• 제목/요약/키워드: nano-sized pore

검색결과 27건 처리시간 0.025초

나노 기공성 단열 실리카 모노리스 제조 및 특성 연구 (Preparation and characterization of nanoporous monolith with high thermal insulation performance)

  • 최현묵;김성우
    • 한국응용과학기술학회지
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    • 제31권1호
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    • pp.83-91
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    • 2014
  • 본 연구에서는 졸-겔, 용매치환, 표면개질, 상압건조 공정과 계면활성제에 의한 템플레이팅(templating) 공법 및 소결 공정을 이용하여 실리카 에어로겔 모노리스와 메조포러스 실리카 모노리스를 각각 합성하였다. 제조된 두 종류의 실리카 모노리스는 균열이 없이 비교적 투명하였으며, 매우 높은 기공율(92-94%) 및 비표면적($800-840m^2/g$)과 수 십 nm 수준의 기공 크기를 갖는 것으로 확인되었다. 표면개질을 적용한 실리카 에어로겔 샘플이 스피링백 효과로 인하여 메조포러스 실리카 모노리스에 비해 더욱 미세하고 균질한 나노 기공 구조를 보였을 뿐만 아니라, 그 단열 성능도 더욱 우수한 것으로 나타났다. 본 연구를 통해 합성된 두 종류의 실리카 모노리스를 중간층으로 적용한 복층 창유리의 단열 성능을 측정된 모노리스의 열전도도와 이론식을 근거로 조사한 결과, 기존의 상업적으로 응용되는 공기층 삽입 복층 창유리에 비해 우수한 단열 성능을 보이는 것으로 나타났다.

Large-scale Synthesis of Uniform-sized Nanoparticles for Multifunctional Medical Applications

  • Hyeon, Taeg-Hwan
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.1-1
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    • 2011
  • We developed a new generalized synthetic procedure, called as "heat-up process," to produce uniform-sized nanocrystals of many transition metals and oxides without a size selection process. We were able to synthesize uniform magnetite nanocrystals as much as 1 kilogram-scale from the thermolysis of Fe-oleate complex. Clever combination of different nanoscale materials will lead to the development of multifunctional nano-biomedical platforms for simultaneous targeted delivery, fast diagnosis, and efficient therapy. In this presentation, I would like to present some of our group's recent results on the designed fabrication of multifunctional nanostructured materials based on uniform-sized magnetite nanoparticles and their medical applications. Uniform ultrasmall iron oxide nanoparticles of <3 nm were synthesized by thermal decomposition of iron-oleate complex in the presence of oleyl alcohol. These ultrasmall iron oxide nanoparticles exhibited good T1 contrast effect. In in vivo T1 weighted blood pool magnetic resonance imaging (MRI), iron oxide nanoparticles showed longer circulation time than commercial gadolinium complex, enabling high resolution imaging. We used 80 nm-sized ferrimagnetic iron oxide nanocrystals for T2 MRI contrast agent for tracking transplanted pancreatic islet cells and single-cell MR imaging. We reported on the fabrication of monodisperse magnetite nanoparticles immobilized with uniform pore-sized mesoporous silica spheres for simultaneous MRI, fluorescence imaging, and drug delivery. We synthesized hollow magnetite nanocapsules and used them for both the MRI contrast agent and magnetic guided drug delivery vehicle.

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Preparation of ZnO Thin Film by Electrophoretic Deposition(EPD)

