Innovative Center for Flexible Devices, School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
Adv Mater. 2017 Sep;29(33). doi: 10.1002/adma.201701627. Epub 2017 Jun 29.
Compared with traditional stimuli-responsive devices with simple planar or tubular geometries, 3D printed stimuli-responsive devices not only intimately meet the requirement of complicated shapes at macrolevel but also satisfy various conformation changes triggered by external stimuli at the microscopic scale. However, their development is limited by the lack of 3D printing functional materials. This paper demonstrates the 3D printing of photoresponsive shape memory devices through combining fused deposition modeling printing technology and photoresponsive shape memory composites based on shape memory polymers and carbon black with high photothermal conversion efficiency. External illumination triggers the shape recovery of 3D printed devices from the temporary shape to the original shape. The effect of materials thickness and light density on the shape memory behavior of 3D printed devices is quantified and calculated. Remarkably, sunlight also triggers the shape memory behavior of these 3D printed devices. This facile printing strategy would provide tremendous opportunities for the design and fabrication of biomimetic smart devices and soft robotics.
与具有简单平面或管状几何形状的传统刺激响应设备相比,3D 打印刺激响应设备不仅紧密满足宏观复杂形状的要求,而且还满足微观尺度上外部刺激引发的各种构象变化的要求。然而,它们的发展受到缺乏 3D 打印功能材料的限制。本文通过结合熔融沉积建模打印技术和基于形状记忆聚合物和具有高光热转换效率的炭黑的光响应形状记忆复合材料,展示了光响应形状记忆器件的 3D 打印。外部照射将 3D 打印设备从临时形状触发到原始形状的形状恢复。定量和计算了材料厚度和光密度对 3D 打印设备形状记忆行为的影响。值得注意的是,阳光也能触发这些 3D 打印设备的形状记忆行为。这种简单的打印策略将为仿生智能设备和软机器人的设计和制造提供巨大的机会。