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Geunbae Lim

Researcher at Pohang University of Science and Technology

Publications -  106
Citations -  2360

Geunbae Lim is an academic researcher from Pohang University of Science and Technology. The author has contributed to research in topics: Nanostructure & Lithography. The author has an hindex of 23, co-authored 106 publications receiving 1849 citations. Previous affiliations of Geunbae Lim include Agency for Defense Development.

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Spontaneous electrical charging of droplets by conventional pipetting

TL;DR: It is reported that a droplet dispensed from a micropipette almost always has a considerable electrical charge of a magnitude dependent on the constituents of the droplet, on atmospheric humidity and on the coating material of pipette tip.
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Experimental Verification of Overlimiting Current by Surface Conduction and Electro-Osmotic Flow in Microchannels

TL;DR: A unified picture of surface-driven OLC can guide further advances in electrokinetic theory, as well as engineering applications of ion concentration polarization in microfluidics and porous media.
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An underwater superoleophobic nanofibrous cellulosic membrane for oil/water separation with high separation flux and high chemical stability.

TL;DR: The nanofibrous cellulosic membrane exhibited a fine porous structure that was interconnected throughout the membrane, resulting in a high oil intrusion pressure that allowed not only gravity-driven but also pressure-driven separation of oil/water mixtures.
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Handheld Photoacoustic Microscopy Probe

TL;DR: The possibility of clinical applications for melanoma diagnosis is investigated by imaging the boundaries and morphology of a human mole by developing a handheld PAM probe with a high signal-to-noise ratio and image rate using microelectromechanical systems technology.
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Bio-inspired swellable hydrogel-forming double-layered adhesive microneedle protein patch for regenerative internal/external surgical closure.

TL;DR: A hydrogel-forming double-layered adhesive microneedle (MN) patch consisting of a swellable mussel adhesive protein (MAP)-based shell and a non-swellable silk fibroin (SF)-based core that achieved ex vivo superior wound sealing capacity against luminal leaks and in vivo excellent performance for wet and/or dynamic external and internal tissues.