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Jin-Moon Choi

Yonsei University

研究室紹介

Professor Jin-Moon Choi's research lab specializes in advanced surface engineering and functional materials, focusing on environmentally friendly surface modification techniques for polymers and plastics. The lab develops innovative, dry-process methods—such as atmospheric plasma treatment using dielectric barrier discharges—for enhancing adhesion in electroless plating, particularly on materials like polypropylene and ABS. A key research direction involves creating high-performance conductive polymer composites for electronic and sensor applications, including humidity sensors based on air capacitors. The lab emphasizes sustainable, chemical-free processes that improve material compatibility and performance while minimizing environmental impact.

surface modificationelectroless platingatmospheric plasmapolymer compositeshumidity sensors

Research Overview

Papers
5
Total Citations
2
Papers (5y)
5
Primary Field

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
5total
2007
2010
2011
2013
Citations per year (5y)
2total
2007201020112013

Selected Papers

5
1
Article|1 citations·2011
A Composite of Metal and Polymer Films: Thin Nickel Film Coated on a Polypropylene Film after Atmospheric Plasma Induced Surface Modification
Ho Shik Song, 최진문, 김태완

Polymeric films of high chemical stability and mechanical strength covered with a thin metallic film have been extensively used in various fields as electric and electronic materials. In this study, we have chosen polypropylene (PP) as the polymer due to its outstanding chemical resistance and good creep resistance. We coated thin nickel film on PP films by the electroless plating process. The surfaces of PP films were pre-treated and modified to increase the adhesion strength of metal layer on

2
Article|1 citations·2010
An Environment-Friendly Surface Pretreatment of ABS Plastic for Electroless Plating Using Chemical Foaming Agents
강동호, 최진철, 최진문, 김태완

We have developed an environment-friendly etching process, an alternative to the dichromic acid etching process, as a pretreatment of acrylonitrile-butadiene-styrene (ABS) plastic for electroless plating. In order to plate ABS plastic in an electroless way, there should be fine holes on the surface of the ABS plastic to enhance mechanically the adhesion strength between the plastic surface and the plate. To make these holes, the surface was coated uniformly with dispersed chemical foaming agents

3
Article|0 citations·2013
Humidity Sensor Using an Air Capacitor
최진문, 김태완

We studied the possibility that an air capacitor can be used as a humidity sensor by measuring capacitance change. In order to investigate the possibility, the change of capacitance of an air capacitor due to moisture in air was first considered theoretically, and was then experimentally verified. The capacitance was measured by an LCR impedance meter with a 100-kHz and 1-V ac. The results revealed that the changes in the experimentally measured capacitances were greater than those in the theore

4
Article|0 citations·2013
Surface Modification by Atmospheric Pressure DBDs Plasma: Application to Electroless Ni Plating on ABS Plates
송호식, 최진문, 김태완

Acrylonitrile-butadiene-styrene (ABS) plastic is a polymer material extensively used in electrical and electronic applications. Nickel (Ni) thin film was deposited on ABS by electroless plating, after its surface was treated and modified with atmospheric plasma generated by means of dielectric barrier discharges (DBDs) in air. The method in this study was developed as a pre-treatment for electroless plating using DBDs, and is a dry process featuring fewer processing steps and more environmentall

5
Article|0 citations·2007
소성 온도에 따른 Cu-coated CaS:Eu2+의 A.C. powder EL 발광 특성 연구
최진철, 박준석, 백운일, 최진문

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