Literature DB >> 21244076

Micellization and phase separation for triblock copolymer 17R4 in H2O and in D2O.

Alison Huff1, Kelly Patton, Hosanna Odhner, Donald T Jacobs, Bryna C Clover, Sandra C Greer.   

Abstract

The reverse Pluronic triblock copolymer 17R4 is formed from poly(propylene oxide) (PPO) and poly(ethylene oxide) (PEO): PPO(14)-PEO(24)-PPO(14), where the subscripts denote the number of monomers in each block. In water, 17R4 shows both a transition to aggregated micellar species at lower temperatures and a separation into copolymer-rich and copolymer-poor liquid phases at higher temperatures. For 17R4 in H(2)O and in D(2)O, we have determined (1) the phase boundaries corresponding to the micellization line, (2) the cloud point curves marking the onset of phase separation at various compositions, and (3) the coexistence curves for the phase separation (the compositions of coexisting phases). In both H(2)O and in D(2)O, 17R4 exhibits coexistence curves with lower consolute temperatures and compositions that differ from the minima in the cloud point curves; we take this as an indication of the polydispersity of the micellar species. The coexistence curves for compositions near the critical composition are described well by an Ising model. For 17R4 in both H(2)O and D(2)O, the critical composition is 0.22 ± 0.01 in volume fraction. The critical temperatures differ: 44.8 °C in H(2)O and 43.6 °C in D(2)O. The cloud point curve for the 17R4/D(2)O is as much as 9 °C lower than in H(2)O.

Entities:  

Year:  2011        PMID: 21244076     DOI: 10.1021/la104350g

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  3 in total

1.  Topology and Sequence-Dependent Micellization and Phase Separation of Pluronic L35, L64, 10R5, and 17R4: Effects of Cyclization and the Chain Ends.

Authors:  Tomohisa Watanabe; Yubo Wang; Tomoko Ono; Satoru Chimura; Takuya Isono; Kenji Tajima; Toshifumi Satoh; Shin-Ichiro Sato; Daichi Ida; Takuya Yamamoto
Journal:  Polymers (Basel)       Date:  2022-04-29       Impact factor: 4.967

2.  Dynamics of the formation of a hydrogel by a pathogenic amyloid peptide: islet amyloid polypeptide.

Authors:  Létitia Jean; Chiu Fan Lee; Peter Hodder; Nick Hawkins; David J Vaux
Journal:  Sci Rep       Date:  2016-08-18       Impact factor: 4.379

3.  Upper Critical Solution Temperature Behavior of pH-Responsive Amphoteric Statistical Copolymers in Aqueous Solutions.

Authors:  Komol Kanta Sharker; Yusuke Shigeta; Shinji Ozoe; Panittha Damsongsang; Voravee P Hoven; Shin-Ichi Yusa
Journal:  ACS Omega       Date:  2021-03-26
  3 in total

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