Unveiling the Ultrafast Self-healability of Ionoconductor via Ionic Cluster Formation for Electronic Applications
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Implementing self-healing capability on a deformable platform is one of the critical challenges for achieving future wearable electronics with high durability and reliability. Moreover, self-healing materials are expected to maximize the utility of electronic equipment in extreme conditions not easily accessible to humans, such as the space and deep-sea. In this work, we propose an innovative self-healing process driven by the rapid dynamic formation/dissociation of ion clusters. The novel aspect of this work lies in achieving record-high self-healing performance with no energy injection and successful demonstration of a new future electronics platform, “reconfigurable electronics”, which can change shape according to the users’ demands through a cutting/healing protocol.