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Dynamics macromolecules

Enzymes are of vital importance and interest in biochemistry. It is enzymes that catalyse essentially all biological processes and, as we will see in Chapter 12, they have stimulated a wealth of interest from supramolecular chemists. Enzymes are dynamic macromolecules with a molecular weight... [Pg.108]

J. L. Garcia Fernandez, A. Rey, J. J. Freire and I.F. de Perola, Cyclization dynamics of flexible polymers - numerical results from Brownian dynamics. Macromolecules, 23 (1990) 2057-2061. [Pg.827]

Scherrenberg, R. Coussens, B. van Vliet, P. Edouard, G. Brackman, J. de Brabander-van den Berg, E.M.M. Mortensen, K. The molecular characteristics of poly (propyleneimine) dendrimers as studied with small-angle neutron scattering, viscosimetry, and molecular dynamics. Macromolecules 1998, 31, 456 61. [Pg.888]

Phillies, G. D. J., and Quinlan, C. A., Analytic structure of the solutionlike-meltlike transition in polymer dynamics. Macromolecules, 28, 160-164 (1995). [Pg.85]

Test of time-temperature superposability for dielectric loss data of a miscible blend of cis-polyisoprene (PI12 Mp, = 1.2 x 1(H) and poly(vinyl ethylene) (PVE60 Mpyp = 6 x 1(H) with the PI content rup, = 75 wt%. (Data taken, with permission, from Hirose, Y, O. Urakawa, and K. Adachl. 2003. Dielectric study on the heterogeneous dynamics of miscible polyisoprene/ poly(vinyl ethylene) blends Estimation of the relevant length scales for the segmental relaxation dynamics. Macromolecules 36 3699-3708.)... [Pg.85]

Doi, M., and H. Watanabe. 1991. Effect of nematic interaction on the Rouse dynamics. Macromolecules 24 740-744. [Pg.122]

Hirose, Y., O. Urakawa, and K. Adachi. 2003. Dielectric study on the heterogeneous dynamics of miscible polyisoprene/poly(vinyl ethylene) blends Estimation of the relevant length scales for the segmental relaxation dynamics. Macromolecules 36 3699-3708. [Pg.123]

Zhao, J., L. Zhang, and M. D. Ediger. 2008. Poly(ethylene oxide) dynamics in blends with poly(vinyl acetate) Comparison of segmental and terminal dynamics. Macromolecules 41 8030-8037. [Pg.126]

Rubinstein M, Semenov AN (1998) Thermoreversible gelation in solutions of associating polymers. 2. Linear dynamics. Macromolecules 31(4) 1386-1397... [Pg.96]

Tamai, Y, Tanaka, H., Nakanishi, K. (1996b). Molecular dynamics study of polymer-water interaction in hydrogels. 2. Hydrogen-bond dynamics. Macromolecules, 29, 6761-6769. [Pg.42]

Gonzalez-Ortiz LJ, Asua JM. Development of particle morphology in emulsion polymerization. 1. Cluster dynamics. Macromolecules 1995 28 3135-3145. [Pg.74]

Nicolai, T. Randrianantoandro, H. Prochazka, F. Durand, D. (1997) Viscoelastic relaxation of polyurethane at different stages of the gel formation. 2. Sol-gel transition dynamics. Macromolecules, 30(19), 5897-5904. [Pg.58]

Chen, X., Carbone, P., Cavalcanti, W.L., Milano, G and Muller-Plathe, F. (2007) Viscosity and stmctural alteration of a coarse-grained model of polystyrene under steady shear flow studied by reverse nonequilibrium molecular dynamics. Macromolecules, 40,8087-8095. [Pg.380]

Kreer, T., Baschnagel, J., Muller, M., Binder, K. Monte Carlo simulation of long chain polymer melts crossover from Rouse to reptation dynamics. Macromolecules (2001) 34, pp. 1105-1117... [Pg.184]


See other pages where Dynamics macromolecules is mentioned: [Pg.168]    [Pg.742]    [Pg.1272]    [Pg.243]    [Pg.5]    [Pg.227]    [Pg.216]    [Pg.216]    [Pg.527]   
See also in sourсe #XX -- [ Pg.138 ]




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