  • Jun, Byung-Sei
    • 한국세라믹학회지
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    • 제49권1호
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    • pp.78-83
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    • 2012
  • The electrophoretic deposition(EPD) of ZnO nano-sized colloids is investigated by changing the colloid number concentration, applied force, and deposition time. The change of the colloid size in a suspension was examined by the different colloid number concentrations (N = $3.98{\times}10^{15}$, N = $3.98{\times}10^{14}$, and N = $3.98{\times}10^{13}$) with an increase of the deposition time and applied forces. Deposition behavior was investigated by changing the applied fields (from DC 5 V to 50 V) and the deposition time (5 min to 25 min). The surface microstructures of the as-deposited films were investigated by SEM. The dried films were sintered from $850^{\circ}C$ to $1,050^{\circ}C$ for 2 h and then the microstructures were also explored by SEM. The agglomeration rate was enhanced by increasing the colloid number concentration of colloids. Colloid number concentration in a suspension must be rapidly decreased at higher values of the electric field. ZnO nano-sized colloids had the highest zeta potential value of over -28 mV in methanol. A homogeneous microstructure was obtained at colloid number concentration of N = $3.98{\times}10^{13}$, applied DC field of 5 V/cm and 15 min of deposition time at an electrode distance of 1.5 cm. Under these conditions, the deposited films were sintered at $850^{\circ}C$ and $1,050^{\circ}C$ for 2 h. The results show a typical pore-free surface morphology of a uniform thickness of 400 nm under these experimental conditions.

Microporous Ceramic Membrane and Its Gas Separation Performance

  • Li, Lin;Li, Junhui;Qi, Xiwang
    • 한국막학회:학술대회논문집
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    • 한국막학회 1996년도 춘계 총회 및 학술발표회
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    • pp.16-19
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    • 1996
  • Separation with synthetic membrane have become increasingly important processes in many fields. In the most application of membrane process, polymer membrane is used. the main advantage of polymers as a material for membrane preparation is the relative simplicity of this film formation which enables one to obtain rather high permeability rates. However, polymeric membranes have several limitations, such as high temperature instability, swelling and decomposition in organic solvent, et. al.. These limitations can be overcome by inorganic membrane. At the present time, commercially available inorganic membranes have pore diameters ranging 5nm to 50mm, and the predominant flow regime in such membrane is Knudsen diffusion. Since the Knudsen permeability is directly proportional to the molecular velocity, gases can be separated due to their molecular masses. However, this separation mechanism is only of important for light gases such as H2 and He. Other separation mechanisms like surface diffusion, active diffusion can play an important role only with very small pore diameters(2nm) and give rise to large permselectivities. Therefore, preparation of inorganic membrane with nano-sized pore have been attracting more and more attention.

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Diffusion-Selectivity Analysis of Permanent Gases through Carbon Molecular Sieve Membranes

  • Kang, Jong-Seok;Park, Ho-Bum;Lee, Young-Moo
    • Korean Membrane Journal
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    • 제5권1호
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    • pp.43-53
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    • 2003
  • The selectivity of a gas in the carbon molecular sieve membrane (CMSM) can be expressed as the ratio of the product of the diffusivity and the solubility of two different gases. The diffusivity is also expressed as the product of the entropy and the total energy (kinetic and potential energy) in the nano-sized pore of the membrane. The present study calculates the entropic-energy and selectivity of penetrant gases such as H$_2$, O$_2$, N$_2$, and CO$_2$ from the gas-in-a box theory to physically analyze the diffusivity of penetrant gas in slit-shaped pore of CMSM focusing on the restriction of gas motion based on the size difference between penetrant gas pairs. The contribution of each energy term is converted to entropic term separately. By the conjugated calculation for each entropic-energy, the entropic effects on diffusivity-selectivity for gas pairs such as H$_2$/N$_2$, CO$_2$/N$_2$, and O$_2$/N$_2$ were analyzed within active pore of CMSM. In the activated diffusion domain, the calculated value of entropic-selectivity lies between 9.25 and 111.6 for H$_2$/N$_2$, between 3.36 and 6.0 for CO$_2$/N$_2$, and between 1.25 and 16.94 for O$_2$/N$_2$, respectively. The size decrement of active pore in CMSM had the direct effect on the reduction of translational entropic-energy and the contribution of vibrational entropic-energy for N$_2$, O$_2$, and H$_2$ was almost negligible. However, the vibrational entropic term of CO$_2$ might extravagantly affect on the entropic-selectivity.

