首页> 外文期刊>International Journal of Polymer Science >Conducting Polymer-Based Composite Materials for Therapeutic Implantations: From Advanced Drug Delivery System to Minimally Invasive Electronics
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Conducting Polymer-Based Composite Materials for Therapeutic Implantations: From Advanced Drug Delivery System to Minimally Invasive Electronics

机译:用于治疗植入的聚合物基复合材料:从先进的药物输送系统到微创电子产品

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Conducting polymer-based composites have recently becoming popular in both academic research and industrial practices due to their high conductivity, ease of process, and tunable electrical properties. The multifunctional conducting polymer-based composites demonstrated great application potential for in vivo therapeutics and implantable electronics, including drug delivery, neural interfacing, and minimally invasive electronics. In this review article, the state-of-the-art conducting polymer-based composites in the mentioned biological fields are discussed and summarized. The recent progress on the synthesis, structure, properties, and application of the conducting polymer-based composites is presented, aimed at revealing the structure-property relationship and the corresponding functional applications of the conducting polymer-based composites. Furthermore, key issues and challenges regarding the implantation performance of these composites are highlighted in this paper.
机译:由于它们的高导电性,易于过程和可调谐电性能,导致基于聚合物基复合材料在学术研究和工业实践中变得流行。多功能导电聚合物基复合材料表明了体内治疗剂和可植入电子器件的巨大应用潜力,包括药物递送,神经接口和微创电子产品。在本文中,讨论并概述了所提到的生物领域中的最先进的基于聚合物基复合材料。介绍了导电聚合物基复合材料的合成,结构,性质和施加的最近进展,旨在揭示结构 - 性质关系和导电聚合物基复合材料的相应功能应用。此外,本文突出了关于这些复合材料的植入性能的关键问题和挑战。

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