• 제목/요약/키워드: colloidal probe

검색결과 20건 처리시간 0.03초

미세입자의 트라이볼로지적 응용을 위한 마찰특성 고찰 (Study on the Frictional Characteristics of Micro-particles for Tribological Application)

  • 성인하;한흥구;공호성
    • Tribology and Lubricants
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    • 제25권2호
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    • pp.81-85
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    • 2009
  • Interests in micro/nano-particles have been greatly increasing due to their wide applications in various fields such as environmental and medical sciences as well as engineering. In order to obtain a fundamental understanding of the tribological characteristics at particle-surface contact interface, frictional behaviors according to load/pressure and materials were obtained by using atomic force microscope(AFM) cantilevers with different stiffnesses and tips. Lateral contact stiffnesses were observed in various tip-surface contact situations. Experimental results show that stick-slip friction behavior occurs even when the colloidal probes with a particle of a few micrometers in diameter, which have a relatively large contact area and lack a well-shaped apex, were used. This indicates that atomic stick-slip friction may be a more common phenomenon than it is currently thought to be. Also, experimental results were investigated by considering the competition between the stiffness of the interatomic potential across the interface and the elastic stiffnesses of the contacting materials and the force sensor itself.

EGR Cooler에 CNC 첨가시 열교환 특성에 관한 연구 (A Study on the Heat Exchange Characteristics of EGR-Cooler with CNC)

  • 이병호;이중섭;김보한;정효민;정한식
    • Journal of Advanced Marine Engineering and Technology
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    • 제32권6호
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    • pp.847-853
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    • 2008
  • Although combustion is essential in most energy generation processes, it is one of the major causes of air pollution. Circle fin exhaust pipes were designed to study the effect of cooling the recirculated exhaust gases (EGR) of Diesel engines on the chemical composition of the exhaust gases and the reduction in the percentages of pollutant emissions. The designs adopted in this study were exhaust pipes with solid and hollow fins around them direct surface force measurement in water using a nano size colloidal probe Technique The direct force measurement between colloidal surfaces has been an essential topic in both theories and applications of surface chemistry. As particle size is decreased from micron size down to true Carbon nano Colloid size (<10nm), surface forces are increasingly important. Nanoparticles at close proximity or high solids loading are expected to show a different behavior than what can be estimated from continuum and mean field theories. This paper use Water and CNC fluid at normal cooling system of EGR. Experimental result showed all good agreement at Re=$2.54{\times}10^{4}$.

ULTRAFAST INTERFACIAL ELECTRON TRAPPING AND RECOMBINATION IN PHOTOEXCITED COLLOIDAL CADMIUM SULFIDE

  • Kim, Seong-Kyu
    • Journal of Photoscience
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    • 제4권1호
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    • pp.11-16
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    • 1997
  • We measured, using femtosecond pump-probe experiment, the time evolution of transient absorption in aqueous CdS colloids. The signal rises within the time resolution (= 0.5 ps) of the experiment and decays with two exponential time constants, 4.8 ps and 132 ps. The ultrafast rise of the transient absorption is considered to be for shallowly trapped conduction band electrons after photoexcitation. The amplitude ratio of the two decaying components varies with the pump intensity and the decay times increase in the presence of hole scavengers. Even though a biexponential function fits the decay well, we object hat two independent first order processes (geminate and nongeminate recombinations) are responsible for the decay. A function with an integrated rate equation for second order nongeminate recombination plus a long background fits the decay well. The long background is considered to be for deeply trapped charges at the CdS particle.

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Investigation of Interface Reaction between TiAl Alloys and Mold Materials

  • 김명균;김영직
    • 소성∙가공
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    • 제8권3호
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    • pp.289-289
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    • 1999
  • This paper describes the investment casting of TiAl alloys. The effects of mold material and mold preheating temperature for the investment casting of TiAl on metal-mold interfacial reaction were investigated by means of optical micrography, hardness profiles and an electron probe microanalyzer. The mold materials examined were colloidal silica bonded ZrO₂, ZrSiO₄, A1₂O₃and CaO stabilized ZrO₂. When compared with conventional titanium a1loy, the high aluminum concentration of TiAl alloys helps to lower their reactivity in the molten state. The A1₂O₃mold is a promising mold material for the investment casting of TiAl in terms of the thermal stability, formability and cost. Special attention need to be paid to thermal stability and mold preheating when developing the investment calling of TiAl alloys.

