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김영기,최병정,양성채,Kim, Young-Gi,Choi, Byoung-Jung,Yang, Sung-Chae 한국전기전자재료학회 2010 전기전자재료학회논문지 Vol.23 No.1
The plasma processing technologies of thin film deposition and surface treatment technique have been applied to many industrial fields. This study is purposed Large-area uniformity and surface treatment on the stainless substrate. We treat surface of stainless by $CF_4$ plasma. $CF_4$ plasma is generated by using SPM(Scanning plasma method)which is kind a of CVD. Generally, SPM has been used for uniform surface treatment using a crossed electromagnetic field. The optimum discharge condition has been studied for the gas pressure, the magnetic flux density and the distance between substrate and electrodes. In result, contact angle is increased by surface treatment using $CF_4$ Plasma. Therefore we expect that SPM to control contact angle is applied to many industries.
플라즈마 표면처리를 이용한 YBCO Coated Conductor의 Ag 박막층 증착에 관한 연구
정현기,양성채,최병정,두호익,Jeong, Hyun-Gi,Yang, Sung-Chae,Choi, Byoung-Jung,Du, Ho-Ik 한국전기전자재료학회 2017 전기전자재료학회논문지 Vol.30 No.1
The Ag thin film of YBCO (yttrium barium copper oxide) CC (coated conductor) protect the YBCO layer and, at the same time, affects the electrical characteristics of the YBCO CC. Therefore, YBCO CC with the commercialization of the Ag thin film layers makes it easy to establish a process, it can lead to a variety of characteristic changes in YBCO CC. In this paper, plasma surface treatment was carried out to facilitate the deposition of the Ag thin film and the deposition process of YBCO CC. Surface roughness from the test results was increased as the time of the plasma surface treatment increased from 5 to 20 minutes. On the other hand, the surface roughness was decreased for the time of the plasma surface treatment over 20 minutes. Furthermore, after depositing, the increasing of deposit amount and reduced lifting phenomenon showed a similar tendency with the rise time of surface roughness.
Acquisition of Monochromatic X-ray using Graded Multilayer Mirror
유철우(Cheol woo Ryu),최병정(Byoung jung Choi),손현화(Hyun hwa Son),권영만(Young man Kwon),김병욱(Byoung wook Kim),김영주(Young ju Kim),천권수(Kwon su Chon) 한국방사선학회 2015 한국방사선학회 논문지 Vol.9 No.3
최근 의료영상기술에서 유방암 엑스선 진단기술의 주요 이슈는 정확한 조기암 진단과 환자의 피폭선량의 감소에 있다. 엑스선 영상대비도를 높이고 피폭선량을 줄이는 기술 중 하나로써 다층박막거울을 이용한 단색 엑스선을 획득하는 연구가 선행되어 왔다. 그러나 기존의 Uniform 다층박막거울은 거울면의 일부 반사영역에서만 원하는 파장대역의 단색 엑스선을 얻을 수 있어서 엑스선 영상기술 응용에 한계가 있다. 본 연구에서는 다층박막거울의 전 영역에 걸쳐 동일한 단색엑스선을 얻기 위해 거울에 입사하는 백색 엑스선의 입사각에 상응하는 선형적 기울기의 박막두께를 갖는 Graded 다층박막거울을 설계하였고, 기존 이온빔 스퍼터링 장치에 마스크 제어 장치를 추가 제작하여 100×100mm² 크기로 제작하였다. 제작된 Graded 다층박막거울은 17.5keV의 단색 엑스선을 획득할 수 있도록 설계하였으며 박막두께주기는 2.88nm~4.62nm(Center 3.87nm)이다. 엑스선 반사율은 60% 이상이며, 단색 엑스선의 FWHM은 1.4keV 이하이고 엑스선 빔 폭은 3mm정도이다. 유방촬영에 적합한 몰리브덴 특성엑스선에 해당하는 17.5keV의 단색 엑스선을 얻음으로써 저선량ㆍ고감도 유방암 진단장치 개발에 응용할 수 있을 것으로 기대된다. At a recent medical imaging technology, the major issue of X-ray diagnosis in breast cancer is the early detection of breast cancer and low patient's exposure dose. As one of studies to acquire a monochromatic X-ray, Technologies using multilayer mirror had been preceded. However, a uniform multilayer mirror that consists of uniform thin-film thickness can acquire a monochromatic X-ray only in the partial area corresponds to angle of incidence of white X-ray, so there are limits for X-ray imaging technology applications. In this study, we designed laterally graded multilayer mirror(below GML) that reflects same monochromatic X-ray over the entire area of thin-film mirror, which have the the thickness of the linear gradient that correspond to angle of incidence of white X-ray. By using ion-beam sputtering system added the mask control system we fabricated a GML which has size of 100×100mm². The GML is designed to achieve the monochromatic X-ray of 17.5kev energy and has thin-film thickness change from 4.62nm to 6.57nm(3.87nm at center). It reflects the monochromatic X-ray with reflectivity of more than 60 percent, FWHM of below 2.6keV and X-ray beam width of about 3mm. The monochromatic X-ray corresponded to 17.5keV using GML would have wide application in development of mammography system with high contrast and low dose.