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March 12, 2026Small0 citations

Immiscible Binary Organic Phase‐Change Composites with Segregated h‐BN Networks for Advanced Thermal Management (Small 13/2026)

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DLDong Hun LeeCKChae Bin Kim

Key Points

  • The aim is to develop organic phase-change composites with enhanced thermal management properties.
  • Utilized particle-stabilized emulsification for forming h-BN networks.
  • Melt-mixed the composites to ensure integration of components.
  • Analyzed thermal conductivity and phase stability under varying conditions.
  • Achieved a thermal conductivity of 20 W m−1 K−1.
  • Demonstrated shape stability above melting point.
  • Enabled tunable latent-heat buffering for efficient heat management.

Abstract

Thermal Management In article number (e10550) Donghun Lee and Chae Bin Kim report immiscible binary organic phase-change composites that spontaneously form segregated h-BN networks via particle-stabilized emulsification. The simple melt-mixed architecture delivers 20 W m−1 K−1 thermal conductivity, shape stability above melting, reprocessable adhesion, and tunable latent-heat buffering, enabling efficient CPU-level thermal management.

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Cite This Study

Lee et al. (2026) studied this question.

synapsesocial.com/papers/69b256fe96eeacc4fcec5aeehttps://doi.org/10.1002/smll.72902
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