Papers
4
Total Citations
115
H-Index
3
About
Hyunmin Park is a pioneering researcher at the intersection of soft materials, neuromorphic engineering, and advanced manufacturing. Their work centers on developing highly deformable electronic materials and bioinspired systems for wearable and robotic applications. Park’s most impactful contribution is the development of a self-mixed biphasic liquid metal composite that achieves unprecedented stretchability (up to 1200% strain) with remarkable strain-insensitivity (ΔR/R₀ = 1.4), enabling robust neuromorphic circuits that function under extreme deformations—a critical advance for data-driven wearables. This work has garnered 48 citations since 2024. Park also introduced a bidirectional thermo-regulating hydrogel composite for autonomic thermal homeostasis (22 citations, 2023), mimicking the body’s natural temperature regulation. In parallel, their review on carbon fiber-reinforced polymer trimming (42 citations, 2023) addresses key challenges in precision manufacturing. Earlier in their career, Park developed a novel test method for squeak and rattle evaluation in automotive door trims using a statically repeated loading robot arm. By bridging soft electronics, thermal management, and structural integrity, Park’s research continues to push the boundaries of stretchable circuits and smart materials.
Research Focus
Key Achievements
Top Papers
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