탄소나노콜로이드 냉각수를 사용하여 자동차 엔진성능의 향상에 관한 연구 (A Study on the Effect of Automotive Engine Performance by Using Carbon Nano Colloid Cooling Water)

  • 이중섭;이병호
    • 한국자동차공학회논문집
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    • 제19권5호
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    • pp.134-142
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    • 2011
  • Although combustion is essential in most energy generation processes, it is one of the major causes of air pollution. Exhaust pipes with circular fin were designed to study the effect of cooling the recirculated exhaust gases (EGR) of Diesel engines on the chemical composition of the exhaust gases and the reduction in the percentages of pollutant emissions. The gases examined in this study were oxides of nitrogen (NOx), carbon dioxide ($CO_2$) and carbon monoxide (CO). In addition, $O_2$ concentration in the exhaust was measured. The designs adopted in this study were about exhaust pipes with solid and hollow fins around them direct surface force measurement in water using a nano size colloidal probe technique. The direct force measurement between colloidal surfaces has been an essential topic in both theories and applications of surface chemistry. As particle size is decreased from micron size down to true Carbon nano Colloid size (<10 nm), surface forces are increasingly important. Nano particles at close proximity or high solids loading are expected to show a different behavior than what can be estimated from continuum and mean field theories. The current tools for directly measuring interaction forces such as a surface force apparatus or atomic force microscopy (AFM) are limited to particles much larger than nano size. This paper use Water and CNC fluid at normal cooling system of EGR. Experimental result showed all good agreement at Re=$2.54{\times}10^4$ by free convection and Re=$3.36{\times}10^4$ by forced air furnace.

Surface-enhanced infrared detection of benzene in air using a porous metal-organic-frameworks film

  • Kim, Raekyung;Jee, Seohyeon;Ryu, Unjin;Lee, Hyeon Shin;Kim, Se Yun;Choi, Kyung Min
    • Korean Journal of Chemical Engineering
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    • 제36권6호
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    • pp.975-980
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    • 2019
  • Infrared (IR) spectroscopy is a powerful technique for observing organic molecules, as it combines sensitive vibrational excitations with a non-destructive probe. However, gaseous volatile compounds in the air are challenging to detect, as they are not easy to immobilize in a sensing device and give enough signal by themselves. In this study, we fabricated a thin nanocrystalline metal-organic framework (nMOF) film on a surface plasmon resonance (SPR) substrate to enhance the IR vibration signal of the gaseous volatile compounds captured within the nMOF pores. Specifically, we synthesized nanocrystalline HKUST-1 (nHKUST-1) particles of ca. 80 nm diameter and used a colloidal dispersion of these particles to fabricate nHKUST-1 films by a spin-coating process. After finding that benzene was readily adsorbed onto nHKUST-1, an nHKUST-1 film deposited on a plasmonic Au substrate was successfully applied to the IR detection of gaseous benzene in air using surface-enhanced IR spectroscopy.

D-$\Pi$-A designed dye chromophores and nanoparticles: optical properties, chemosensor effects and PE/Aramid fiber colorations

