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首页> 外文期刊>ACS nano >Fullerenol-based electroactive artificial muscles utilizing biocompatible polyetherimide
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Fullerenol-based electroactive artificial muscles utilizing biocompatible polyetherimide

机译:利用生物相容性聚醚酰亚胺的基于富勒烯醇的电活性人造肌肉

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摘要

Two essential functional requirements for electroactive artificial muscles, which can be used for biomedical active devices, are biocompatibility and sufficient range of motion. Fullerenol nanoparticles and their derivatives have been validated as potential candidates to be used for nanobiomaterials and biomedical applications because of their excellent proton conductivity, hydrophilicity, and biocompatibility. We developed fullerenol-based electroactive artificial muscles utilizing biocompatible polyetherimide. By using a solvent recasting method, present ionic networking membranes have been successfully synthesized with homogeneous dispersion of polyhydroxylated fullerene (PHF) nanoparticles into a sulfonated polyetherimide (SPEI) matrix. In comparison with pure SPEI membranes, the PHF-SPEI nanocomposite membranes show much higher water uptake and proton conductivity, which are both essential characteristics for high-performance ionic polymer actuators. The developed PHF-SPEI actuator shows over three times larger motion ranges and two times higher blocking forces than the pure SPEI actuator. The excellent biocompatibility of PHF and SPEI makes these actuators promising candidate materials for biomedical devices such as active stents and catheters.
机译:可用于生物医学有源设备的电活性人造肌肉的两个基本功能要求是生物相容性和足够的运动范围。富勒烯醇纳米颗粒及其衍生物由于其优异的质子传导性,亲水性和生物相容性,已被证实可用于纳米生物材料和生物医学应用。我们利用生物相容性聚醚酰亚胺开发了基于富勒烯醇的电活性人造肌肉。通过使用溶剂重铸方法,已成功地将聚羟基化富勒烯(PHF)纳米颗粒均匀分散在磺化聚醚酰亚胺(SPEI)基质中,合成了目前的离子网络膜。与纯SPEI膜相比,PHF-SPEI纳米复合膜显示出更高的吸水率和质子传导性,这都是高性能离子聚合物促动器的基本特征。研发的PHF-SPEI执行器的运动范围是纯SPEI执行器的三倍以上,闭锁力则高出两倍。 PHF和SPEI的出色生物相容性使这些执行器成为有前景的生物医学设备候选材料,例如有源支架和导管。

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