• 제목/요약/키워드: functional coating

검색결과 311건 처리시간 0.029초

Anti-calcification of Bovine Pericardium for Bioprosthetic Heart Valves after Surface Modification with Hyaluronic Acid Derivatives

  • Hahn Sei Kwang;Ohri Rachit;Giachelli Cecilia M.
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제10권3호
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    • pp.218-224
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    • 2005
  • Surface modification of glutaraldehyde fixed bovine pericardium (GFBP) was success­fully carried out with hyaluronic acid (HA) derivatives. At first, HA was chemically modified with adipic dihydrazide (ADH) to introduce hydrazide functional group into the carboxyl group of HA backbone. Then, GFBP was surface modified by grafting HA-ADH to the free aldehyde groups on the tissue and the subsequent HA-ADH hydrogel coating. HA-ADH hydrogels could be prepared through selective crosslinking at low pH between hydrazide groups of HA-ADH and crosslinkers containing succinimmidyl moieties with minimized protein denaturation. When HA­ADH hydrogels were prepared at low pH of 4.8 in the presence of erythropoietin (EPO) as a model protein, EPO release was continued up to $85\%$ of total amount of loaded EPO for 4 days. To the contrary, only $30\%$ of EPO was released from HA-ADH hydrogels prepared at pH=7.4, which might be due to the denaturation of EPO during the crosslinking reaction. Because the carboxyl groups on the glucuronic acid residues are recognition sites for HA degradation by hyaluronidase, the HA-ADH hydrogels degraded more slowly than HA hydrogels prepared by the crosslinking reaction of divinyl sulfone with hydroxyl groups of HA. Following a two-week subcutaneous implantation in osteopontin-null mice, clinically significant levels of calcification were observed for the positive controls without any surface modification. However, the calcification of surface modified GFBP with HA-ADH and HA-ADH hydrogels was drastically reduced by more than $85\%$ of the positive controls. The anti-calcification effect of HA surface modification was also confirmed by microscopic analysis of explanted tissue after staining with Alizarin Red S for calcium, which followed the trend as observed with calcium quantification.

생분해성 고분자 코팅 조림묘목용 mulching mat 원지의 적용성 평가 (The applicable evaluation of biodegradable polymer coated-mulching paper for afforestation seedlings)

  • 이금자;유영정;고승태;김형진
    • 펄프종이기술
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    • 제42권1호
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    • pp.54-63
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    • 2010
  • Recently, as the function of largest supplier of biomass for "low carbon green growth", the necessity for systematic management of afforestation areas is emphasizing. The forestation of seedling, besides the afforestation cost itself, is required some additional follow-up management costs, like mowing and fertilizing of forestation area, and removal of bindweed. The mulching mat for afforestation seedlings is available for rooting of little seedlings as well as initial forestation expenses. Mulching technique is also used to control soil temperature and moisture by covering the surface of ground. In this study, the paper based-mulching film coated with biodegradable polymer and functional additive was specially produced using laboratory bar coater, and analyzed for its degradable behavior. Coating colors were prepared by dissolving PE (polyester) 80 % and PLA(polylactic acid) 20 % in chloroform and finally applied to handsheet prepared by preceding study conditions. Base paper and polymer-coated paper were artificially aged by 2 kinds of degradation methods, which are soil degradation by microorganism and light degradation by 257 nm UV wavelengths. Strength property, oxidation index and morphological property were evaluated by reduction rates of tensile strength, FTIR spectra ratio of carboxyl and carbonyl group and SEM micrograph. As these results, polymer coated-paper was superior to base paper in degradation behaviors, having results with lower reduction rate of strength properties.

