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        검색결과 456

        281.
        2011.05 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        Due to their novel properties, GaN based semiconductors and their nanostructures are promising components in a wide range of nanoscale device applications. In this work, the gallium nitride is deposited on c-axis oriented sapphire and porous SWCNT substrates by molecular beam epitaxy using a novel single source precursor of Me2Ga(N3)NH2C(CH3)3 with ammonia as an additional source of nitrogen. The advantage of using a single molecular precursor is possible deposition at low substrate temperature with good crystal quality. The deposition is carried out in a substrate temperature range of 600-750˚C. The microstructural, structural, and optical properties of the samples were analyzed by scanning electron microscopy, X-ray diffraction, Raman spectroscopy, and photoluminescence. The results show that substrate oriented columnar-like morphology is obtained on the sapphire substrate while sword-like GaN nanorods are obtained on porous SWCNT substrates with rough facets. The crystallinity and surface morphology of the deposited GaN were influenced significantly by deposition temperature and the nature of the substrate used. The growth mechanism of GaN on sapphire as well as porous SWCNT substrates is discussed briefly.
        4,000원
        283.
        2011.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        We developed a 3D simulation model of microstructure evolution of vertically aligned porous structure due to phase separation during film growth. The model proves its validity by reproducing the results of previous researches which are topological features of the microstructures and effects of varied processing parameters. The model will be extended by including bulk diffusion effect and elastic effect.
        3,000원
        284.
        2011.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        Electro-Discharge Sintering (EDS) employs a high-voltage/high-current-density pulse of electrical energy, discharged from a capacitor bank, to instantaneously consolidate powders. In the present study, a single pulse of 0.57-1.1 kJ/0.45 g-atomized spherical powders in size range of 10~30 and consisting of -(Ti, Zr) and icosahedral phases were applied to examine the structural evolution of icosahedral phase during EDS. Structural investigation reveals that high electrical input energy facilitates complete decomposition of icosahedral phase into C14 laves and -(Ti, Zr) phases. Moreover, critical input energy inducing decomposition of the icosahedral phase during EDS depends on the size of the powder. Porous Ti and W compacts have been fabricated by EDS using rectangular and spherical powders upon various input energy at a constant capacitance of in order to verify influence of powder shape on microstructure of porous compacts. Besides, generated heat () during EDS, which is measured by an oscilloscope, is closely correlated with powder size.
        4,000원
        285.
        2011.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        The RFID (Radio-Frequency Identification) is an automatic identification method, relying on storing and remotely retrieving data using devices called RFID tags or transponders. Some RFID tags have been used in severe environment of temperature ranged from to for a long time and may cause serious problems such as signal error, short life cycle and explosion. Conventionally, the RFID tags for high temperature applications consisted of Fe-alloy housing part, ceramic powder and RFID sensor. However, it has disadvantage of heavy weight, signal noise and heat shield capability. In this study, we newly applied the aluminum porous materials fabricated by polymer leaching process into RFID tags in order to improve heat shielding ability, and compared the properties of RFID tag inserted by aluminum porous with the conventional one.
        4,000원
        286.
        2011.04 KCI 등재 구독 인증기관 무료, 개인회원 유료
        This study investigated the high temperature oxidation behavior of Ni-22.4%Fe-22%Cr-6%Al (wt.%) porous metal. Two types of open porous metals with different pore sizes of 30 PPI and 40 PPI (pore per inch) were used. A 24-hour TGA test was conducted at three different temperatures of , and . The results of the BET analysis revealed that the specific surface area increased as the pore size decreased from 30 PPI to 40 PPI. The oxidation resistance of porous metal decreased with decreasing pore size. As the temperature increased, the oxidation weight gain of the porous metal also increased. Porous metals mainly created oxides such as , , , and . In the 40 PPI porous metal with small pore size and larger specific surface area, the depletion of stabilizing elements such as Al and Cr occurred more quickly during oxidation compared to the 30 PPI porous metal. Ni-Fe-Cr-Al porous metal's high-temperature oxidation micro-mechanism was also discussed.
        4,000원
        288.
        2011.03 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구에서는 다공성 polyethylene (PE) 이차전지용 격리막에 poly(ethylenimine) (PEI)을 함침시켜 isophthaloyl dichloride (IPC)을 이용한 가교반응 통하여 음이온교환막을 제조하였다. 제조된 막의 특성화를 평가하기 위하여 함수율, 접촉각, FT-IR, 이온교환용량, 이온전도도 등을 측정하였다. PEI와 IPC의 반응은 아민과 -COCl기와의 반응으로 아마이드기가 생성된다. 이온교환용량의 경우 30초 반응에서 1.96 meq./g dry membrane부터 600초 반응으로 인한 1.14 meq./g dry membrane까지 감소하는 경향을 나타내었고, 이온전도도의 경우 IPC와의 가교시간이 30초일 때 9.15×10-2S/㎝의 높은 값을 나타냄을 확인할 수 있었다.
