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Melt‐state polymer chain dimensions as a function of temperature
Authors:Ramanan Krishnamoorti  William W Graessley  Achim Zirkel  Dieter Richter  Nikos Hadjichristidis  Lewis J Fetters  David J Lohse
Abstract:The unperturbed chain dimensions (〈R2o/M) of cis/trans‐1,4‐polyisoprene, a near‐atactic poly(methyl methacrylate), and atactic polyolefins were measured as a function of temperature in the melt state via small‐angle neutron scattering (SANS). The polyolefinic materials were derived from polydienes or polystyrene via hydrogenation or deuteration and represent structures not encountered commercially. The parent polymers were prepared via lithium‐based anionic polymerizations in cyclohexane with, in some cases, a polymer microstructure modifier present. The polyolefins retained the near‐monodisperse molecular weight distributions exhibited by the precursor materials. The melt SANS‐based chain dimension data allowed the evaluation of the temperature coefficients dln 〈R2o/dT(κ)] for these polymers. The evaluated polymers obeyed the packing length (p)‐based expressions of the plateau modulus, Gurn:x-wiley:08876266:media:POLB10231:tex2gif-stack-1 = kT/nurn:x-wiley:08876266:media:POLB10231:tex2gif-stack-2p3 (MPa), and the entanglement molecular weight, Me = ρNanurn:x-wiley:08876266:media:POLB10231:tex2gif-stack-3p3 (g mol?1), where nt denotes the number (~21) of entanglement strands in a cube with the dimensions of the reptation tube diameter (dt) and ρ is the chain density. The product nurn:x-wiley:08876266:media:POLB10231:tex2gif-stack-4p3 is the displaced volume (Ve) of an entanglement that is also expressible as pdurn:x-wiley:08876266:media:POLB10231:tex2gif-stack-5 or kT/Gurn:x-wiley:08876266:media:POLB10231:tex2gif-stack-6. © 2002 Wiley Periodicals, Inc. J Polym Sci Part B: Polym Phys 40: 1768–1776, 2002
Keywords:entanglement molecular weights  packing length  unperturbed chain dimensions  plateau moduli  rheology  neutron scattering
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