材料科学
导电体
3D打印
挤压
纳米技术
柔性电子器件
数码产品
复合材料
组织工程
制作
生物医学工程
电气工程
医学
工程类
病理
替代医学
作者
Sadaf Samimi Gharaie,Amir Seyfoori,Bardia Khun Jush,Xiong Zhou,Erik Pagan,Brent Godau,Mohsen Akbari
出处
期刊:Gels
[MDPI AG]
日期:2021-11-27
卷期号:7 (4): 240-240
被引量:11
摘要
Hydrogel-based bio-inks have been extensively used for developing three-dimensional (3D) printed biomaterials for biomedical applications. However, poor mechanical performance and the inability to conduct electricity limit their application as wearable sensors. In this work, we formulate a novel, 3D printable electro-conductive hydrogel consisting of silicate nanosheets (Laponite), graphene oxide, and alginate. The result generated a stretchable, soft, but durable electro-conductive material suitable for utilization as a novel electro-conductive bio-ink for the extrusion printing of different biomedical platforms, including flexible electronics, tissue engineering, and drug delivery. A series of tensile tests were performed on the material, indicating excellent stability under significant stretching and bending without any conductive or mechanical failures. Rheological characterization revealed that the addition of Laponite enhanced the hydrogel’s mechanical properties, including stiffness, shear-thinning, and stretchability. We also illustrate the reproducibility and flexibility of our fabrication process by extrusion printing various patterns with different fiber diameters. Developing an electro-conductive bio-ink with favorable mechanical and electrical properties offers a new platform for advanced tissue engineering.
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