        4,000원
        290.
        2011.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        As a pore precursor, carbon black with different content of 0 to 60 vol% were added to (Ba,Sr) powder. Porous (Ba,Sr) ceramics were prepared by pressureless sintering at for 1h under air. Effects of carbon black content on the microstructure and PTCR characteristics of porous (Ba,Sr) ceramics were investigated. The porosity of porous (Ba,Sr) ceramics increased from 6.97% to 18.22% and the grain size slightly decreased from to with increasing carbon black contents. PTCR jump of the (Ba,Sr) ceramics prepared by adding carbon black was more than , and slightly increased with increasing carbon black. The PTCR jump in the (Ba,Sr) ceramics prepared by adding 40 vol% carbon black showed an excellent value of , which was above two times higher than that in (Ba,Sr) ceramics. These results correspond with Heywang model for the explanation of PTCR effect in (Ba,Sr) ceramics. It was considered that carbon black is an effective additive for preparing porous based ceramics. It is believed that newly prepared (Ba,Sr) cermics can be used for PTC thermistor.
        4,000원
        291.
        2011.01 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        A nano-porous structure of tin oxide was prepared using an anodic oxidation process and the sample's electrochemical properties were evaluated for application as an anode in a rechargeable lithium battery. Microscopic images of the as-anodized sample indicated that it has a nano-porous structure with an average pore size of several tens of nanometers and a pore wall size of about 10 nanometers; the structural/compositional analyses proved that it is amorphous stannous oxide (SnO). The powder form of the as-anodized specimen was satisfactorily lithiated and delithiated as the anode in a lithium battery. Furthermore, it showed high initial reversible capacity and superior rate performance when compared to previous fabrication attempts. Its excellent electrode performance is probably due to the effective alleviation of strain arising from a cycling-induced large volume change and the short diffusion length of lithium through the nano-structured sample. To further enhance the rate performance, the attempt was made to create porous tin oxide film on copper substrate by anodizing the electrodeposited tin. Nevertheless, the full anodization of tin film on a copper substrate led to the mechanical disintegration of the anodic tin oxide, due most likely to the vigorous gas evolution and the surface oxidation of copper substrate. The adhesion of anodic tin oxide to the substrate, together with the initial reversibility and cycling stability, needs to be further improved for its application to high-power electrode materials in lithium batteries.
        4,000원
        292.
        2010.11 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        A porous nickel-tin nano-dendritic electrode, for use as the anode in a rechargeable lithium battery, has been prepared by using an electrochemical deposition process. The adjustment of the complexing agent content in the deposition bath enabled the nickel-tin alloys to have specific stoichiometries while the amount of acid, as a dynamic template for micro-porous structure, was limited to a certain amount to prevent its undesirable side reaction with the complexing agent. The ratios of nickel to tin in the electro-deposits were nearly identical to the ratios of nickel ion to tin ion in the deposition bath; the particle changed from spherical to dendritic shape according to the tin content in the deposits. The nickel to tin ratio and the dendritic structure were quite uniform throughout the thickness of the deposits. The resulting nickel-tin alloy was reversibly lithiated and delithiated as an anode in rechargeable lithium battery. Furthermore, the resulting anode showed much more stable cycling performance up to 50 cycles, as compared to that resulting from dense electro-deposit with the same atomic composition and from tin electrodeposit with a similar porous structure. From the results, it is expected that highly-porous nickel-tin alloys presented in this work could provide a promising option for the high performance anode materials for rechargeable lithium batteries.
        4,000원
        294.
        2010.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        다양한 형태의 Polysulfone 막을 MBR공정에 적용하기 위해 제조하였다. 특히 제조공정에 있어서 여러 형태의 에테르형 알코올을 사용 도프용액에 첨가시킴으로써, 공경크기에 미치는 영향력을 조사하였다. 본 연구에서는 공경의 크기는 첨가된 첨가제의 끓는점에 의한 영향력보다는 그들 자체(첨가된 첨가제)의 분자구조에 의한 확산에 더 큰 영향력을 받고 있음을 보여주었다. 분자적으로 methoxy (CH3-O-) < secondary propanol (-CH2-CH(OH)-CH3) < ethoxy (CH3-CH2-O-)의 순으로 공경크기가 커지고 그에 따라 순수투과도 또한 커짐을 보여주었다. 이러한 현상은 첨가된 용매가 분자적으로 ether형 알코올의 bulky한 정도에 따라 공경의 형성이 다른 형태로 나타나고 있음을 보여주고 있다. 본 연구에서는 다양한 형태의 ether형 alcohol를 통하여 바라고자하는 형태(평균 pore size 0.1~0.4 μm)의 MF (microfiltration)막을 제조할 수 있었으며, MBR (membrane bio-reactor)에 적용한 결과 2달 동안 안정되게 운전되었다.
