• 제목/요약/키워드: Cell membranes

검색결과 771건 처리시간 0.027초

Carbonate Crystal Growth Controlled by Interfacial Interations of Artifical Cell Membranes

  • Goh, Dai-Young;Ahn, Dong-June
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제2권2호
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    • pp.109-112
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    • 1997
  • Morphology of carbonate crystals grown on the surface of artificial cell membranes was controlled by changing the interfacial chemistry. For octadecyltriethoxysilane (OTE) films with terminal methyl groups interacting little with an aqueous calcium carbonate solution calcite (104) crystals were formed. Polymerized pentacosadiynoic acid (PDA) films with terminal carboxylic acid groups induced deposition of calcite (012) crystals aligned along with each other within a polymer domain. On the other hand, stearyl alcohol (StOH) films with terminal hydroxyl groups induced deposition of aragonite crystals. When PDA was mixed with StOH, the 8:1 PDA:StOH (molar ratio) film produced dominating calcite (012) crystals without any crystal alignment, and the 4:1 mixture film produced minor calcite (012) crystals and major aragonite crystals. For the 2:1, 1:1, 1:2, and 1:4 mixture films, aragonite crystals were dominating. Hence, it is found that the chemical composition at the interface plays a very important role in controlling the morphology of deposited carbonate crystals.

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수전해용 Pt/공유가교 SPEEK-HPA 복합막/Pt-Ru MEA의 전기화학적 특성 (The Electrochemical Characteristics of MEA with Pt/Cross-Linked SPEEK-HPA Composite Membranes/Pt-Ru for Water Electrolysis)

  • 황용구;우제영;이광문;정장훈;문상봉;강안수
    • 한국수소및신에너지학회논문집
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    • 제20권3호
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    • pp.194-201
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    • 2009
  • The e1ectrocatalytic properties of heteropolyacids(HPAs) entrapped in covalently cross-linked sulfonated polyetheretherketone(CL-SPEEK/HPA) membranes have been studied for water electrolysis. The HPAs, including tungstophosphoric acid(TPA), molybdophosphoric acid(MoPA), and tungstosilicic acid(TSiA) were used as additives in the composite membranes. The MEA was prepared by a non-equilibrium impregnation-reduction(I-R) method, using reducing agent, sodium borohydride(NaBH4) and tetraamineplatinum(II) chloride(pt(NH$_3$)$_4$Cl$_2$). The electrocatalytic properties of composite membranes such as the cell voltage were in the order of magnitude CL-SPEEKlMoPA40 (wt%) > /TPA30 > /TSiA40. In the optimum cell applications for water electrolysis, the cell voltage of PtlPEM/Pt-Ru MEA with CL-SPEEKlTPA30 membrane was 1.75 V at 80$^{\circ}$C and I A/cm$^2$ and this voltage carried lower than that of 1.81 V of Nafion 117. Consequently, in regards of electrochemical and mechanical characteristics and oxidation durability, the newly developed CL-SPEEKITPA30 composite membrane exhibited a better performance than the others, but CLSPEEKlMoPA40 showed the best electrocatalytic activity (1.71 Vat 80$^{\circ}$C and 1 A/cm$^2$) among the composite membranes.

Growth of Endothelial Cells on Microfabricated Silicon Nitride Membranes for an In Vitro Model of the Blood-brain Barrier

  • Harris, Sarina G.;Shuler, Michael L.
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제8권4호
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    • pp.246-251
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    • 2003
  • The blood-brain barrier (BBB) is composed of the brain capillaries, which are lined by endothelial cells displaying extremely tight intercellular junctions. Several attempts at creating an in vitro model of the BBB have been met with moderate success as brain capillary endothelial cells lose their barrier properties when isolated in cell culture. This may be due to a lack of recreation of the in vivo endothelial cellular environment in these models, including nearly constant contact with astrocyte foot processes. This work is motivated by the hypothesis that growing endothelial cells on one side of an ultra-thin, highly porous membrane and differentiating astrocyte or astrogliomal cells on the opposite side will lead to a higher degree of interaction between the two cell types and therefore to an improved model. Here we describe our initial efforts towards testing this hypothesis including a procedure for membrane fabrication and methods for culturing endothelial cells on these membranes. We have fabricated a 1 $\mu\textrm{m}$ thick, 2.0 $\mu\textrm{m}$ pore size, and 55% porous membrane with a very narrow pore size distribution from low-stress silicon nitride (SiN) utilizing techniques from the microelectronics industry. We have developed a base, acid, autoclave routine that prepares the membranes for cell culture both by cleaning residual fabrication chemicals from the surface and by increasing the hydrophilicity of the membranes (confirmed by contact angle measurements). Gelatin, fibronectin, and a 50/50 mixture of the two proteins were evaluated as potential basement membrane protein treatments prior to membrane cell seeding. All three treatments support adequate attachment and growth on the membranes compared to the control.

