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Do Yeon Kim

Researcher at Korea University

Publications -  88
Citations -  2595

Do Yeon Kim is an academic researcher from Korea University. The author has contributed to research in topics: Thin film & Reverse osmosis. The author has an hindex of 26, co-authored 83 publications receiving 1972 citations. Previous affiliations of Do Yeon Kim include Korea Research Institute of Standards and Science.

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Self-Junctioned Copper Nanofiber Transparent Flexible Conducting Film via Electrospinning and Electroplating.

TL;DR: Self-junctioned copper nanofiber transparent flexible films are produced using electrospinning and electroplating processes that provide high performances of T = 97% and Rs = 0.42 Ω sq(-1) by eliminating junction resistance at wire intersections.
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Self‐Healing Reduced Graphene Oxide Films by Supersonic Kinetic Spraying

TL;DR: In this article, a spray deposition method is developed that uses a supersonic air jet for a commercially available reduced graphene oxide (r-GO) suspension, which is used as received, which are pre-annealed and pre-hydrazine-treated, and do not undergo any post-treatment.
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Fabrication of a stretchable and patchable array of high performance micro-supercapacitors using a non-aqueous solvent based gel electrolyte

TL;DR: In this paper, a stretchable and patchable array of micro-supercapacitors (MSCs) using a gel-type electrolyte of poly(methyl methacrylate),propylene carbonate, and lithium perchlorate was reported.
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Body-Attachable and Stretchable Multisensors Integrated with Wirelessly Rechargeable Energy Storage Devices.

TL;DR: A stretchable multisensor system is successfully demonstrated with an integrated energy-storage device, an array of microsupercapacitors that can be repeatedly charged via a wireless radio-frequency power receiver on the same stretchable polymer substrate.
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Superhydrophobic surface decorated with vertical ZnO nanorods modified by stearic acid

TL;DR: In this paper, the static and dynamic wettability of the ZnO nanorod surface prepared by a facile and inexpensive route is reported, and the surface properties are assessed by calculating the surface free energies and work of adhesion.