Nickel Silicide Nanowire Growth and Applications

  • Kim, Joondong
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.215-216
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    • 2013
  • The silicide is a compound of Si with an electropositive component. Silicides are commonly used in silicon-based microelectronics to reduce resistivity of gate and local interconnect metallization. The popular silicide candidates, CoSi2 and TiSi2, have some limitations. TiSi2 showed line width dependent sheet resistance and has difficulty in transformation of the C49 phase to the low resistive C54. CoSi2 consumes more Si than TiSi2. Nickel silicide is a promising material to substitute for those silicide materials providing several advantages; low resistivity, lower Si consumption and lower formation temperature. Nickel silicide (NiSi) nanowire (NW) has features of a geometrically tiny size in terms of diameter and significantly long directional length, with an excellent electrical conductivity. According to these advantages, NiSi NWs have been applied to various nanoscale applications, such as interconnects [1,2], field emitters [3], and functional microscopy tips [4]. Beside its tiny geometric feature, NW can provide a large surface area at a fixed volume. This makes the material viable for photovoltaic architecture, allowing it to be used to enhance the light-active region [5]. Additionally, a recent report has suggested that an effective antireflection coating-layer can be made with by NiSi NW arrays [6]. A unique growth mechanism of nickel silicide (NiSi) nanowires (NWs) was thermodynamically investigated. The reaction between Ni and Si primarily determines NiSi phases according to the deposition condition. Optimum growth conditions were found at $375^{\circ}C$ leading long and high-density NiSi NWs. The ignition of NiSi NWs is determined by the grain size due to the nucleation limited silicide reaction. A successive Ni diffusion through a silicide layer was traced from a NW grown sample. Otherwise Ni-rich or Si-rich phase induces a film type growth. This work demonstrates specific existence of NiSi NW growth [7].

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분진제거를 위한 활성탄 전극판의 제조 (Preparation of Electrode Coated with Activated Carbon for Dust Removal)

  • 김광수;박정오;전태환;김일호
    • 대한환경공학회지
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    • 제35권11호
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    • pp.815-820
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    • 2013
  • 본 연구의 목적은 알루미늄판에 활성탄을 얇게 박판으로 코팅하여 분진제거를 위한 활성탄 전극을 제조함에 있다. 전극을 제조하기위하여 알루미늄판에 활성탄을 부착시키기 위한 적정 결합제 선정 그리고 결합제 사용에 따른 활성탄 세공의 막힘방지 그리고 제조된 제극의 분진제거능력 등을 알아보는 연구를 수행하였다. 알루미늄판에 활성탄 부착을 위한 결합제로는 비닐계의 PVA (polyvinyl acetate)가 적정하였고, 결합제 사용에 따른 활성탄 세공의 막힘을 방지하기 위해서는 우선 먼저 활성탄 세공에 결합제의 용매제를 충진하고 나중에 결합제와 활성탄을 혼합 후 고온에서 휘발시키는 방법이 적정하였다. 그리고 활성탄이 코팅된 전극판은 알루미늄 전극판보다 약 두배의 분진부착능력을 보여주었다.

세륨 옥사이드/실리카 복합입자 제조 및 특성분석 (Preparation and Characterization of Cerium Oxide/Silica Composite Particles)

  • 고서은;심종원;진병석
    • 공업화학
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    • 제29권4호
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    • pp.425-431
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    • 2018
  • UV 및 블루라이트를 차단하는 세륨 옥사이드 나노 입자와 다공성 실리카와의 복합입자를 건식 코팅 공정을 통해 제조하였다. 실리카와 세륨 옥사이드 간 혼합 비율과 메카노 퓨전 장치의 챔버 회전속도 등의 제조 조건을 달리하여 여러 복합입자를 만든 후, 입자 표면 형태를 SEM으로 관측 비교하고 XRF을 통해 복합입자의 조성을 분석하였다. 세륨 옥사이드를 실리카와 함께 복합입자로 만들어 물에 분산시키면 현탁 용액의 투명도가 높아지고 분산 안정성이 향상되었다. 또한 파우더의 유동성과 발림성이 개선되었다. 본 연구를 통해 세륨 옥사이드/실리카 복합입자가 자외선 및 블루라이트를 차단하는 기능성 화장품 소재로 사용 가능함을 확인하였다.

