共价键
纳米技术
聚合物
动态共价化学
材料科学
智能材料
执行机构
分子机器
智能聚合物
计算机科学
化学物理
分子
超分子化学
化学
复合材料
有机化学
人工智能
作者
Rudy J. Wojtecki,Michael A. Meador,Stuart J. Rowan
出处
期刊:Nature Materials
[Springer Nature]
日期:2010-12-15
卷期号:10 (1): 14-27
被引量:1470
摘要
New materials that have the ability to reversibly adapt to their environment and possess a wide range of responses ranging from self-healing to mechanical work are continually emerging. These adaptive systems have the potential to revolutionize technologies such as sensors and actuators, as well as numerous biomedical applications. We will describe the emergence of a new trend in the design of adaptive materials that involves the use of reversible chemistry (both non-covalent and covalent) to programme a response that originates at the most fundamental (molecular) level. Materials that make use of this approach - structurally dynamic polymers - produce macroscopic responses from a change in the material's molecular architecture (that is, the rearrangement or reorganization of the polymer components, or polymeric aggregates). This design approach requires careful selection of the reversible/dynamic bond used in the construction of the material to control its environmental responsiveness.
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