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Hyunchul Park

Researcher at Korea Institute of Science and Technology

Publications -  43
Citations -  819

Hyunchul Park is an academic researcher from Korea Institute of Science and Technology. The author has contributed to research in topics: Wetting & DNA methylation. The author has an hindex of 15, co-authored 43 publications receiving 593 citations. Previous affiliations of Hyunchul Park include Seoul National University & ETH Zurich.

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Enhanced Terahertz Shielding of MXenes with Nano-Metamaterials

TL;DR: In this paper, the authors showed that the combination of an ultrathin transition metal carbide (MXene) film and a nano-metamaterial shows excellent shielding performance in the microwave regime.
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Multiplex lithography for multilevel multiscale architectures and its application to polymer electrolyte membrane fuel cell

TL;DR: A simple yet versatile strategy that allows for the LEGO-like integrations of microscale membranes by quantitatively controlling the oxygen inhibition effects of ultraviolet-curable materials, leading to multilevel multiscale architectures.
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Replication of flexible polymer membranes with geometry-controllable nano-apertures via a hierarchical mould-based dewetting

TL;DR: A new type of flexible and free-standing polymeric membrane with nano-apertures is reported by exploiting high-wettability difference and geometrical reinforcement via multiscale, multilevel architecture.
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Exploiting radiative cooling for uninterrupted 24-hour water harvesting from the atmosphere

TL;DR: In this paper, a rationally designed system that synergistically combines radiative shielding and cooling-dissipating the latent heat of condensation radiatively to outer space-with a fully passive super-hydrophobic condensate harvester, working with a coalescence-induced water removal mechanism, is presented.
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DNA Barcoding of Fish, Insects, and Shellfish in Korea

TL;DR: The results confirm that distance-based DNA barcoding provides sufficient information to identify and delineate fish, insect, and shellfish species by means of all possible pairwise comparisons and confirm that the development of an effective molecular barcode identification system is possible.