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Kinetics of Collapse Transition and Cluster Formation in a Thermoresponsive Micellar Solution of P(S‐b‐NIPAM‐b‐S) Induced by a Temperature Jump
Authors:Joseph Adelsberger  Ezzeldin Metwalli  Alexander Diethert  Isabelle Grillo  Achille M Bivigou‐Koumba  Andr Laschewsky  Peter Müller‐Buschbaum  Christine M Papadakis
Abstract:Structural changes at the intra‐ as well as intermicellar level were induced by the LCST‐type collapse transition of poly(N‐isopropyl acrylamide) in ABA triblock copolymer micelles in water. The distinct process kinetics was followed in situ and in real‐time using time‐resolved small‐angle neutron scattering (SANS), while a micellar solution of a triblock copolymer, consisting of two short deuterated polystyrene endblocks and a long thermoresponsive poly(N‐isopropyl acrylamide) middle block, was heated rapidly above its cloud point. A very fast collapse together with a multistep aggregation behavior is observed. The findings of the transition occurring at several size and time levels may have implications for the design and application of such thermoresponsive self‐assembled systems.
Keywords:polymer physics  thermoresponsive polymers  small‐angle neutron scattering  time‐resolved measurements
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