相关实验视频
Updated: Jan 20, 2026

08:04
Preparation of Functional Silica Using a Bioinspired Method
Published on: August 1, 2018
17.8K
生物启发的超坚固聚氨弹性体与使用牺牲键的块模块
Jian Li1,2, Fubo Ma2, Jintao Ji3
1State Key Laboratory of Deep Oil and Gas, China University of Petroleum (East China) Qingdao 266580 China cuplijian@sina.com.
RSC advances
|January 19, 2026
概括
研究人员开发了一种使用动态键的新型自我愈合弹性体. 这种仿生材料实现了极端的伸展性和性,用于软机器人和电子皮肤的先进应用.
科学领域:
- 聚合物科学 聚合物科学
- 材料科学 材料科学 材料科学
- 生物材料工程 生物材料工程
背景情况:
- 可拉伸和自我愈合的弹性体对于电子皮肤和软机器人等先进应用至关重要.
- 合成具有极端伸展性,高性和自我恢复性的弹性体仍然是一个重大挑战.
研究的目的:
- 通过整合多个动态键,开发一种新型的自我愈合弹性体.
- 为了实现增强的机械性能,包括极端伸展性,高性和自我恢复性.
主要方法:
- 将四重键 (UPy) 和金属协调键 (DAP-Fe) 纳入线性聚氨网.
- 利用由生物组织和贝 byssus 启发的协同动态纽带.
主要成果:
- 合成的聚氨弹性体表现出高拉伸应力 (∼30 MPa) 和极端伸展性 (∼4100%).
- 实现了特殊的性 (∼470 MJ m-3),以及出色的自我恢复和自我愈合能力.
- 动态键促进了能量消耗,增强了强度,同时保持了伸展性.
结论:
- 使用协同动态键的仿生策略为创建先进聚合物提供了一种有效的方法.
- 这种新型弹性体具有独特的特性组合,适用于苛刻的应用.
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