• 제목/요약/키워드: gel pore

검색결과 254건 처리시간 0.021초

접촉 표면의 강성 변화에 따른 박테리아의 군집 패턴 (Bacterial Pattern Formation in Response to the Stiffness of Substrates)

  • 김중경;박은정;김성래;조명옥;한화택
    • 한국가시화정보학회:학술대회논문집
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    • 한국가시화정보학회 2007년도 추계학술대회
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    • pp.88-91
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    • 2007
  • Animal cells show different behaviors in response to the mechanical properties of the substrates. We hypothesize that the rigidity of the substrates also affects the bacterial motility and controls the colony dynamics. It is found that the colony size of Escherichia colis and Bacillus subtilis grown on the agar plates is correlated with agarose gel concentrations and thus with the substrate rigidity. High- resolution microscopic imaging reveals that bacteria in single colonies form different aggregation patterns on the agar plates with varying gel concentration. We measured the apparent diffusion coefficients in the agarose gel plates made with different gel concentrations. Mathematical modeling and quantitative imaging of dye dispersion in the agar plates suggest that there is a close connection between the diffusion rate and the colony size. Nanoscale pore structures and kinetic constraints in the porous media may have an effect on bacterial colony dynamics.

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Pharmaceutical Potential of Gelatin as a pH-responsive Porogen for Manufacturing Porous Poly(d,l-lactic-co-glycolic acid) Microspheres

  • Kim, Hyun-Uk;Park, Hong-Il;Lee, Ju-Ho;Lee, Eun-Seong;Oh, Kyung-Taek;Yoon, Jeong-Hyun;Park, Eun-Seok;Lee, Kang-Choon;Youn, Yu-Seok
    • Journal of Pharmaceutical Investigation
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    • 제40권4호
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    • pp.245-250
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    • 2010
  • Porous poly(lactic-co-glycolic acid) microspheres (PLGA MS) have been utilized as an inhalation delivery system and a matrix scaffold system for tissue engineering. Here, gelatin (type A) is introduced as an extractable pH-responsive porogen, which is capable of controlling the porosity and pore size of PLGA microspheres. Porous PLGA microspheres were prepared by a water-in-oil-in-water ($w_1/o/w_2$) double emulsification/solvent evaporation method. The surface morphology of these microspheres was examined by varying pH (2.0~11.0) of water phases, using scanning electron microscopy (SEM). Also, their porosity and pore size were monitored by altering acidification time (1~5 h) using a phosphoric acid solution. Results showed that the pore-forming capability of gelatin was optimized at pH 5.0, and that the surface pore-formation was not significantly observed at pHs of < 4.0 or > 8.0. This was attributable to the balance between gel-formation by electrostatic repulsion and dissolution of gelatin. The appropriate time-selection between PLGA hardening and gelatin-washing out was considered as a second significant factor to control the porosity. Delaying the acidification time to ~5 h after emulsification was clearly effective to make pores in the microspheres. This finding suggests that the porosity and pore size of porous microspheres using gelatin can be significantly controlled depending on water phase pH and gelatin-removal time. The results obtained in this study would provide valuable pharmaceutical information to prepare porous PLGA MS, which is required to control the porosity.

탄화온도 및 재담금 처리에 따른 중공형 탄소다공체의 기공구조 및 특성 (Pore Structure and Characteristics of Hollow Spherical Carbon Foam According to Carbonization Temperature and Re-immersion Treatment)

