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Modulated Degradation of Transient Electronic Devices through Multilayer Silk Fibroin Pockets

机译:多层丝素蛋白口袋对瞬态电子器件的调制降解

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The recent introduction of transient, bioresorbable electronics into the field of electronic device design offers promise for the areas of medical implants and environmental monitors, where programmed loss of function and environmental resorption are advantageous characteristics. Materials challenges remain, however, in protecting the labile device components from degradation at faster than desirable rates. Here we introduce an indirect passivation strategy for transient electronic devices that consists of encapsulation in multiple air pockets fabricated from silk fibroin. This approach is investigated through the properties of silk as a diffusional barrier to water penetration, coupled with the degradation of magnesium-based devices in humid air. Finally, silk pockets are demonstrated to be useful for controlled modulation of device lifetime. This approach may provide additional future opportunities for silk utility due to the low immunogenicity of the material and its ability to stabilize labile biotherapeutic dopants.
机译:瞬态,可生物吸收的电子器件最近被引入电子设备设计领域,为医疗植入物和环境监测器领域带来了希望,在这些领域中,程序性功能丧失和环境吸收是有利的特征。然而,在保护不稳定的器件部件免于以比期望的速率更快的速度降解的过程中,仍然存在材料挑战。在这里,我们介绍了一种用于瞬态电子设备的间接钝化策略,该策略包括封装在由丝素蛋白制成的多个气囊中。通过丝绸作为水渗透扩散屏障的特性,以及潮湿空气中镁基器件的降解,研究了这种方法。最后,丝袋被证明对控制设备寿命的调制很有用。由于该材料的低免疫原性及其稳定不稳定的生物治疗性掺杂剂的能力,这种方法可能为丝绸的应用提供更多的未来机会。

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