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蒸汽和光响应生物相容性软致动器

Vapor and Light Responsive Biocompatible Soft Actuator.

作者信息

Kumar Vipin, Satapathy Dillip K

机构信息

Soft Materials Laboratory, Department of Physics, IIT Madras, Chennai-600036, Tamil Nadu India.

Center for Soft and Biological Matter, IIT Madras, Chennai-600036, Tamil Nadu India.

出版信息

Langmuir. 2024 May 28;40(21):11206-11214. doi: 10.1021/acs.langmuir.4c00861. Epub 2024 May 15.

Abstract

Bioinspired smart polymeric materials that undergo three-dimensional shape deformation in response to specific stimuli have gained significant attention in the field of soft robotics and intelligent devices. Despite the substantial advancements in soft robotics, there is a growing demand for the design of multistimuli-responsive soft actuators using a single layer of material due to its reduced complexity and ease of manufacturing and durability. Here, we report the actuation characteristics of a single-layer, dual-responsive soft actuator that overcomes the commonly encountered delamination issues often associated with bilayer systems by incorporating PEDOT:PSS with cassava starch. This soft actuator exhibits deformations in response to various solvent vapors, such as water, alcohol, and acetone. Remarkably, it demonstrates opposite deformations upon exposure to water and alcohol vapors. Additionally, the actuator responds to light triggers and folds upon exposure to sunlight and infrared light. The degree of folding can be precisely controlled by adjusting the intensity of the light source. Furthermore, the periodic geometric patterns imposed on the surface of the actuator provide an additional handle to control the bending axis. For proof of concept, we leverage the actuation capabilities of our actuator to showcase a range of potential applications, including its usage in wearable textiles, crawler robots, smart curtains, push-and-pull machines, and smart lifts.

摘要

受生物启发的智能聚合物材料,能在特定刺激下发生三维形状变形,在软机器人技术和智能设备领域受到了广泛关注。尽管软机器人技术取得了重大进展,但由于单层材料设计的多刺激响应软致动器复杂性降低、易于制造且耐用,对其需求日益增长。在此,我们报告了一种单层双响应软致动器的驱动特性,该致动器通过将聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)与木薯淀粉结合,克服了双层系统常见的分层问题。这种软致动器能响应各种溶剂蒸汽,如水、酒精和丙酮,产生变形。值得注意的是,它在暴露于水和酒精蒸汽时会表现出相反的变形。此外,该致动器对光触发有响应,在暴露于阳光和红外光时会折叠。通过调整光源强度可精确控制折叠程度。此外,施加在致动器表面的周期性几何图案为控制弯曲轴提供了额外手段。为验证概念,我们利用致动器的驱动能力展示了一系列潜在应用,包括其在可穿戴纺织品、履带式机器人、智能窗帘、推拉机器和智能升降机中的应用。

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