  • 이은주;이창우;김양도;임영목
    • 한국재료학회지
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    • 제23권1호
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    • pp.24-30
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    • 2013
  • Today, the modification of carbon foam for high performance remains a major issue in the environment and energy industries. One promising way to solve this problem is the optimization of the pore structure for desired properties as well as for efficient performance. In this study, using a sol-gel process followed by carbonization in an inert atmosphere, hollow spherical carbon foam was prepared using resorcinol and formaldehyde precursors catalyzed by 4-aminobenzoic acid; the effect of carbonization temperature and re-immersion treatment on the pore structure and characteristics of the hollow spherical carbon foam was investigated. As the carbonization temperature increased, the porosity and average pore diameter were found to decrease but the compression strength and electrical conductivity dramatically increased in the temperature range of this study ($700^{\circ}C$ to $850^{\circ}C$). The significant differences of X-ray diffraction patterns obtained from the carbon foams carbonized under different temperatures implied that the degree of crystallinity greatly affects the characteristics of the carbon form. Also, the number of re-impregnations of carbon form in the resorcinol-formaldehyde resin was varied from 1 to 10 times, followed by re-carbonization at $800^{\circ}C$ for 2 hours under argon gas flow. As the number of re-immersion treatments increased, the porosity decreased while the compression strength improved by about four times when re-impregnation was repeated 10 times. These results imply the possibility of customizing the characteristics of carbon foam by controlling the carbonization and re-immersion conditions.

Purification of a Pore-forming Peptide Toxin, Tolaasin, Produced by Pseudomonas tolaasii 6264

  • Cho, Kwang-Hyun;Kim, Sung-Tae;Kim, Young-Kee
    • BMB Reports
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    • 제40권1호
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    • pp.113-118
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    • 2007
  • Tolaasin, a pore-forming peptide toxin, is produced by Pseudomonas tolaasii and causes brown blotch disease of the cultivated mushrooms. P. tolaasii 6264 was isolated from the oyster mushroom damaged by the disease in Korean. In order to isolate tolaasin molecules, the supernatant of bacterial culture was harvested at the stationary phase of growth. Tolaasin was prepared by ammonium sulfate precipitation and three steps of chromatograpies, including a gel permeation and two ion exchange chromatographies. Specific hemolytic activity of tolaasin was increased from 1.7 to 162.0 HU $mg^{-1}$ protein, a 98-fold increase, and the purification yield was 16.3%. Tolaasin preparation obtained at each purification step was analyzed by HPLC and SDS-PAGE. Two major peptides were detected from all chromatographic preparations. Their molecular masses were analyzed by MALDI-TOF mass spectrometry and they were identified as tolaasin I and tolaasin II. These results demonstrate that the method used in this study is simple, time-saving, and successful for the preparation of tolaasin.

Pore Size Control of a Highly Transparent Interfacial Layer via a Polymer-assisted Approach for Dye-sensitized Solar Cells

  • Lee, Chang Soo;Lee, Jae Hun;Park, Min Su;Kim, Jong Hak
    • Korean Chemical Engineering Research
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    • 제57권3호
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    • pp.392-399
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    • 2019
  • A highly transparent interfacial layer (HTIL) to enhance the performance of dye-sensitized solar cells (DSSCs) was prepared via a polymer-assisted (PA) approach. Poly(vinyl chloride)-graft-poly(oxyethylene methacrylate) (PVC-g-POEM) was synthesized via atom-transfer radical polymerization (ATRP) and was used as a sacrificial template. The PVC-g-POEM graft copolymer induced partial coordination of a hydrophilic titanium isopropoxide (TTIP) sol-gel solution with the POEM domain, resulting in microphase separation, and in turn, the generation of mesopores upon calcination. These phenomena were confirmed using Fourier-transform infrared (FT-IR) spectroscopy, UV-visible light transmittance spectroscopy, scanning electron microscopy (SEM), and X-ray diffraction (XRD) analysis. The DSSCs incorporating HTIL60/20 (consisting of a top layer with a pore size of 60 nm and a bottom layer with a pore size of 20 nm) exhibited the best overall conversion efficiency (6.36%) among the tested samples, which was 25.9% higher than that of a conventional blocking layer (BL). DSSC was further characterized using the Nyquist plot and incident-photon to electron conversion efficiency (IPCE) spectra.

