Light-induced shape-memory polymers

形状记忆聚合物 聚合物 材料科学 紫外线 紫外线 波长 光学 形状变化 复合材料 形状记忆合金 光电子学 生物物理学 物理 生物
作者
Andreas Lendlein,Hongyan Jiang,Oliver Jünger,Róbert Langer
出处
期刊:Nature [Nature Portfolio]
卷期号:434 (7035): 879-882 被引量:1986
标识
DOI:10.1038/nature03496
摘要

Materials are said to show a shape-memory effect if they can be deformed and fixed into a temporary shape, and recover their original, permanent shape only on exposure to an external stimulus. Shape-memory polymers have received increasing attention because of their scientific and technological significance. In principle, a thermally induced shape-memory effect can be activated by an increase in temperature (also obtained by heating on exposure to an electrical current or light illumination). Several papers have described light-induced changes in the shape of polymers and gels, such as contraction, bending or volume changes. Here we report that polymers containing cinnamic groups can be deformed and fixed into pre-determined shapes--such as (but not exclusively) elongated films and tubes, arches or spirals--by ultraviolet light illumination. These new shapes are stable for long time periods, even when heated to 50 degrees C, and they can recover their original shape at ambient temperatures when exposed to ultraviolet light of a different wavelength. The ability of polymers to form different pre-determined temporary shapes and subsequently recover their original shape at ambient temperatures by remote light activation could lead to a variety of potential medical and other applications.
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