  • Son, Young-A;Kim, Su-Ho;Kim, Young-Sung
    • 한국염색가공학회:학술대회논문집
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    • 한국염색가공학회 2010년도 제3회 국제학회
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    • pp.40-40
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    • 2010
  • Studies on attractive color changing property of dye chromophore and fluorophore have been greatly enjoyed in the related industrial and research fields such as optoelectronics, chemosensor, biosensor and so on. The optical property based on D-$\Pi$-A intramolecular charge transfer (ICT) system of chromophore molecules can be utilized as suitable sensing probes for checking media polarity and determining colorimetric chemosensing effect, especially heavy metal detection. These finding are obtained by absorption and emission properties. In this work, donor-acceptor D-$\Pi$-A type fluorescent dyes were designed and synthesized with the corresponding donor and acceptor groups. The selected donor moieties might be provided prominent amorphous properties which are very useful in designing and synthesizing functional polymers and in fabricating devices. Another reasons to choose are commercial availabilities in high purity and low price. Donor-bridge-acceptor (D-A) type dyes can produce impressive optical-physical properties, yielding them potentially suitable for applications in the synthesis of small functional organic molecules. Small organic functional molecules have unique advantages, such as better solubility, amorphous character, and represent an area of research which needs to be explored and developed. Currently, their applications in metalorganic compounds is rapidly expanding and becoming widespread in self-assembly processes, photoluminescence applications, chiral organocatalysts, and ingrafts with nanomaterials. Colloidal nanoparticles have received great attentions in recent years. The photophysical properties of nanoparticles, particularly in terms of brightness, photostability, emission color purity and broad adsorption range, are very attractive functions in many applications. To our knowledge background, colloidal nanoparticles have been enjoyed their applications in bio-probe research fields. This research interest can be raised by the advantages of the materials such as high photoluminescence quantum yields, sharp emission band, long-term photostability and broad excitation spectra. In recent, the uses of nanoparticles being embedded in a polymer matrix and binded on polymer surface have been explored and their properties such as photo-activation and strong photoluminescence have been proposed. The prepared chromophores and nanoparticles were investigated with absorption and emission properties, solvatochromic behaviors, pH induced color switching effects, chemosensing effects and HOMO/LUMO energy potentials with computer simulation. In addition, synthesized fluorophore dyes and particles were applied onto PE/Aramid fiber fluorescing colorations. And the related details were then discussed.

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Carbon Black 표면에의 아크릴레이트 및 메타크릴레이트의 그라프트 중합에 관한 연구 (Study on Graft Polymerization of Acrylate and Methacrylate Monomers onto the Carbon Black Surface)

  • 구형서;장병권;김용무;최규석
    • 공업화학
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    • 제5권3호
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    • pp.395-405
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    • 1994
  • Carbon black(이하 CB로 약함) 표면에 존재하는 각종 작용기(-OH, OC,<-COOH)를 n-butyl lithium을 반응활성화제로 활성화시킨 후 아크릴레이트 및 메타크릴레이르 단량체들을 음이온 그라프트 중합하여 CB-그라프트 생성물을 얻었다. 이 CB-그라프트 생성물을 비용매를 이용한 침전법과 원심분리기를 사용하여 호모폴리머를 분리시켜 반응시간과 온도에 따른 그라프트 효율 등을 구한 결과, CB-polyacrylates의 경우 그라프트율이 20~30% 정도로 낮았지만 CB-polymethacrylate의 경우 150~200% 정도의 매우 높은 그라프트율의 CB- grafted polymer를 얻을 수 있었다. 또한, 각 반응온도에서 CB와 단량체들의 음이온 중합은 대체로 1~2시간 정도에서 평형상태를 이루었으며, 온도가 높아짐에 따라 전환율과 그라프트율은 약간의 증가를 보였다. 콜로이드 분산성 시험을 한 결과 열건조 전에는 각 호모폴리머의 양용매 중에서 매우 안정한 분산성을 나타냈으며, 열건조 후에도 CB-polymethacrylate의 경우에는 대부분의 polymethacrylate 양용매에 대해 매우 양호한 안정성을 보였다. CB 표면에서의 그라프트 중합체의 확인은 적외선 스펙트럼에 의해 행하였다. Four-probe 방법에 의한 CB-grafted polymer의 저항값 측정에서는 그라프트율이 높을수록 저항값이 증가함을 알 수 있었다.