졸겔법으로 제조한 탄소피복된 SiOx/ZnO 복합체의 합성 및 전기화학적 특성 (Synthesis and Electrochemical Characteristics of Carbon Coated SiOx/ZnO Composites by Sol-gel Method)

  • 백광용;정상문;나병기
    • 청정기술
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    • 제22권4호
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    • pp.308-315
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    • 2016
  • 수명특성이 우수한 실리콘 음극재를 제조하기 위해 졸겔법을 통해 $SiO_x/ZnO$ 복합체를 제조하였고, 제조된 복합체는 PVC를 탄소 전구체로 하여 탄소를 피복하였다. 복합체에 포함된 ZnO를 HCl로 제거하여 내부에 빈 공간을 만들어 충 방전에 따른 실리콘의 부피변화를 완화할 수 있게 하였다. 합성된 복합체의 결정구조와 형상을 파악하기 위해 XRD, SEM, TEM 분석을 실시하였다. 탄소 피복된 복합체에 포함된 탄소함량을 TGA를 통해 알아보았으며, 복합체의 기공구조를 확인하기 위해 BET 비표면적 분석과 BJH 기공분포를 확인하였다. 탄소의 추가로 향상된 전기전도성을 측정하였으며, 전기화학적 특성은 AC 임피던스 측정과 충 방전 및 수명특성을 확인하였다. $SiO_x/ZnO$시료에 탄소를 피복할 경우에 전기전도도가 증가하였으며, 방전용량도 증가하였다. 염산으로 ZnO를 제거한 시료의 경우에 표면적은 증가하였으나, 전지의 방전용량은 오히려 감소하였다. 탄소를 피복하지 않은 $SiO_x/ZnO$ 시료의 경우에 방전용량이 매우 낮았으며, 탄소를 피복한 후의 시료는 높은 충방전용량을 나타내었다. 수명특성의 경우, $C-SiO_x/ZnO$ 복합체(Zn : Si : C = 1 : 1 : 8)가 0.2 C의 전류량에서 50 사이클에서 $815mAh\;g^{-1}$의 용량으로 기존 흑연계 음극재보다 높은 용량을 나타내었다.

pH/온도-동시 민감성 Hydrogel의 합성조건에 따른 특성 연구 (Characterization of a pH/Temperature-Sensitive Hydrogel Synthesized at Different pH and Temperature Conditions)

  • 유형덕;정인식;박창호
    • KSBB Journal
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    • 제15권6호
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    • pp.548-555
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    • 2000
  • 온도 및 pH에 동시에 민감한 하이드로젤 poly(N-isopropy­l lacrylamide-co-N,N-dimethylaminopropy Imethacrylamide)을 온도 (13, 15.5, 18, 20.5 및 $23^{\circ}C$)와 pH (10.3, 11.3 및 12.3)를 달리 하여 합성하고 이 젤들의 외형, 기계적 강도, 젤 표면모양, LCST, 수축 pH 및 젤의 팽윤 특성을 연구하였다. 합성온도 및 합성 pH가 낮을수록 젤의 외형은 투명하였 고 기계적 강도는 높았다. SEM 관찰 결과 단백질 보다 더 큰 pore들 때문에 분리효율이 감소되는 것으로 사료된다. 합 성온도나 합성 pH의 증가는 LCST를 낮추었다. 외부온도가 LCST보다 낮은 $25^{\circ}C$ 에 서는 모든 합성온도와 합성 pH에 대 하여 젤은 전 pH에 걸쳐 팽윤된 상태에 있었다. $40^{\circ}C$에서는 LCST보다 높은 온도임에도 불구하고 poly (NIPAAm-co­D DMAPMAAm) 하이드로젤은 pH가 중성 및 산성 영역에서 팽윤되었다. 합성온도가 증가함에 따라 젤 부피가 가장 큰 폭으로 변하는 수축 pH가 더 높아졌다.