OMC Nano-emulsion을 포집하고 있는 Nano-TiO$_2$-Paste의 합성과 화장품의 응용 (Inorganic-organic nano-hybrid; Preparation of Nano-sized TiO$_2$ Paste Trapped OMC Nano-emulsion and it's Application for Cosmetics)

  • Byung Gyu, Park;Jong Heon, Kim;Jin Hee, Im;Kyoung Chul, Lee
    • 대한화장품학회지
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    • 제30권2호
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    • pp.181-187
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    • 2004
  • 화장품에서 유기 화합물인 OMC(octyl methoxy cinnamate)와 무기 소재인 TiO$_2$가 자외선 차단제로 가장 보편적으로 사용되고 있다. 그러나 OMC는 skin trouble이 있고, TiO$_2$는 첨가량에 비해서 자외선 차단 효율이 OMC보다 낮고 입자의 크기효과에 의해 백탁 현상이 나타나는 단점이 있다. 본 연구에서는 이러한 두 성분이 갖는 단점을 보완하는 방법으로 OMC를 나노에멀젼시키고, 이 나노에멀젼-OMC를 나노-TiO$_2$ 미립자로 포접하여 자외선 차단효과를 극대화 하면서, 피부에 OMC가 직접적으로 적용하지 못하도록 하는 방법을 연구하였다. 특히 계면활성제를 boundary로 하는 유기/무기 hybrid nano-material에서 TiO$_2$ 미립자와 OMC-에멀젼이 나노 크기가 되면 백탁 현상이 나타나지 않는 투명한 화장품을 제조할 수 있을 뿐만 아니라 나노-에멀젼 OMC를 TiO$_2$로 포집하는 과정에서 hydrophilic character를 갖는 레시친으로 TiO$_2$를 안정화하여 보습성을 더욱 향상시켰다. 합성한 inorganic-organic hybrid nano-material는 TEM을 이용하여 나노 미립자의 morphologies를 규명하였고, UV-Visible spectrometer를 이용하여 자외선 흡수를 측정하였다. 또한 X-ray diffractometer를 이용하여 나노-에멀젼 OMC를 포집하고 있는 TiO$_2$ 미립자가 갖는 특성인 pore의 크기와 구조를 측정하였다. 화장품적인 응용으로서 SPF analyzer 측정결과 기존의 powder-OMC에 비하여 우수한 자외선 차단 효과를 나타내었으며, OMC의 피부 침투도 훨씬 줄일 수 있어 OMC의 피부 부작용을 크게 줄일 수 있을 것이다.>$\pm$0.06 $\mu$g/g 범위였다. 4. 날결명자 분말첨가군 각 조직에 축적된 카드뮴 함량이 제일 낮았던 C4를 Cl과 비교한 결과 뇌, 심장, 비장, 간, 폐, 고환, 신장, 대퇴부근육, 다리뼈에 각각 49.03, 22.56, 36.02, 35.75, 41.75, 36.20, 37.00, 22.77, 56.67 %의 감소를 보였으며, 각 장기의 함량은 뇌<다리뼈<대퇴부 근육<고환<폐<심장<비장<신장<간 순 이었다. 5. 카드뮴 총 섭취량으로 장기 및 조직의 카드뮴 평균함량에 대한 축적율은 카드뮴만 섭취한 군(Cl) 의 경우 7.14%이었으며, 결명자 분말 첨가군인 C2, C3, C4군의 경우 각각 4.91, 4.81, 4.50 %이었다. 6. 체모의 카드뮴 함량은 Cl군이 가장 높았고, 결명자 첨가군들의 카드뮴 함량은 6주째까지 모든 시험군에서 증가하는 경향을 보였으며, 6주 이후에는 감소되는 경향을 보였다. 7. 분변 중 카드뮴 함량은 C4군이 가장 높았고, 결명자 첨가군들의 카드뮴 함량은 C3군과 C4군을 제외한 나머지 군들에서 완만하게 증가하는 경향을 보였으며, 6주째에 카드뮴 함량이 감소되는 경향을 보였다가 6주 이후에 다시 카드뮴 함량이 증가하는 경향이었다.erefore the guidelines for iron supplementation and nutritional education to improve their iron status should be provided.한 질소제거를 N-balance로부터 구해보면, R3 반응조의 경우가 가장 높은 제거율(40.9%)을 보였다. 이상의 결과들을 볼 때, Bncillus 균주는 호기적 탈질을 일으킬 수 있는 가능성이 있고, Bncillus 균주를 이용한 B3 공정은 탈질에 이용되는 탄소량이 거의 없고, 적은 alkalinity 소모에 의한 경제적 이익 등 장점을 가진 공정으로 보여 진다.수록 푹신한 감이 있는

