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October 15, 2025Langmuir9 citations

Beyond Materials: The Interface as a Design Paradigm in Structural Supercapacitors

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FMFouzia MashkoorMSMohd ShoebBKByeong‐Joo Kim

Key Points

  • Strong interface control enables effective trade-offs between mechanical stiffness and electrochemical performance.
  • Advancements in polymer electrolyte design can significantly enhance ion transport and energy retention.
  • Recent studies emphasize the importance of interface interactions in governing overall performance in structural supercapacitors.
  • A strategic roadmap outlines scalable methods for optimizing structural supercapacitors for future applications.

Abstract

Structural supercapacitors (SSCs) are poised to revolutionize energy storage in lightweight systems by integrating mechanical load-bearing and electrochemical functionality into a single device. However, a core challenge remains unresolved: simultaneously achieving a high mechanical stiffness and robust electrochemical performance. This Perspective presents a focused viewpoint on interface-dominated mechanisms that dictate the multifunctionality in SSCs. Advancements in carbon fiber surface activation, polymer electrolyte design, and nanomaterial interlayers are identified as promising pathways to decouple the mechanical electrochemical trade-off. Recent literature and experimental insights demonstrate that interface engineering at the fiber/electrolyte and electrode/separator interfaces governs ion transport, stress distribution, and energy retention. A strategic roadmap for scalable fabrication and performance optimization is outlined, positioning interface control as the linchpin of next-generation SSC technologies.

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Cite This Study

Mashkoor et al. (2025) studied this question.

synapsesocial.com/papers/68efbd16d61273c8652d7fbfhttps://doi.org/10.1021/acs.langmuir.5c03247
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