• Title/Summary/Keyword: 이온 코팅

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Controlling Water Splitting Characteristics of Anion-Exchange Membranes by Coating Imidazolium Polymer (이미다졸륨 고분자 코팅을 통한 음이온교환막의 물분해 특성 제어)

  • Kim, Do-Hyeong;Park, Jin-Soo;Kang, Moon-Sung
    • Membrane Journal
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    • v.25 no.2
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    • pp.152-161
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    • 2015
  • In this study, novel pore-filled anion-exchange membranes (PFAEMs) with low electrical resistance, high permselectivity, and low water-splitting flux property under a concentration polarization condition have been developed for the enhancement in the efficiency of electrochemical water treatment processes. The base membranes have been prepared by filling a copolymer containing quaternary ammonium groups with an excellent ion-exchange capability into a porous polyolefin substrate, showing a high performance superior to that of a commercial membrane. In addition, it was confirmed that the electrochemical membrane performances are preserved while the water-splitting flux is effectively controlled by coating an imidazolium polymer onto the surface of the base membrane. The prepared PFAEMs revealed remarkably low electrical resistances of about 1/6~1/8 compared to those of a commercial membrane, and simultaneously low water-splitting flux comparable with that of cation-exchange membranes under a concentration polarization condition.

Grafting and Characterization of Zwitter Ionic Poly(ethylene glycol) on Gold-Coated Nitinol Surface Chemisorbed with L-Cysteine (시스틴으로 화학흡착된 금 코팅 니티놀 표면에 앙쪽성 이온 폴리에틸렌글리콜의 그래프트 및 특성 평가)

  • Shin, Hong-Sub;Park, Kwi-Deok;Kim, Jae-Jin;Kim, Ji-Heung;Han, Dong-Keun
    • Polymer(Korea)
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    • v.33 no.1
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    • pp.84-90
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    • 2009
  • Nitinol alloy (TiNi) has been widely used in vascular stents. To improve the blood compatibility of Nitinol alloy, its surface was chemically modified in this study. Nitinol was first coated with gold, then chemisorbed with L-cysteine (C/N), and followed by grafting of zwitter ionic poly(ethylene glycol) (PEG) (PEG-$N^+-SO_3{^-}$) to produce TiNi-C/N-PEG-N-S. The zwitter ionic PEG grafted on the Nitinol surface was identified by ATR-FTIR, ESCA and SEM. The hydrophilized surface was proven by the decrease of water contact angle. In addition, from the blood compatibility tests such as protein adsorption, platelet adhesion, and blood coagulation time, the surface-modified TiNi alloy exhibited a better blood compatibility as compared to the untreated Nitinol control. These results indicated a feasibility of synergistic effect of hydrophilic PEG and antithrombotic zwitter ion.

Surface Modification of Materials in KOMAC by Accelerator Technology (가속기 기술을 이용한 재료에의 표면처리기술 응용)