ATO 처리후, 플라즈마 전해 산화 처리된 Ti-6Al-4V 합금의 표면 형태 (Surface Morphology of PEO-treated Ti-6Al-4V Alloy after Anodic Titanium Oxide Treatment)

  • Kim, Seung-Pyo;Choe, Han-Cheol
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2018년도 춘계학술대회 논문집
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    • pp.75-75
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    • 2018
  • Commercially pure titanium (CP-Ti) and Ti-6Al-4V alloys have been widely used in implant materials such as dental and orthopedic implants due to their corrosion resistance, biocompatibility, and good mechanical properties. However, surface modification of titanium and titanium alloys is necessary to improve osseointegration between implant surface and bone. Especially, when titanium oxide nanotubes are formed on the surface of titanium alloy, cell adhesion is greatly improved. In addition, plasma electrolytic oxide (PEO) coatings have a good safety for osseointegration and can easily and quickly form coatings of uniform thickness with various pore sizes. Recently, the effects of bone element such as magnesium, zinc, strontium, silicon, and manganese for bone regeneration are researching in dental implant field. The purpose of this study was researched on the surface morphology of PEO-treated Ti-6Al-4V alloy after anodic titanium oxide treatmentusing various instruments. Ti-6Al-4V ELI disks were used as specimens for nanotube formation and PEO-treatment. The solution for the nanotube formation experiment was 1 M $H_3PO_4$ + 0.8 wt. % NaF electrolyte was used. The applied potential was 30V for 1 hours. The PEO treatment was performed after removing the nanotubes by ultrasonics for 10 minutes. The PEO treatment after removal of the nanotubes was carried out in the $Ca(CH_3)_2{\cdot}H_2O+(CH_3COO)_2Mg{\cdot}4H_2O+Mn(CH_3COO)_2{\cdot}4H_2O+Zn(CH_3CO_2)_2Zn{\cdot}2H_2O+Sr(CH_2COO)_2{\cdot}0.5H_2O+C_3H_7CaO_6P$ and $Na_2SiO_3{\cdot}9H_2O$ electrolytes. And the PEO-treatment time and potential were 3 minutes at 280V. The morphology changes of the coatings on Ti-6Al-4V alloy surface were observed using FE-SEM, EDS, XRD, AFM, and scratch tester. The morphology of PEO-treated surface in 5 ion coating solution after nanotube removal showed formation or nano-sized mesh and micro-sized pores.

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마이크로진동자 기반 금속유기골격체의 기체 흡탈착 분석 (Gas Sorption Analysis of Metal-organic Frameworks using Microresonators)