Poly(vinyl alcohol)/poly(acrylic acid-co-maleic acid) 이온교환막에 이온전도도 향상을 hydroquinonesulfonic acid 첨가 연구 (Studies on the Addition of the Hydroquinonesulfonic Acid to Poly(vinyl alcohol)/poly(acrylic acid-co-maleic acid) Membranes to Improve the Ion Conductivity for Fuel Cell Applications)

  • 임지원;황호상
    • 멤브레인
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    • 제14권1호
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    • pp.44-52
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    • 2004
  • 본 연구는 직접메탄을 연료전지(Direct Methanol Fuel Cell)에 적용가능한 양이온교환막 개발에 관한 것으로 poly(vinyl alcohol) (PVA)에 가교제로 poly(acrylic acid-co-maleic acid) (PAM)와 hydroquinonesulfonic acid (HQSA)를 이용하여 가교제의 함량을 변화시키면서 막을 제조하였다. 제조한 막은 가교제의 함량 변화에 따라 메탄을 투과도, 이온전도도를 측정하였으며 기본적인 이온교환막의 특성인 함수율, 이온교환용량 그리고 고정이온농도 등을 측정하였다. PAM 함량이 증가함에 따라 메탄을 투과도와 이온전도도 및 함수율이 조금 증가하는 추세를 보이다 9 wt%부터 감소하는 경향을 보였는데 이는 PAM의 친수성기보다는 가교효과의 영향이라 사료되며 HQSA 함량을 변화시켰을 때는 이온전도도, 함수율 그리고 이온교환용량이 전반적으로 증가하였는데 그 증가폭은 미비하였다.

고온 PEMFC 응용을 위한 다공성 SiO2 기반 폴리벤즈이미다졸 복합막 (Mesoporous SiO2 Mediated Polybenzimidazole Composite Membranes for HT-PEMFC Application)

  • 한다은;유동진
    • 한국수소및신에너지학회논문집
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    • 제30권2호
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    • pp.128-135
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    • 2019
  • In this study, the mesoporous $SiO_2$ (5, 10, or 15 wt%) was incorporated into the polybenzimidazole matrix in order to improve the proton conduction as well as physiochemical properties of composite membrane. The chemical structure of mesoporous $SiO_2$ and crystallinity of as-prepared membranes were analyzed by Fourier-transform infrared (FT-IR) spectroscopy and X-ray diffraction (XRD) analysis, respectively. The thermal stability of the pristine $X_1Y_9$ and composite membranes were evaluated by thermogravimetric analyzer (TGA). On other side, the physical and chemical properties of the pristine $X_1Y_9$ and composite membranes were also determined by acid uptake and oxidative stability tests, respectively. With the incorporation of 15 wt% $SiO_2$, the composite membrane exhibits the higher proton conductivity that may be applicable for non-humidified high temperature fuel cell applications.

Preparation and Properties of Chitosan/Montmorillonite Supported Phosphotungstic Acid Composite Membrane for Direct Methanol Fuel Cell Application

  • Purwanto, Mochammad;Widiastuti, Nurul;Gunawan, Adrian
    • 한국재료학회지
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    • 제31권7호
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    • pp.375-381
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    • 2021
  • Chitosan powder is synthesized by a deasetylation process of chitin, obtained from processing of dried shrimp shell powder. Subsequently, chitosan (CS) membranes filled by montmorillonite (MMT) particles and phosphotungstic acid are prepared, and characterized by FT-IR and SEM. The morphology, obtained by SEM for the composite membrane, showed that MMT filler is successfully incorporated and relatively well dispersed in the chitosan polymer matrix. Water and methanol uptake for the CS/MMT composite membranes decrease with increasing MMT loadings, but IEC value increases. In all prepared CS/MMT composite membranes, the CS membrane filled by 5 wt% MMT particles exhibits the best proton conductivity, while that with 10 wt% MMT loading exhibits the lowest methanol permeability; these values are 2.67 mS·cm-1 and 3.40 × 10-7 cm2·s-1, respectively. The best membrane selectivity is shown in the CS/MMT10 composite membrane; this shows that 10 wt% filled MMT is the optimum loading to improve the performance of the chitosan composite membrane. These characteristics make the developed chitosan composite membranes a promising electrolyte for direct methanol fuel cell (DMFC) application.