  • Lee, Jae-Sang
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.89-89
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    • 2017
  • 가속기 기술을 이용한 재료에의 표면처리기술은 일정에너지를 가지는 이온이 재료표면에 충돌함으로서, 스퍼터링, 이온주입, 미세구조 변화 등의 현상을 이용하여 재료표면의 특성을 변화시켜 기계적, 화학적, 광학적, 전기적 특성 등을 변화시키는 표면개질기술에 활용되어져 왔다. 이러한 이온빔 표면처리기술은 이온의 종류나 시편의 제한 없이 치밀한 원자혼합물을 형성하고, 계면형성이 없고, 또한 저온공정이 가능하므로, 정밀도가 요구되는 부품의 내마모성과 내부식성 등을 포함한 기본적인 표면특성 뿐만 아니라 전기전도도, 친소수특성, 내광성 등 표면에 관계된 특성을 개선시키는 역할을 하며, 이온빔 믹싱, 이온빔 스퍼터링, 이온빔 전처리 후 코팅 등의 복합공정을 통해 보다 개선된 표면특성을 가지는 박막제조공정에 적용될 수 있다. 본 발표에서는 지난 10년간 가속기기술을 응용한 이온빔 장치기술 개발현황을 발표하고, 이러한 장치를 활용하여 이온빔 표면처리기술 사례인 내광성/내스크래치성 향상 고분자, 정전기방지, 초친수 표면처리, 기체투과도제어, 자외선차단 필름, 고속에칭기술 등의 기술개발 현황을 발표하고자 한다. 한국원자력연구원 양성자가속기연구센터에서는 수백 keV급의 이온빔 표면처리 장치 이외에도 100MeV 선형 양성자가속기를 이용하여 2013년부터 다양한 분야의 양성자빔/이온빔 이용자들에게 이온빔 장치와 20MeV와 100MeV 이용시설에서 양성자빔/이온빔 서비스를 제공하고 있다. 2016년 기준 이용자수는 양성자가속기 392명, 이온빔장치 279명이며, 이용자 수행과제는 양성자가속기, 이온빔장치 각각 130여개 과제가 수행되었다. 이러한 이용자들의 빔이용연구를 통해 20여편의 논문투고, 10여편의 특허출원의 성과를 얻었으며, 나노분야, 생명공학분야 등의 다양한 분야에서의 빔이용기술을 통해 활발한 연구가 이루어질 것으로 예상된다.

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A Study on Optical Properties of Aspheric Glass Lens using DLC Coated molding core (성형용 코어면 DLC 코팅에 의한 비구면 Glass렌즈 광학적 특성에 관한 연구)

  • Kim, Hyeon-Uk;Jeong, Sang-Hwa;Cha, Du-Hwan;Lee, Dong-Gil;Kim, Sang-Seok;Kim, Hye-Jeong;Kim, Jeong-Ho
    • Proceedings of the Optical Society of Korea Conference
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    • 2007.07a
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    • pp.243-244
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    • 2007
  • 본 연구에서는 성형용 코어 가공에서 초경합금(WC, Co 0.5%)의 초정밀 가공특성을 파악하기 위하여 다이아몬드 휠의 메시, 주축 회전속도, 터빈 회전속도, 이송속도 및 연삭깊이에 따른 표면거칠기를 측정하여 최적연삭조건을 규명하였다. 규명된 최적연삭가공조건을 활용하여 페러렐 연삭법으로 초정밀 연삭가공을 수행하였다. 연삭가공은 초정밀가공기(ASP01, Nachi-Fujikoshi Co., Japan)를 사용하였다. 최종 정삭가공을 수행한 비구면 성형용 코어의 형상측정결과 형상정도(PV; ${\varphi}$ 3.0mm) 0.15${\mu}m$(비구면), 0.10${\mu}m$(평면)으로 3M급 이상의 고화질 카메라폰에 채용되고 있는 비구면 Glass렌즈 양산용 성형용 코어 규격에 만족한 결과로서 본 연구에 수행된 초정밀 가공조건 및 측정방법이 매우 유효함을 알 수 있었다. 형상정도(PV) 및 표면조도(Ra) 측정은 초정밀 자유곡면 측정기(UA3P, Panasonic Co., Japan)와 3차원 표면조도 측정기(NewView5000, Zygo Co., USA)를 각각 사용하였다. 초정밀 가공된 성형용 코어면에 이온증착법을 활용하여 DLC 코팅을 수행하였다. 코팅 전후의 성형용코어를 활용하여 Glass소재(K-BK7, Sumita Co., Japan)를 최적의 성형조건(성형온도, 압력, 냉각속도)으로 성형하였다. DLC 코팅과 성형은 DLC 코팅기(NC400, Nanotech Co., Japan)와 Glass렌즈 성형기(Nano Press-S, Sumitomo Co., Japan)을 각각 사용하였다. Fig. 1은 초정밀 연삭가공, DLC 코팅막 구조, 코팅된 성형용 코어, 그리고, 성형된 비구면Glass렌즈를 각각 나타낸다.