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Preparation of Core-shell Type Nanoparticles of Poly($\varepsilon$-caprolactone) /Poly(ethylene glycol)/Poly( $\varepsilon$-caprolactone) Triblock Copolymers

  • 류재곤;정영일;김영훈;김인숙;김도훈;김성호
    • Bulletin of the Korean Chemical Society
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    • 제22권5호
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    • pp.467-475
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    • 2001
  • A triblock copolymer based on $poly(\varepsilon-caprolactone)$ (PCL) as the hydrophobic part and poly(ethylene glycol) (PEG) as the hydrophilic portion was synthesized by a ring-opening mechanism of ${\varepsilon}-caprolactone$ with PEG containing a hydroxyl group at bot h ends as an initiator. The synthesized block copolymers of PCL/PEG/PCL (CEC) were confirmed and characterized using various analysis equipment such as 1H NMR, DSC, FT-IR, and WAXD. Core-shell type nanoparticles of CEC triblock copolymers were prepared using a dialysis technique to estimate their potential as a colloidal drug carrier using a hydrophobic drug. From the results of particle size analysis and transmission electron microscopy, the particle size of CEC core-shell type nanoparticles was determined to be about 20-60 nm with a spherical shape. Since CEC block copolymer nanoparticles have a core-shell type micellar structure and small particle size similar to polymeric micelles, CEC block copolymer can self-associate at certain concentrations and the critical association concentration (CAC) was able to be determined by fluorescence probe techniques. The CAC values of the CEC block copolymers were dependent on the PCL block length. In addition, drug loading contents were dependent on the PCL block length: the larger the PCL block length, the higher the drug loading content. Drug release from CEC core-shell type nanoparticles showed an initial burst release for the first 12 hrs followed by pseudo-zero order release kinetics for 2 or 3 days. CEC-2 block copolymer core-shell type nanoparticles were degraded very slowly, suggesting that the drug release kinetics were governed by a diffusion mechanism rather than a degradation mechanism irrelevant to the CEC block copolymer composition.

고품질 금속 이온 첨가 MCM-41 분자체 촉매의 제법, 특성화 및 응용 반응 (Synthesis, Characterizations, and Applications of Metal-Ions Incorporated High Quality MCM-41 Catalysts)

  • 임상윤
    • Korean Chemical Engineering Research
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    • 제51권4호
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    • pp.443-454
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    • 2013
  • 콜로이드 실리카와 가용성 실리카를 이용하여 나트륨이 첨가되지 않은 다양한 금속이온 첨가 MCM-41 촉매를 제조하였다. 전이금속 이온인 $V^{5+}$, $Co^{2+}$$Ni^{2+}$이 MCM-41에 첨가되었을 경우 기공벽 내의 실리콘 이온과 등방치환을 하여 실리카 기공벽 내에서 독립된 단일 활성점을 형성하여 우수한 환원 및 활성 내구성을 보였다. 수소 승온 환원법을 이용하여 Co-MCM-41 촉매의 기공 곡률 반경효과에 대해 검토해 본 결과, 적절한 환원 처리와 기공 크기 및 pH 조절에 따라 코발트 금속입자의 크기를 1nm 이하의 범위에서 조절할 수 있었으며, 이 미세 금속 입자들은 표면 금속이온들과의 결합으로 인해 상당한 고온 안정성이 있음을 발견하였다. 완전 환원 후에도 비정형 실리카의 부분 덮힘으로 인해 금속 입자들의 표면 이동 및 뭉침 현상이 현저히 저하되는 것을 볼 수 있었다. 이들 촉매의 반응 예로 금속 입자 크기에 민감한 단일층 탄소 나노튜브의 합성을 Co-MCM-41을 이용하여 실시하였고, 금속 입자의 안정성 시험반응으로 Co 및 Ni-MCM-41을 이용한 CO 메탄화 반응, V-MCM-41을 이용한 메탄올 및 메탄의 부분 산화반응 및 기공곡률 반경이 촉매활성에 미치는 영향 등을 살펴보았다.