Electron Trapping and Transport in Poly(tetraphenyl)silole Siloxane of Quantum Well Structure

  • Choi, Jin-Kyu;Jang, Seung-Hyun;Kim, Ki-Jeong;Sohn, Hong-Lae;Jeong, Hyun-Dam
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2012년도 제42회 동계 정기 학술대회 초록집
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    • pp.158-158
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    • 2012
  • A new kind of organic-inorganic hybrid polymer, poly(tetraphenyl)silole siloxane (PSS), was invented and synthesized for realization of its unique charge trap properties. The organic portions consisting of (tetraphenyl)silole rings are responsible for electron trapping owing to their low-lying LUMO, while the Si-O-Si inorganic linkages of high HOMO-LUMO gap provide the intrachain energy barrier for controlling electron transport. Such an alternation of the organic and inorganic moieties in a polymer may give an interesting quantum well electronic structure in a molecule. The PSS thin film was fabricated by spin-coating of the PSS solution in THF organic solvent onto Si-wafer substrates and curing. The electron trapping of the PSS thin films was confirmed by the capacitance-voltage (C-V) measurements performed within the metal-insulator-semiconductor (MIS) device structure. And the quantum well electronic structure of the PSS thin film, which was thought to be the origin of the electron trapping, was investigated by a combination of theoretical and experimental methods: density functional theory (DFT) calculations in Gaussian03 package and spectroscopic techniques such as near edge X-ray absorption fine structure spectroscopy (NEXAFS) and photoemission spectroscopy (PES). The electron trapping properties of the PSS thin film of quantum well structure are closely related to intra- and inter-polymer chain electron transports. Among them, the intra-chain electron transport was theoretically studied using the Atomistix Toolkit (ATK) software based on the non-equilibrium Green's function (NEGF) method in conjunction with the DFT.

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산업용 폴리케톤 섬유의 코팅 가공에 따른 기계적 물성에 관한 연구 (Study on the Mechanical Properties of Polyketone Fiber according to Coating Process for Technical Textile)

  • 김상룡;전재우;곽동섭;이원;이득진;황순동;도성준
    • 한국염색가공학회지
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    • 제27권4호
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    • pp.334-339
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    • 2015
  • Polyketone fiber, a newly developed high strength fiber, has a tenacity and modulus similar to the paramid fiber, and can be used for reinforcing mechanical rubber goods(MRG), such as tires, hoses, and technical textiles. In addition, aliphatic polyketone, which has excellent strength, modulus, chemical stability and reasonable price, is being developed only in South Korea. It will be expected for replacement of super fiber such as aramids and increasing the technical textile market share. This paper surveys the mechanical properties of polyketone fiber yarn for technical textiles. For this purpose, two kinds of yarns are prepared, mechanical properties of coated and uncoated polyketone yarns such as tensile strength, elongation and modulus were examined before and after weather resistance test(temperature $60^{\circ}C$, humidity 60%, amount of power $0.67w/m^2$). The differences of mechanical properties between uncoated and coated yarns for high functional technical textiles and composite materials are estimated through this study.

전사지를 이용 적층한 셀 구조 및 연료극 기능층 형성에 따른 출력 특성 (Power Densities According to Anode Functional Layers on the Manufactured SOFC Unit Cells Using Decalcomania Method)

