Conductive/Insulating Bioinks with Multitechnology Compatibility and Adjustable Performance

材料科学 导电体 相容性(地球化学) 复合材料
作者
Xi Yang,Yufan Zhong,Liang Zhang,Liang Zhang,Yulu Liu,Fengling Zhuo,Jianmin Wang,Linyan Ge,Liuhang Zhang,Liuhang Zhang,Xiangyu Zeng,Wei‐Qiang Tan,Guanghui Song,Hua Zhang,Xiaozhi Wang
出处
期刊:ACS Biomaterials Science & Engineering [American Chemical Society]
卷期号:10 (8): 5352-5361 被引量:4
标识
DOI:10.1021/acsbiomaterials.4c00631
摘要

Conducting/insulating inks have received significant attention for the fabrication of a wide range of additive manufacturing technology. However, current inks often demonstrate poor biocompatibility and face trade-offs between conductivity and mechanical stiffness under physiological conditions. Here, conductive/insulating bioinks based on two-dimensional materials are proposed. The conductive bioink, graphene (GR)-poly(lactic-co-glycolic acid) (PLGA), is prepared by introducing conductive GR into a degradable polymer matrix, PLGA, while the insulating bioink, boron nitride (BN)-PLGA, is synthesized by adding insulating BN. By optimizing the material ratios, this work achieves precise control of the electromechanical properties of the bioinks, thereby enabling the flexible construction of conductive networks according to specific requirements. Furthermore, these bioinks are compatible with a variety of manufacturing technologies such as 3D printing, electrospinning, spin coating, and injection molding, expanding their application range in the biomedical field. Overall, the results suggest that these conducting/insulating bioinks offer improved mechanical, electronic, and biological properties for various emerging biomedical applications.
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