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Biomimetic, Flexible, and Self-Healable Printed Silver Electrode by Spontaneous Self-Layering Phenomenon of a Gelatin Scaffold

机译:通过明胶脚手架的自发自我分层现象,仿生,柔性和自愈的印刷银电极

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Organic-inorganic hybrid layer-by-layer (LBL) composite structures can not only increase the strength and ductility of materials but also well disperse nanomaterials for better-conducting pathways. Here, we discovered the self-assembly process of an organic and silver (Ag) LBL hybrid structure having excellent sustainability during the long-term bending cycle. During the assembly process, the organic and Ag hybrid structure can be self-assembled into a layered structure. Unlike other conventional LBL fabrication processes, we applied the hydrogel scaffold of a biological polymer, which can spontaneously phase separate into an LBL structure in a water/alcohol solvent system. This new hydrogel-based Ag LBL patterns can successfully be printed on a flexible polyimide film without nozzle-clogging problem. Although these Ag LBL patterns cracked during the bending cycle, carbonized organic compounds between the Ag layers help to self-heal within few minutes at a low temperature (80 degrees C). On the basis of our new hydrogel-based Ag ink, we could fabricate a fully printed reliable microscale flexible heater. We expect that our self-layering phenomenon can expand to the broad research field of flexible electronics in the near future.
机译:有机 - 无机混合层逐层(LBL)复合结构不仅可以增加材料的强度和延展性,而且可以良好地分散纳米材料,用于更好地导通途径。这里,我们发现了在长期弯曲循环期间具有优异的可持续性的有机和银(Ag)LBL混合结构的自组装过程。在组装过程中,有机和Ag混合结构可以自组装成层状结构。与其他常规的LBL制造方法不同,我们施加了生物聚合物的水凝胶支架,其可以自发地相分离成水/醇溶剂体系中的LBL结构。这种新的水凝胶基AG LBL图案可以成功地印刷在柔性聚酰亚胺膜上而无喷嘴堵塞问题。尽管在弯曲循环期间破裂的这些AG LBL图案,但Ag层之间的碳化有机化合物有助于在低温下在几分钟内进行自愈(<80℃)。在我们的新型水凝胶基AG油墨的基础上,我们可以制造一个完全印刷的可靠的微观柔性加热器。我们预计我们的自我分层现象可以在不久的将来扩展到柔性电子的广泛研究领域。

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