4.7 Review

Molecular Design and Functional Control of Novel Self-Oscillating Polymers

期刊

INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES
卷 11, 期 2, 页码 704-718

出版社

MDPI AG
DOI: 10.3390/ijms11020704

关键词

self-oscillation; polymer chain; BZ reaction; gel; polymer actuator

资金

  1. Global COE (Centers of Excellence)
  2. Global Robot Academia
  3. Waseda University
  4. Murata Science foundation
  5. Science and Technology Foundation of Izumi
  6. Science and Technology Foundation of Japan
  7. Iketani Fundation
  8. Establishment of Consolidated Research Institute for Advanced Science and Medical Care
  9. Encouraging Development Strategic Research Centers Program
  10. Special Coordination Funds for Promoting Science and Technology
  11. Ministry of Education, Culture, Sports, Science and Technology, Japan

向作者/读者索取更多资源

If we could realize an autonomous polymer system driven under biological conditions by a tailor-made molecular design, human beings could create unprecedented biomimetic functions and materials such as heartbeats, autonomous peristaltic pumps, etc. In order to achieve this objective, we have investigated the molecular design of such a polymer system. As a result, we were the first to demonstrate a self-oscillating polymer system driven in a solution where only malonic acid existed, which could convert the chemical energy of the Belousov-Zhabotinsky (BZ) reaction into a change in the conformation of the polymer chain. To cause the self-oscillation in solution, we have attempted to construct a built-in system where the required BZ system substrates other than the organic acid are incorporated into the polymer itself. That is, the novel polymer chain incorporated the metal catalyst of the BZ reaction, a pH-control site and an oxidant supply site at the same time. As a result of introducing the pH control and oxidant supply sites into the conventional-type self-oscillating polymer chain, the novel polymer chain caused aggregation-disaggregation self-oscillations in the solution. We clarified that the period of the self-oscillation of the novel self-oscillating polymer chain was proportional to the concentration of the malonic acid. Therefore, the concentration of the malonic acid can be determined by measuring the period of the novel self-oscillating polymer solution. In this review, we introduce the detailed molecular design of the novel self-oscillating polymer chain and its self-oscillating behavior. Moreover, we report an autonomous self-oscillating polymer gel actuator that causes a bending-stretching motion under the constant conditions.

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