Blends of Polyisoprene with Model Styrene-Olefin Copolymers: Mixing Energetics in Blends versus Block Copolymers (vol 54, pg 3999, 2021)

MACROMOLECULES(2022)

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摘要
Most theoretical treatments of polymer mixing thermodynamics assume that the phase behavior of both polymer blends and block copolymers is controlled by the same Flory segmental interaction parameter,chi-a quantity which is proportional to the interaction energy density, X. However, there are few comparative experimental studies on this point. This work presents a systematic experimental comparison between the interaction energy densities measured on model polydiene-polyolefin blends (X-blend) and analogous block copolymers (X-BC). Experimental cloud point temperature (T-cl) curves for blends of polyisoprene (PI) with selectively saturated poly(butadiene-r-styrene) (hSBR) random copolymers are fit to the Flory-Huggins theory, and the resultant values of X-blend are corrected for critical fluctuations and for end-group contributions, wherever significant. The temperature-dependent PI/hSBR X-blend (T) and previously reported PI-hSBR X-BC values show satisfactory agreement at all levels of styrene incorporation, reinforcing the conclusion that random incorporation of styrene units into the saturated polybutadiene chain significantly enhances its compatibility with PI.
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