超分子化学
聚合物
形状记忆聚合物
材料科学
纳米结构
化学物理
拉伤
形状记忆合金
纳米技术
可扩展性
超分子聚合物
复合材料
分子
化学
计算机科学
内科学
操作系统
有机化学
医学
作者
C. B. Cooper,Shayla Nikzad,Hongping Yan,Yuto Ochiai,Jian‐Cheng Lai,Zhiao Yu,Gan Chen,Jiheong Kang,Zhenan Bao
出处
期刊:ACS central science
[American Chemical Society]
日期:2021-09-08
卷期号:7 (10): 1657-1667
被引量:56
标识
DOI:10.1021/acscentsci.1c00829
摘要
Shape memory polymers are promising materials in many emerging applications due to their large extensibility and excellent shape recovery. However, practical application of these polymers is limited by their poor energy densities (up to ∼1 MJ/m3). Here, we report an approach to achieve a high energy density, one-way shape memory polymer based on the formation of strain-induced supramolecular nanostructures. As polymer chains align during strain, strong directional dynamic bonds form, creating stable supramolecular nanostructures and trapping stretched chains in a highly elongated state. Upon heating, the dynamic bonds break, and stretched chains contract to their initial disordered state. This mechanism stores large amounts of entropic energy (as high as 19.6 MJ/m3 or 17.9 J/g), almost six times higher than the best previously reported shape memory polymers while maintaining near 100% shape recovery and fixity. The reported phenomenon of strain-induced supramolecular structures offers a new approach toward achieving high energy density shape memory polymers.
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