形状记忆聚合物
形状记忆合金
变形
材料科学
智能材料
聚合物
制作
光子学
纳米技术
光子晶体
计算机科学
航空航天
纳米尺度
光电子学
人工智能
航空航天工程
复合材料
医学
工程类
病理
替代医学
作者
Yin Fang,Yongliang Ni,Sin‐Yen Leo,Curtis R. Taylor,Vito Basile,Peng Jiang
摘要
Abstract Smart shape-memory polymers can memorize and recover their permanent shape in response to an external stimulus (for example, heat). They have been extensively exploited for a wide spectrum of applications ranging from biomedical devices to aerospace morphing structures. However, most of the existing shape-memory polymers are thermoresponsive and their performance is hindered by heat-demanding programming and recovery steps. Although pressure is an easily adjustable process variable such as temperature, pressure-responsive shape-memory polymers are largely unexplored. Here we report a series of shape-memory polymers that enable unusual ‘cold’ programming and instantaneous shape recovery triggered by applying a contact pressure at ambient conditions. Moreover, the interdisciplinary integration of scientific principles drawn from two disparate fields—the fast-growing photonic crystal and shape-memory polymer technologies—enables fabrication of reconfigurable photonic crystals and simultaneously provides a simple and sensitive optical technique for investigating the intriguing shape-memory effects at nanoscale.
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