PEMFC 지지체용 PVdF/Laponite 강화 복합막의 특성평가 (Characterization of PVdF/Laponite Reinforced Composite Membranes for PEMFC Surpport)

  • 오슬기;황해영;김형준;남상용
    • 멤브레인
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    • 제20권2호
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    • pp.159-168
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    • 2010
  • 본 연구에서는 연료전지용 강화 복합막 지지체 제조를 위해 높은 다공성을 가지는 PVdF 평막을 제조하였다. 높은 다공도로 인한 낮은 기계적 강도를 보완하기 위한 방법으로 나노 사이즈의 laponite를 막 내에 분산시켰다. 제조된 PVdF/Laponite 복합막의 모폴로지 및 다공도는 SEM 분석 및 무게 중량법을 사용하여 평가하였고, 60% 이상의 다공도를 보였다. 첨가된 laponite 함량에 따른 막의 열적 안정성은 $105^{\circ}C$, $135^{\circ}C$에서의 수축률을 이용하여 평가하였으며, laponite 함량이 5%일 때 $135^{\circ}C$에서 MD와 TD방향으로의 열 수축률 2~3%와 2~3.5%를 나타내었다. Laponite 첨가 후 막의 기계적 강도가 향상되었으며, 순수 PVdF 막에 비해 약 30%의 모듈러스 증가를 나타내었다.

수종의 성분해성 차폐막의 생체분해도 및 조직 재생유도 능력에 관한 연구 (Evaluation of biodegradability and tissue regenerative potential of synthetic biodegradable membranes)

  • 김동균;구영;이용무;정종평
    • Journal of Periodontal and Implant Science
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    • 제27권1호
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    • pp.151-163
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    • 1997
  • The purpose of this study was to evaluate on the biodegradability, biocompatibility and tissue regenerative capacity of synthetic biodegradable $mernbranes-Resolut^{(R)}$, $Guidor^{(R)}$ and $Biomesh^{(R)}$. To evaluate the cell attachment on the membranes, in vitro, the number of gingival fibroblasts attached to each membrane was counted by hemocytometer. Cytotoxicity test for the membranes was performed by MTT test with gingival fibroblast For evaluation of guided- bone regenerative potential, the amount of new bone formation in the rat calvarial defects(5mm in diameter) beneath the membranes was observed for two weeks and examined of the specimens by Massons trichrome staining. Biodegradability was observed for 2, 4, 8 and 12 weeks after implantation of each materials under the skin of rats and examined the specimens with H & E staining. The number of cell attachment were the greatest in $Biomesh^{(R)}$ and followed by $Resolut^{(R)}$. Cell viability of three membranes was almost similar levels. Biodegradability of $Resolut^{(R)}$ was the highest among three membrane and the potential of guided bone regeneration was the greatest in the $Biomesh^{(R)}$ and $Resolut^{(R)}$ was followed. These results suggested that commercially available biodegradable membranes were non-toxic and highly potential to guided bone regeneration.

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Effect of surface-treatments on flexibility and guided bone regeneration of titanium barrier membrane

  • Kim, Jin-Tae;Kim, Byoung Soo;Jeong, Hee Seok;Heo, Young Ku;Shin, Sang-Wan;Lee, Jeong-Yol;Shim, Young Ho;Lee, Deuk Yong
    • 한국결정성장학회지
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    • 제25권3호
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    • pp.98-104
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    • 2015
  • Titanium barrier membranes are prepared to investigate the effect of surface-treatments, such as machining, electropolishing, anodizing, and electropolishing + TiN coating, on the biocompatibility and physical properties of the membranes. The surface roughness (Ra) of the membrane decreases from machining ($0.37{\pm}0.09{\mu}m$), TiN coating ($0.22{\pm}0.09{\mu}m$), electropolishing ($0.20{\pm}0.03{\mu}m$), to anodizing ($0.15{\pm}0.03{\mu}m$). The highest ductility (24.50 %) is observed for the electropolished Ti membrane. No evidence of causing cell lysis or toxicity is found for the membranes regardless of the surface-treatments. Cell adhesion results of L-929 and MG-63 show that the machined Ti membrane exhibits the highest cell adhesion while the electropolished membrane is the best membrane for the L-929 cell proliferation after 7 days. However, no appreciable difference in MG-63 cell proliferation among variously surface-treated membranes is detected, suggesting that the electropolished Ti membrane is likely to be the best membrane due to the synergic combination of tailored flexibility and excellent fibroblast proliferation.

방사선을 이용한 연료전지막 국내 제조 기술 개발 현황 (Current R&D Status of Fuel Cell Membranes by Radiation in Korea)

  • 신준화;손준용;노영창;강태진;김동수;임돈순;이병헌;김재호
    • 방사선산업학회지
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    • 제6권4호
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    • pp.289-297
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    • 2012
  • Since Nafion is very expensive and shows the decreased fuel cell performance over $80^{\circ}C$ operating temperature, much work has been carried out in the search for cheaper membrane with high fuel cell performance. Radiation is known to be very useful for the preparation of the polymer electrolyte membranes since it can be effectively used for the introduction of ion conducting functional groups into the commercial film with high mechanical and chemical properties. Here, we summarize the our recent progress in the development of fuel cell membranes by utilizing radiation.