自愈水凝胶
材料科学
生物相容性材料
纳米技术
软机器人
软物质
微流控
3D打印
卷须
软质材料
仿生学
计算机科学
机器人
生物医学工程
工程类
复合材料
化学工程
人工智能
高分子化学
植物
胶体
生物
作者
Yin Cheng,Kwok Hoe Chan,Xiao‐Qiao Wang,Tianpeng Ding,Tongtao Li,Xin Lu,Ghim Wei Ho
出处
期刊:ACS Nano
[American Chemical Society]
日期:2019-10-18
卷期号:13 (11): 13176-13184
被引量:248
标识
DOI:10.1021/acsnano.9b06144
摘要
Hydrogels are promising starting materials for biomimetic soft robots as they are intrinsically soft and hold properties analogous to nature's organic parts. However, the restrictive mold-casting and post-assembly fabrication alongside mechanical fragility impedes the development of hydrogel-based soft robots. Herein, we harness biocompatible alginate as a rheological modifier to manufacture 3D freeform architectures of both chemically and physically cross-linked hydrogels using the direct-ink-write (DIW) printing. The intrinsically hydrophilic polymer network of alginate allows the preservation of the targeted functions of the host hydrogels, accompanied by enhanced mechanical toughness. The integration of free structures and available functionalities from diversified hydrogel family renders an enriched design platform for bioinspired fluidic and stimulus-activated robotic prototypes from an artificial mobile tentacle, a bioengineered robotic heart with beating–transporting functions, and an artificial tendril with phototropic motion. The design strategy expands the capabilities of hydrogels in realizing geometrical versatility, mechanical tunability, and actuation complexity for biocompatible soft robots.
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