        4,000원
        295.
        2010.06 KCI 등재 구독 인증기관 무료, 개인회원 유료
        본 연구는 배수성 아스팔트 포장에 사용하기 위하여 국내에서 개발한 개질 아스팔트 바인더 및 혼합물의 실내 및 현장 공용성을 평가한 연구이다. 국내에서 개발된 개질 아스팔트 2종에 대한 DSR, BBR 및 다양한 바인더 시험을 실시하여 공용성능이 상대적으로 우수한 1종의 개질 아스팔트를 선정하였다. 선정된 개질 아스팔트와 기존에 일본에서 사용되는 개질 아스팔트를 사용하여 각각에 대하여 배합설계를 실시하고, 배수성 아스팔트 혼합물을 생산하여 실내 공용성을 비교하기 위해 휠트래킹 시험, 수분손상 시험, 피로시험 등을 수행하였다. 그 결과, 공용특성 측면에서 국산의 개질 아스팔트가 일본 개질 아스팔트와 비슷하거나 경우에 따라서는 우수함을 확인하였다. 실내시험결과를 바탕으로 현장 시험시공을 실시하였고, 추적조사를 통하여 시간에 따른 공극률과 소음특성의 변화를 측정하였다. 그 결과 시공 초기에는 배수 및 소음 저감 능력이 우수하였으나 2년이 경과한 후 소음 저감 능력이 감소하여 SMA 포장과 비슷한 수준의 소음저감효과를 나타내었다.
        4,000원
        296.
        2010.03 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        In this study, we investigated primary biocompatibility and osteogenic gene expression of porous granular BCP bone substitutes with or without strontium (Sr) doping. In vitro biocompatibility was investigated on fibroblasts like L929 cells and osteoblasts like MG-63 cells using a cell viability assay (MTT) and one cell morphological observation by SEM, respectively. MTT results showed a cell viability percent of L929 fibroblasts, which was higher in Sr-BCP granules (98-101%) than in the non-doped granules (92-96%, p< 0.05). Osteoblasts like MG-63 cells were also found to proliferate better on Sr-doped BCP granules (01-111%) than on the non-doped ones (92-99%, p< 0.05) using an MTT assay. As compared with pure BCP granules, SEM images of MG-63 cells grown on sample surfaces confirmed that cellular spreading, adhesion and proliferation were facilitated by Sr doping on BCP. Active filopodial growth of MG-63 cells was also observed on Sr-doped BCP granules. The cells on Sr-doped BCP granules were well attached and spread out. Gene expression of osteonectin, osteopontin and osteoprotegrin were also evaluated using reverse transcriptase polymerase chain reaction (RT-PCR), which showed that the mRNA phenotypes of these genes were well maintained and expressed in Sr-doped BCP granules. These results suggest that Sr doping in a porous BCP granule can potentially enhance the biocompatibility and bone ingrowth capability of BCP biomaterials.
        4,000원
        298.
        2010.02 KCI 등재 구독 인증기관 무료, 개인회원 유료
        We produced cylindrical porous TiNi bodies by Self-propagating High-temperature Synthesis (SHS) process, varying the heating schedule prior to ignition of a loose preform compact made from (Ti+Ni) powder mixture. To investigate the effect of the heating schedule on the behaviour of combustion wave propagation and the structure of porous TiNi shape-memory alloy (SMA) body, change of temperature in the compact during SHS process was measured as a function of time and used for determining combustion temperature and combustion wave velocity. Microstructure of produced porous TiNi SMA body was observed and the results were discussed with the combustion characteristics. From the results it was concluded that the final average pore size could be controlled either by the combustion wave velocity or by the average temperature of the preform compact prior to ignition.
        4,000원
        299.
        2009.12 KCI 등재 SCOPUS 구독 인증기관 무료, 개인회원 유료
        Using a polyurethane foam replica method, porous hydroxyapatite scaffolds (PHS) were fabricated using conventional and microwave sintering techniques. The microstructure and material properties of the PHS, such as pore size, grain size, relative density and compressive strength, were investigated at different sintering temperatures and holding times to determine the optimal sintering conditions. There were interconnected pores whose sizes ranged between about 300 μm and 700 μm. At a conventional sintering temperature of 1100˚C, the scaffold had a porous microstructure, which became denser and saw the occurrence of grain growth when the temperature was increased up to 1300˚C. In the case of microwave sintering, even at low sintering temperature and short holding time the microstructure was much denser and had smaller grains. As the holding time of the microwave sintering was increased, higher densification was observed and also the relative density and compressive strength increased. The compressive strength values of PHS were 2.3MPa and 1.8MPa when conventional and microwave sintering was applied at 1300˚C, respectively.
        4,000원