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The effect of different crystallization temperature of the hydroxyapatite coating produced by ion beam-assisted deposition on anodizing-treated titanium disks on human osteosarcoma cells (양극산화처리된 티타늄 표면에 이온빔보조증착방식을 이용한 수산화인회석 코팅시 소결온도의 차이가 조골세포에 미치는 영향)

  • Pae, Ah-Ran;Won, Hyun-Du;Lee, Richard Sung-Bok;Kim, Hyeong-Seob;Woo, Yi-Hyung
    • The Journal of Korean Academy of Prosthodontics
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    • v.49 no.4
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    • pp.333-340
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    • 2011
  • Purpose: The aim of this study was to study the effect of hydroxyapatite (HA) coating crystallinity on the proliferation and differentiation of human osteosarcoma cells. Materials and methods: Surface roughness of the titanium disks increased by anodizing treatment and then HA was coated using ion beam-assisted deposition (IBAD). HA coating was crystallized by heat-treated at different temperature ($100^{\circ}C$, $300^{\circ}C$, $500^{\circ}C$, $800^{\circ}C$). According to the temperature, disks were divided into four groups (HA100, HA300, HA500, HA800). With the temperature, crystallinity of the HA coating was different. Anodized disks were used as control group. The physical properties of the disk surface were evaluated by surface roughness tests, XRD tests and SEM. The effect of the crystallinity of HA coating on HOS cells was studied in proliferation and differentiation. HOS cells were cultured on the disks and evaluated after 1, 3, 5, and 7 days. Growth and differentiation kinetics were subsequently investigated by evaluating cell proliferation and alkaline phosphatase activity. Results: Regardless of the heat-treated temperature, there is no difference on the surface roughness. Crystallinity of the HA was appeared in the groups of HA500, HA800. HOS cells proliferation, ALP activity were higher in HA500 and HA800 group than HA100 and HA300. Conclusion: Within the results of this limited study, heat treatment at $500^{\circ}C$ of HA coating produced by IBAD has shown greater effect on proliferation and differentiation of HOS cells. It is considered that further in vivo study will be necessary.

A Study on the Improvement of the Thermal Stability of PE Separator for Lithium Secondary Battery Application Using Poly(meta-phenylene isophthalamide) (Poly(meta-phenylene isophthalamide)를 이용한 리튬이차전지용 PE 분리막의 고내열화 연구)

  • Park, Mina;Ra, Byung Ho;Bae, Jin-Young;Kim, Byung-Hyun;Choi, Won-Kun
    • Polymer(Korea)
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    • v.37 no.1
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    • pp.22-27
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    • 2013
  • In this study, we prepared separators with improved thermal stability by coating microporous polyethylene (PE) film for lithium secondary battery using poly(meta-phenylene isophthalamide) (Nomex). The mechanical and thermal properties of prepared separators were evaluated by thermal stability test and TMA as a function of the Nomex concentration and coating parameters. The corresponding coated PE separator showed better thermal and mechanical properties than the original PE separator. Electrochemical properties were also assessed by ionic conductivity, cyclic voltammetry and charge/discharge cycle.

Fabrication of Paper-based Biosensor Chip Using Polydimethylsiloxane Blade Coating Method (PDMS 블레이드 코팅법을 이용한 종이-기반 바이오센서칩 제작)

  • Jeong, Heon-Ho;Park, Chami
    • Korean Chemical Engineering Research
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    • v.59 no.1
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    • pp.100-105
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    • 2021
  • This paper proposes the polydimethylsiloxane (PDMS) blade coating method for fabrication of paper-based analytical device (PAD) that is able to monitor the disease diagnosis and progress without special analytical equipment. The mold that has PAD design is easily modified by using laser cutting technique. And the fabricated mold is used for hydrophobic barrier formation by blade coating. We have optimized the stable formation of PDMS hydrophobic barrier as blade coating condition, which is established by analyzing the structure of the PDMS hydrophobic barrier and change of hydrophilic channel size as thickness of the ink and contact time with the chromatography paper. Based on optimal condition, we demonstrate that PAD as biosensor can apply to detect protein, glucose, and metal ion without special analysis equipment.