  • 안용태;지미정;구자빈;최진훈;황해진;최병현
    • 한국재료학회지
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    • 제22권11호
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    • pp.626-630
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    • 2012
  • The properties of SOFC unit cells manufactured using the decalcomania method were investigated. SOFC unit cell manufacturing using the decalcomania method is a very simple process. In order to minimize the ohmic loss of flattened tube type anode supports of solid oxide fuel cells(SOFC), the cells were fabricated by producing an anode function layer, YSZ electrolyte, LSM electrode, etc., on the supports and laminating them. The influence of these materials on the power output characteristics was studied when laminating the components and laminating the anode function layer between the anode and the electrolyte to improve the output characteristics. Regarding the performance of the SOFC unit cell, the output was 246 $mW/cm^2$ at a temperature of $800^{\circ}C$ in the case of not laminating the anode function layer; however, this value was improved by a factor of two to 574 $mW/cm^2$ due to the decrease of the ohmic resistance and polarization resistance of the cell in the case of laminating the anode function layer. The outputs appeared to be as high as 574 and 246 $mW/cm^2$ at a temperature of $800^{\circ}C$ in the case of using decalcomania paper when laminating the electrolyte layer using the in dip-coating method; however, the reason for this is that interfacial adhesion was improved due to the dense structure, which leads to a thin thickness of the electrolyte layer.

소각재로 제조한 건축외장재의 VOCs 흡착 특성 평가 (Characteristics of VOCs Adsorption of Brick Prepared by MSWI Fly Ash)

  • 반효진;정재아;이우근
    • 대한환경공학회지
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    • 제32권9호
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    • pp.857-861
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    • 2010
  • 매년 대도시 지역과 그 주변에 오존농도가 환경기준을 초과하는 빈도가 증가하여 오존주의보 발령횟수가 증가하는 추세이다. 따라서 오존의 전구물질인 VOCs에 대한 제어과정이 시급한 실정이다. 국내에서 발생되는 폐기물 중 소각재와 하수슬러지는 발생량이 증가됨에 따라 그 처리 방안이 요구되고 있다. 소각재와 다른 폐기물을 이용하여 건축외장재를 제조하여 소각재 중의 유해중금속을 안정화시키고 제조한 외장재로 대기 중의 VOCs를 흡착, 제거할 수 있다면 환경 부하 저하, 자원 재활용 및 VOCs control이라는 면에서 매우 유용할 것으로 판단된다. 제조한 외장재의 VOC 흡착특성을 알아보기 위해 벤젠 흡착실험과 SEM분석, BET분석을 수행하였고 외장재의 흡착특성을 유지하기 위해 광촉매 코팅을 하여 그 효과를 알아보았다. 실험결과 벤젠 제거 능력은 74~96%로 높게 나타났고 제조한 외장재의 표면에는 다양한 공극이 발달되어 있음을 알 수 있었다. 또한, 외장재의 환경안정성을 알아보기 위해 중금속 용출실험을 수행한 결과 중금속이 안정화 되어 용출양이 현저히 감소한 것을 알 수 있었다.

기능성 미분말의 제조공정에 관한 연구 : I. 분무건조법에 의한 microcapsule 제조 (Preparation process of functional particles : I. Preparation of microcapsule by spray drying)

  • 정철원;허화범;박종현;신건철
    • 한국결정성장학회지
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    • 제6권4호
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    • pp.521-531
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    • 1996
  • 분무건조법을 이용하여 무기질막 microcapsule과 무기질/유기질막 microcapsule을 제조하였다. 무기질막 microcapsule은 core 물질로 $K_{4}SO$와 clay shell 물질로 colloidal silica를 사용하였고, 무기질/유기질막 microcapsule은 core 물질로 상기 제조된 무기질막 microcapsule을 shell 물질로는 ethyl cellulose를 사용하여 각각의 microcapsule를 제조하였다. 제조된 microcapsule이 기능성을 갖기 위하여는 구형의 균일한 표면과 세공용적이 매우 중요하다. 무기질막 microcapsule인 경우 core/shell의 체적비가 0.3/0.7인 경우 구형의 균일한 표면의 microcapsule이 제조되었으며, 무기질/유기질막 microcapsule인 경우, 무게비가 0.76/0.24일 때 균일한 표면을 갖는 microcapsule이 제조되었다. 무기질/유기질막 microcapsule인 경우, 무기질막 microcapsule보다 세공용적이 감소하였고, shell물질(ethyl cellulose)의 양이 증가할수록 피복이 균일하게 되며, 세공용적도 감소하였다.

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