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Research

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Liquid Metal

Gallium-based liquid metals combine metal-level thermal and electrical conductivity with fluidic deformability enabled by an oxide-stabilized surface. By engineering oxide-mediated interfaces and composites, this research develops tunable liquid-metal systems for thermal management, soft/bioelectronics, and energy applications.

Semiconducting Functional Polymeric Materials for Green Energy Storage and Energy Production

We design and study conjugated porous organic polymer materials with tunable electrochemical and optoelectronic properties for energy storage, energy conversion, and catalytic applications.

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Liquid Metal Thermal Platform
for Semiconductor Systems

Thermal Fluids, greases, and pads based on liquid-metal/polymer systems are designed to achieve high thermal conductivity while maintaining low viscosity, electrical insulation, softness, and long-term reliability for advanced electronic and energy-device cooling.

Multifunctional Liquid Metal-Hydrogels
by Liquid Metal-Hydrogel Composites

Development of Multifunctional Liquid Metal–Hydrogels for advanced wearable bioelectronics, electrophysiological monitoring, soft electronics and energy storage platforms.

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CONTACT US

Sungjune Park, Prof. Dr. Rer. Nat.
School of Chemical Engineering
Sungkyunkwan University, Suwon, Korea
E-mail: sungjunepark@skku.edu

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