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May 6, 2026Nano-Micro Letters0 citationsOpen Access

3D Printing Plasmonic-Enhanced Sulfurized Polyacrylonitrile Cathodes for High-Energy Li–S Microbatteries

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YLYu LiuPFPenghao FuJQJieshan Qiu

Key Points

  • To explore the integration of 3D printing in the fabrication of high-energy lithium-sulfur microbatteries.
  • Utilized 3D printing technology for producing sulfurized polyacrylonitrile cathodes.
  • Evaluated the versatility and performance of the cathodes for flexible and wearable electronics.
  • Investigated low-temperature operational capabilities.
  • Demonstrated effective energy solutions through additive manufacturing techniques.
  • Established a framework for combining redox chemistry and light-harvesting tactics.

Abstract

. Their versatility in flexible, transparent, and shape-customizable formats is demonstrated for wearable electronics and low-temperature operation. This work establishes a framework for uniting additive manufacturing, high-energy redox chemistry, and light-harvesting strategies to advance energy solutions.

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Cite This Study

Liu et al. (2026) studied this question.

synapsesocial.com/papers/69fa8eac04f884e66b531145https://doi.org/10.1007/s40820-026-02204-w
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