ABSTR A C T Micellar aggregates and thermoresponsive gelation of amphiphilic random copolymers in water were examined in detail, focused on effects of the degree of polymerization (DP) on the behavior. For this purpose, we designed random copolymers carrying hydrophilic poly(ethylene glycol) and hydrophobic dodecyl groups, where the DP was varied from 63 to 358. The content of the hydrophobic monomer was set to 60 mol% to facilitate ther-mogelation. All the copolymers formed multichain aggregates in water, while the size distribution depended on DP. Since copolymers with larger DP had less composition distribution, the copolymers with 145 or more of DP formed size-controlled aggregates in water. Their concentrated solutions, above the overlap concentration of the aggregates, gelled entirely upon heating, followed by syneresis. In contrast, the short copolymer with 63 of DP formed aggregates with multimodal size distribution, and the concentrated solution underwent macroscopic phase separation upon heating, followed by gelation of the polymer-rich lower layer. As confirmed by small-angle neutron scattering, the copolymer suitable for thermogelation originally formed aggregates consisting of multiple micelle subunits in the aqueous dilute solution, and the thermogelation of the concentrated solution was driven by the physical packing of the micelle subunits upon heating. Thus, we revealed that the DP hierarchically affected not only the self-assembly of the copolymers into size-controlled micellar aggregates in water but also the thermogelation of the concentrated solutions via intermicellar association.
机构:
National Engineering Laboratory for Clean Technology of Leather Manufacture, Sichuan University
College of Biomass Science and Engineering, Sichuan UniversityNational Engineering Laboratory for Clean Technology of Leather Manufacture, Sichuan University
Yudan Yi
Xinxin Fan
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College of Biomass Science and Engineering, Sichuan UniversityNational Engineering Laboratory for Clean Technology of Leather Manufacture, Sichuan University
Xinxin Fan
Qijun Li
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College of Biomass Science and Engineering, Sichuan UniversityNational Engineering Laboratory for Clean Technology of Leather Manufacture, Sichuan University
Qijun Li
Yanan Wang
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National Engineering Laboratory for Clean Technology of Leather Manufacture, Sichuan University
College of Biomass Science and Engineering, Sichuan University
Key Laboratory of Leather Chemistry and Engineering, Ministry of Education,SichuanNational Engineering Laboratory for Clean Technology of Leather Manufacture, Sichuan University
机构:
IMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, SpainIMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, Spain
Alonso-Doncel, Maria del Mar
Giner, Elena A.
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IMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, SpainIMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, Spain
Giner, Elena A.
de la Calle, Daniel
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IMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, SpainIMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, Spain
de la Calle, Daniel
Cueto, Jennifer
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IMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, SpainIMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, Spain
Cueto, Jennifer
Horcajada, Patricia
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IMDEA Energy Inst, Adv Porous Mat Unit, E-28935 Madrid, SpainIMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, Spain
Horcajada, Patricia
Garcia-Munoz, Rafael A. A.
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Rey Juan Carlos Univ, Chem & Environm Engn Grp, E-28933 Madrid, SpainIMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, Spain
Garcia-Munoz, Rafael A. A.
Serrano, David P.
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IMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, Spain
Rey Juan Carlos Univ, Chem & Environm Engn Grp, E-28933 Madrid, SpainIMDEA Energy Inst, Thermochem Proc Unit, E-28935 Madrid, Spain