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Biocompatible Electromechanical Actuators Composed of Silk-Conducting Polymer Composites

机译:导电聚合物复合材料组成的生物相容性机电致动器

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摘要

Single-component, metal-free, biocompatible, electromechanical actuator devices are fabricated using a composite material composed of silk fibroin and poly(pyrrole) (PPy). Chemical modification techniques are developed to produce free-standing films with a bilayer-type structure, with unmodified silk on one side and an interpenetrating network (IPN) of silk and PPy on the other. The IPN formed between the silk and PPy prohibits delamination, resulting in a durable and fully biocompatible device. The electrochemical stability of these materials is investigated through cyclic voltammetry, and redox sensitivity to the presence of different anions is noted. Free-end bending actuation performance and force generation within silk-PPy composite films during oxidation and reduction in a biologically relevant environment are investigated in detail. These silk-PPy composites are stable to repeated actuation, and are able to generate forces comparable with natural muscle (>0.1 MPa), making them ideal candidates for interfacing with biological tissues.
机译:使用由丝素蛋白和聚吡咯(PPy)组成的复合材料制造单组分,无金属,生物相容的机电致动器装置。已开发出化学改性技术,以生产具有双层结构的自立式薄膜,一侧为未改性的丝,另一侧为丝和PPy的互穿网络(IPN)。丝绸和PPy之间形成的IPN可以防止分层,从而形成耐用且完全生物相容的设备。通过循环伏安法研究了这些材料的电化学稳定性,并注意到氧化还原对不同阴离子存在的敏感性。详细研究了丝绸-PPy复合膜在生物相关环境中的氧化和还原过程中的自由端弯曲致动性能和力产生。这些蚕丝-PPy复合材料对反复驱动稳定,并能够产生与天然肌肉相当的力(> 0.1 MPa),使其成为与生物组织相接的理想候选材料。

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  • 来源
    《Advanced Functional Materials》 |2014年第25期|3866-3873|共8页
  • 作者单位

    Department of Chemistry Western Washington University 516 High St. Bellingham, WA 98225-9150, USA;

    Department of Chemistry Western Washington University 516 High St. Bellingham, WA 98225-9150, USA;

    Department of Chemistry Western Washington University 516 High St. Bellingham, WA 98225-9150, USA;

    Department of Chemistry Western Washington University 516 High St. Bellingham, WA 98225-9150, USA;

    Department of Physics and Astronomy Western Washington University Bellingham, WA 98225-9164, USA;

    Department of Chemistry Western Washington University 516 High St. Bellingham, WA 98225-9150, USA;

    Department of Physics and Astronomy Western Washington University Bellingham, WA 98225-9164, USA;

    Department of Chemistry Western Washington University 516 High St. Bellingham, WA 98225-9150, USA;

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