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May 6, 2026

High Performance Composite Thermochemical Heat Storage Materials Synthesized by Impregnation, Foaming, and Fibering: A Comprehensive Review.

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Authors

MWMulugeta Tadesse WotangoMaterials Science & EngineeringKWKejian WangBeijing University of Chemical TechnologyYLYong LiuMaterials Science & Engineering

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Implication

Comprehensive review reveals enhanced thermal conductivity and sorption capacity in thermochemical heat storage systems.

Key Points

  • This review explores advanced methods and materials for high-performance thermochemical heat energy storage systems.
  • Examined methods including impregnation, foaming, and fibering for material synthesis.
  • Reviewed various materials like carbon-based, metallic, and MXene composites for improved performance.
  • Analyzed structure optimization for enhanced thermal conductivity and cyclic stability.
  • Identified optimal porous structures for effective heat transfer in thermochemical systems.
  • Highlighted increased thermal conductivity from composite polymers and nanofiber materials.
  • Showed improved sorption capacity with metal-organic frameworks, alumina, silica, and zeolite.

Cite This Study

Wotango et al. (2026) studied this question.

synapsesocial.com/papers/69fa8e3804f884e66b5308e7https://doi.org/10.1021/acsami.6c05662
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