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Jeong In Kim

Researcher at Chonbuk National University

Publications -  32
Citations -  1013

Jeong In Kim is an academic researcher from Chonbuk National University. The author has contributed to research in topics: Electrospinning & Nanofiber. The author has an hindex of 14, co-authored 26 publications receiving 768 citations.

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A Controlled Design of Aligned and Random Nanofibers for 3D Bi-functionalized Nerve Conduits Fabricated via a Novel Electrospinning Set-up.

TL;DR: A new conduit with a highly-aligned electrospun mat is produced with this modified electrospinning method, and this proposed conduit with favorable features, such as selective permeability, hydrophilicity and nerve growth directional steering, were fabricated as nerve guide conduits (NGCs).
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Electrospun propolis/polyurethane composite nanofibers for biomedical applications.

TL;DR: Results suggest that the incorporation of propolis into PU fibers could increase its cell compatibility and effective antibacterial activity and as-synthesized nanocomposite fibrous mat has great potentiality in wound dressing and skin tissue engineering.
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High-performance glucose biosensor based on chitosan-glucose oxidase immobilized polypyrrole/Nafion/functionalized multi-walled carbon nanotubes bio-nanohybrid film.

TL;DR: The resulting biosensor presented reliable selectivity, better long-term stability, good repeatability, reproducibility, and acceptable measurement of glucose concentration in real serum samples and can open up new avenues for clinical applications.
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One-step fabrication of multifunctional composite polyurethane spider-web-like nanofibrous membrane for water purification

TL;DR: Preliminary observations used for water treatment showed that the stable silver-doped fly ash/polyurathene nanocomposite multifunctional membrane will be an economically and environmentally friendly nonwoven matrix for water purification.
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Electrodeless coating polypyrrole on chitosan grafted polyurethane with functionalized multiwall carbon nanotubes electrospun scaffold for nerve tissue engineering

TL;DR: A self-electrical stimulated double-layered nerve guidance conduit assembled from electrospun mats with an aligned oriented inward layer covered with a random oriented outer layer that maintains a strong adaptability in axonal regeneration is engineered.