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Shape-Morphing Nanocomposite Origami

机译:形状变形纳米复合材料折纸

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摘要

Nature provides a vast array of solid materials that repeatedly and reversibly transform in shape in response to environmental variations. This property is essential, for example, for new energy-saving technologies, efficient collection of solar radiation, and thermal management. Here we report a similar shape-morphing mechanism using differential swelling of hydrophilic polyelectrolyte multilayer inkjets deposited on an LBL carbon nanotube (CNT) composite. The out-of-plane deflection can be precisely controlled, as predicted by theoretical analysis. We also demonstrate a controlled and stimuli-responsive twisting motion on a spiral-shaped LBL nanocomposite. By mimicking the motions achieved in nature, this method offers new opportunities for the design and fabrication of functional stimuli-responsive shape-morphing nanoscale and microscale structures for a variety of applications.
机译:大自然提供了各种各样的固体材料,这些材料会根据环境变化而反复可逆地变形。例如,此属性对于新的节能技术,有效收集太阳辐射以及进行热管理至关重要。在这里,我们报告了使用沉积在LBL碳纳米管(CNT)复合材料上的亲水性聚电解质多层喷墨的不同溶胀的相似变形机制。正如理论分析所预测的那样,可以精确地控制平面外偏转。我们还演示了螺旋形的LBL纳米复合材料上的受控和刺激响应扭曲运动。通过模仿自然界中实现的运动,该方法为功能性刺激响应形变纳米级和微米级结构的设计和制造提供了新的机会,可用于各种应用。

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