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首页> 外文期刊>Advanced Functional Materials >Smart Passivation Materials with a Liquid Metal Microcapsule as Self-Healing Conductors for Sustainable and Flexible Perovskite Solar Cells
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Smart Passivation Materials with a Liquid Metal Microcapsule as Self-Healing Conductors for Sustainable and Flexible Perovskite Solar Cells

机译:具有液态金属微囊作为可持续和柔性钙钛矿太阳能电池自愈导体的智能钝化材料

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The electrical repair of device circuits has been considered a main issue in the area of electronic packaging. Demand for self-healing conductors as cost-effective and promising materials for prolonging the durability of devices has increased. Recently, diverse designs of self-healing and deformable circuits have been introduced in virtue of their high stretchability and conductivity. However, encapsulating a liquid metal with a polymer in a micro-size container is essential for real applications. In this work, core-shell-structured liquid metal microcapsules (LMCs, diameter = 2-10 mu m) are synthesized via in situ polymerization of urea-formaldehyde onto liquid metal colloids. Passivation films comprising LMC/polymer composites are simply prepared using phase separation between the capsules and the liquid prepolymer. Capsules ruptured by cutting or pressing release and transport liquid metal to the damaged sites, leading to effective recovery of electrical pathways. Such self-healing of the metal contacts shows the high potential of LMCs for smart passivation of electronic devices. As an example, flexible perovskite solar cells incorporated with the passivation film demonstrate perfect recovery of the photovoltaic parameters immediately after cutting the metal contact, exhibiting a power conversion efficiency (PCE) retention of 99% relative to the initial value (PCE = 15.07%).
机译:设备电路的电气维修已被视为电子封装领域的主要问题。对于自愈导体作为具有成本效益且有希望的材料以​​延长装置的耐用性的需求已经增加。最近,由于其高拉伸性和导电性,已经引入了多种多样的自愈和可变形电路设计。但是,在实际应用中,用聚合物将液态金属封装在微型容器中是必不可少的。在这项工作中,通过尿素甲醛在液态金属胶体上的原位聚合反应,合成了核壳结构的液态金属微囊(LMC,直径= 2-10μm)。使用胶囊和液体预聚物之间的相分离,可以简单地制备包含LMC /聚合物复合物的钝化膜。胶囊通过切割或挤压释放而破裂,并将液态金属运输到受损部位,从而有效恢复电通路。金属触点的这种自我修复显示出LMC在电子设备的智能钝化方面具有很高的潜力。例如,与钝化膜结合的柔性钙钛矿太阳能电池在切断金属接触后立即显示出光伏参数的完美恢复,相对于初始值(PCE = 15.07%),功率转换效率(PCE)保持率达99%。 。

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