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Transient bioelectrical devices inspired by a silkworm moth breaking out of its cocoon

机译:瞬时生物电装置受到蚕蛾突破茧的启发

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Transient devices have attracted extensive interest because they allow changes in physical form and device function under the control of external stimuli or related commands and have very broad application prospects for information security, biomedical care and the environment. Transient bioelectrical devices were fabricated inspired by a silkworm moth breaking out of its cocoon, which has shown many advantages, including the use of mild stimulation, biocompatible materials, a simple process, and a universal strategy. For the fabrication of the transient devices, heat-sensitive microspheres with a 9.3 mol L ~(?1) LiBr solution in wax shells were prepared by microfluidic technology, which were then assembled into silk fibroin (SF) electronic materials/devices, such as SF conductive film, an LED circuit on SF film, and a Ag/SF film/Pt/SF film memristor. The contribution from the LiBr/wax microspheres to the transient time of the SF films upon exposure to heat was quantitatively investigated. This approach was applied to transiently dissolve a flexible Ag-nanowire resistance circuit line on a SF substrate. Moreover, memristors constructed with a functional layer of SF were destroyed by melting the LiBr/wax microspheres. This technique paves the way for realizing transient bioelectrical devices inspired by biological behavior, which have been well optimized by nature via evolution.
机译:瞬态设备吸引了广泛的兴趣,因为它们允许在外部刺激或相关命令的控制下改变物理形式和设备功能,并在信息安全,生物医学护理和环境方面具有广阔的应用前景。瞬时生物电器件是受蚕茧破茧而生而制成的,它具有许多优势,包括使用温和刺激,生物相容性材料,简单工艺和通用策略。对于瞬态器件的制造,通过微流体技术制备了在蜡壳中具有9.3 mol L〜(?1)LiBr溶液的热敏微球,然后将其组装成丝素蛋白(SF)电子材料/器件,例如SF导电膜,SF膜上的LED电路以及Ag / SF膜/ Pt / SF膜忆阻器。定量研究了溴化锂/蜡微球对热暴露后SF膜瞬态时间的影响。该方法用于暂时溶解SF基板上的柔性Ag-纳米线电阻电路线。而且,通过熔化LiBr /蜡微球破坏了具有SF功能层的忆阻器。这项技术为实现受生物行为启发的瞬态生物电设备铺平了道路,该设备已通过自然界的进化得到了优化。

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