  • 김하민;최현국;김문갑;이영세;임창용
    • 공업화학
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    • 제33권1호
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    • pp.11-16
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    • 2022
  • 금속유기골격체(metal-organic frameworks, MOFs)는 나노사이즈의 기공을 가진 다공성 물질로, 금속이온과 유기리간드의 종류에 따라 기체흡착도 및 기공크기의 조절이 가능하다. 이러한 장점을 이용하여, 기체 포집 및 분리, 그리고 기체센서분야에서 금속유기골격체에 대한 연구가 많이 이루어지고 있다. 신속하고, 정량적인 기체 흡탈착 분석을 위해서는, 센서 표면에 균일한 필름 형태의 다양한 MOF 구조체를 형성해야 한다. 본 총설논문에서는 양극산화알루미늄, 산화아연 나노막대, 구리 박막으로부터 직접합성법을 이용하여 각각 MIL-53 (Al), ZIF-8, Cu-BDC와 같은 MOF를 마이크로진동자 센서 표면에 균일하게 합성하는 방법에 대해 정리하였다. 또한, 대표적인 마이크로진동자인 수정진동자미세저울과 마이크로캔틸레버의 작동원리와 금속유기골격체에 기체흡착 시 변하는 신호해석에 대한 내용을 다룬다. 이를 통해, 마이크로진동자 기반 금속유기골격체의 기체 흡탈착 분석에 대한 이해를 높이고자 한다.

Ti-49.5Ni (at%)합금의 다공성 구조가 뼈 세포 흡착에 미치는 영향 (Effect of Pore Structures of a Ti-49.5Ni (at%) Alloy on Bone Cell Adhesion)

  • 임연민;최정일;강동우;남태현
    • 한국재료학회지
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    • 제22권2호
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    • pp.66-70
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    • 2012
  • Ti-Ni alloys are widely used in numerous biomedical applications (e.g., orthodontics, cardiovascular science, orthopaedics) due to their distinctive thermomechanical and mechanical properties, such as the shape memory effect, superelasticity and low elastic modulus. In order to increase the biocompatibility of Ti-Ni alloys, many surface modification techniques, such as the sol-gel technique, plasma immersion ion implantation (PIII), laser surface melting, plasma spraying, and chemical vapor deposition, have been employed. In this study, a Ti-49.5Ni (at%) alloy was electrochemically etched in 1M $H_2SO_4$+ X (1.5, 2.0, 2.5) wt% HF electrolytes to modify the surface morphology. The morphology, element distribution, crystal structure, roughness and energy of the surface were investigated by scanning electron microscopy (SEM), energy-dispersive Xray spectrometry (EDS), X-ray diffractometry (XRD), atomic force microscopy (AFM) and contact angle analysis. Micro-sized pores were formed on the Ti-49.5Ni (at%) alloy surface by electrochemical etching with 1M $H_2SO_4$+ X (1.5, 2.0, 2.5) wt% HF. The volume fractions of the pores were increased by increasing the concentration of the HF electrolytes. Depending on the HF concentration, different pore sizes, heights, surface roughness levels, and surface energy levels were obtained. To investigate the osteoblast adhesion of the electrochemically etched Ti-49.5Ni (at%) alloy, a MTT test was performed. The degree of osteoblast adhesion was increased at a high concentration of HF-treated surface structures.

Improvement of Light-Harvesting Efficiency of TiO2 Granules Through Chemical Interconnection of Nanoparticles by Adding TEOT to Spray Solution

  • Lim, Mi Ja;Song, Shin Ae;Kang, Yun Chan;So, Won-Wook;Jung, Kyeong Youl
    • Korean Chemical Engineering Research
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    • 제53권5호
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    • pp.632-637
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    • 2015
  • Mesoporous $TiO_2$ granules were prepared by spray pyrolysis using nano-sized titania particles which were synthesized by a hydrothermal method, and they were evaluated as the photoanode of dye-sensitized solar cells. To enhance the cell efficiency, nanoparticles within granules were chemically interconnected by adding titanium ethoxide (TEOT) to colloidal spray solution. The resulting titania particles had anatase phase without forming rutile. $TiO_2$ granules obtained showed about 400 nm in size, the specific surface area of $74-77m^2/g$, and average pore size of 13-17 nm. The chemical modification of $TiO_2$ granules by adding TEOT initially to the colloidal spray solution was proved to be an effective way in terms of increasing both the light scattering within photoanode and the lifetimes of photo-excited electrons. Consequently, the light-harvesting efficiency of TEOT-modified granules (${\eta}=6.72%$) was enhanced about 14% higher than primitive nanoparticles.