. 244902
  • Antypov, D., Holm, C., Barbosa, M.C., (2005) Phys. Rev. E, 71, p. 61106
  • Cheng, H., Zhang, K., Libera, J.A., Olvera de la Cruz, M., Bedzyk, M., (2006) Biophys. J, 90, p. 1164

Citas:

---------- APA ----------
Nap, R.J., Tagliazucchi, M., Solveyra, E.G., Ren, C.-L., Uline, M.J. & Szleifer, I. (2017) . Modeling of Chemical Equilibria in Polymer and Polyelectrolyte Brushes. Polymer and Biopolymer Brushes: For Materials Science and Biotechnology, 161-221.
http://dx.doi.org/10.1002/9781119455042.ch6
---------- CHICAGO ----------
Nap, R.J., Tagliazucchi, M., Solveyra, E.G., Ren, C.-L., Uline, M.J., Szleifer, I. "Modeling of Chemical Equilibria in Polymer and Polyelectrolyte Brushes" . Polymer and Biopolymer Brushes: For Materials Science and Biotechnology (2017) : 161-221.
http://dx.doi.org/10.1002/9781119455042.ch6
---------- MLA ----------
Nap, R.J., Tagliazucchi, M., Solveyra, E.G., Ren, C.-L., Uline, M.J., Szleifer, I. "Modeling of Chemical Equilibria in Polymer and Polyelectrolyte Brushes" . Polymer and Biopolymer Brushes: For Materials Science and Biotechnology, 2017, pp. 161-221.
http://dx.doi.org/10.1002/9781119455042.ch6
---------- VANCOUVER ----------
Nap, R.J., Tagliazucchi, M., Solveyra, E.G., Ren, C.-L., Uline, M.J., Szleifer, I. Modeling of Chemical Equilibria in Polymer and Polyelectrolyte Brushes. Polym. and Biopolym. Brushes: For Mater. Sci. and Biotechnol. 2017:161-221.
http://dx.doi.org/10.1002/9781119455042.ch6