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Bio-inspired sensing and actuating materials

机译:生物启发的传感和致动材料

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摘要

Biological systems contain various amazing examples that can display adaptive and active behaviors in response to external stimuli. The changes in skin color and/or shapes according to environmental changes are common examples of the adaptive and active behaviors of creatures for better survival. To mimic these outstanding sensing and actuating behaviors of creatures, a new generation of bio-inspired sensing and actuating materials have been recently attracting extensive attention. Based on stimuli-responsive materials, these bio-inspired sensing and actuating materials can also exhibit the capabilities of changing their colors and/or shapes upon exposure to specific external stimuli, which hold great promise in a variety of fields such as sensors, actuators, flexible electronics, soft robotics and various biomedical applications. This review summarizes the-state-of-the-art progress of bio-inspired sensing and actuating materials, with focuses on the design principles and the technologies for forming these materials, as well as the introduction of their potential for versatile applications. Finally, an outlook on the challenges and future directions of bio-inspired sensing and actuating materials is presented.
机译:生物系统包含各种令人惊叹的例子,可以响应外部刺激显示自适应和主动行为。根据环境变化的肤色和/或形状的变化是生物的自适应和积极行为的常见示例,以便更好地生存。为了模仿这些未突出的传感和激励行为,最近一代新一代的生物启发和动力材料已经吸引了广泛的关注。基于刺激响应材料,这些生物启发的传感和致动材料还可以表现出在暴露于特定的外部刺激时改变其颜色和/或形状的能力,这在传感器,执行器等各种领域中保持了巨大的通知,灵活的电子产品,软机器人和各种生物医学应用。本综述总结了生物启发式传感和执行材料的最先进的进展,重点是设计原则和形成这些材料的技术,以及引入其对多功能应用的潜力。最后,提出了关于生物启发传感和执行材料的挑战和未来方向的展望。

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