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새로운 Black Color의 합성;화장품에서 블랙 색소로서 Meso-pore Silca에 캡슐레이션된 Carbon-black Silica (Synthesis of New Black Pigment; Carbon Black Pigment Capsulated into the Meso-pore of Silica as Black Pigment in Cosmetic)

  • Hye-in, Jang;Kyung-chul, Lee;Hee-chang , Ryoo
    • 대한화장품학회지
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    • 제30권2호
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    • pp.189-195
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    • 2004
  • 카본 블랙은 매우 낮은 밀도로 화장품에는 사용되지 않고 있지만 독성이 없고 안정한 물리적 특성과 검은색의 특성으로 이용 가치가 있다고 사료되는 바이다. 본 연구에서는 TEOS, a) PEO/ lecithin, b) PEO/polyethylene glycol, c) lecithin/polyethylene을 ethanol/water 수용액상에서 계면활성제를 탄화시켜 sol-gei반응에 의해 meso-porous silica샘플을 얻었고 N2 조건하 50$0^{\circ}C$에서 열처리된 organic-inorganic hybrid silica를 합성하였다. Pore안에 카본 블랙을 함유하는 meso-porous silica는 친수성, 소수성 용매에서 모두 좋은 분산성을 보여준다. 이 샘플은 BET에 의해 specific surface area (750$m^2$/g)과 pore size (4-6 nm)이고, XRD측정으로 pore structure (cylindrical type)를, 샘플의 SEM촬영으로 morphology(0.1-0.5$\mu\textrm{m}$ 입자 크기를 갖는 spherical powder)를 갖는다는 것을 알아냈다. 이렇게 합성한 카본-실리카 블랙 컬러를 마스카라에 적용하면 일반적으로 마스카라에 사용되던 블랙 컬러 사용시 보다 좀더 검은색을 보여주는 것은 물론이고 우수한 분산성도 갖는다. 무엇보다 이 파우더의 밀도 조절이 가능하여 마스카라 뿐 만 아니라 모든 화장품에의 사용이 가능하다.

세라믹 분말의 입자구조에 따른 나노 진동 흡수장치의 에너지 소산 효율 특성에 대한 연구 (Characteristics of Energy Dissipation in Vibration Absorbing Nano-Damper According to the Architecture of Silica Particle)

  • 문병영;김흥섭
    • 한국재료학회지
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    • 제13권3호
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    • pp.144-149
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    • 2003
  • This study shows an experimental investigation of a reversible nano colloidal damper, which is statically loaded. The porous matrix is composed from silica gel (labyrinth or central-cavity architecture), coated by organo-silicones substances, in order to achieve a hydrophobic surface. Water is considered as associated lyophobic liquid. Reversible colloidal damper static test rig and the measuring technique of the static hysteresis are described. Influence of the pore and particle diameters, particle architecture and length of the grafted molecule upon the reversible colloidal damper hysteresis is investigated, for distinctive types and mixtures of porous matrices. Variation of the reversible colloidal damper dissipated energy and efficiency with temperature, pressure, is illustrated. As a result, he proposed nano damper is effective one, which can be replaced the conventional damper.

Numerical Simulation of the Elastic Moduli of Cement Paste As a Three Dimensional Unit Cell

  • Park, Ki-Bong
    • Architectural research
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    • 제12권2호
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    • pp.93-98
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    • 2010
  • This paper describes a numerical method for estimating the elastic moduli of cement paste. The cement paste is modeled as a unit cell which consists of three components: the unhydrated cement grain, the gel, and the capillary pore. In the unit cell, the volume fractions of the constituents are quantified using a single kinetic function calculating the degree of hydration. The elastic moduli of cement paste are calculated from the total displacements of constituents when a uniform pressure is applied to the gel contact area. The cement paste is assumed to be a homogenous isotropic matrix. Numerical simulations were conducted through the finite element analysis of the three-dimensional periodic unit cell. The model predictions are compared with experimental results. The predicted trends are in good agreement with experimental observations. This approach and some of the results might also be relevant for other technical applications.