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Self‐Oscillating Vesicles: Spontaneous Cyclic Structural Changes of Synthetic Diblock Copolymers
Authors:Ryota Tamate  Dr. Takeshi Ueki  Prof. Dr. Mitsuhiro Shibayama  Prof. Dr. Ryo Yoshida
Affiliation:1. Department of Materials Engineering, School of Engineering, The University of Tokyo, 7‐3‐1 Hongo, Bunkyo‐ku, Tokyo, 113‐8656 (Japan);2. Institute for Solid State Physics, The University of Tokyo, 5‐1‐5 Kashiwano‐ha, Kashiwa, Chiba, 277‐8581 (Japan)
Abstract:A large variety of synthetic vesicles has been created for potential engineering applications and as model systems which mimic living organisms. In most cases, the structure is designed to be thermodynamically stable. However, mimicking dynamic behaviors of living vesicles still remains undeveloped. Herein, we present a synthetic vesicle which shows autonomous disintegration–reconstruction cycles without any external stimuli and which is similar to those in living organisms, such as in the nuclear envelope and synaptic vesicles. The vesicle is composed of a diblock copolymer which has a hydrophilic and a thermosensitive segment. The thermosensitive segment includes a redox moiety that acts as a catalyst for an oscillatory chemical reaction and also controls the aggregation temperature of vesicles. Furthermore, autonomous fusion of vesicles is also observed during the cycles.
Keywords:biomimetics  block copolymers  oscillating structures  ruthenium  vesicles
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