• 제목/요약/키워드: Composite nanoparticles

검색결과 327건 처리시간 0.027초

수소제조에 관한 박막형 CdS-TiO2 복합 광촉매계의 표면처리 효과 (Effect of Surface Treatment of CdS-TiO2 Composite Photocatalysts with Film Type on Hydrogen Production)

  • 장점석;소원욱;김광제;문상진
    • 한국수소및신에너지학회논문집
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    • 제13권1호
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    • pp.34-41
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    • 2002
  • CdS and $TiO_2$ nanoparticles were made by the precipitation method and sol-gel method, respectively, and they were mixed mechanically and then treated with the hydrothermal processing. CdS-$TiO_2$ composite particulate films were thus prepared by casting CdS-$TiO_2$ mixed sol onto $SnO_2$ conducting glass and a subsequent heat-treatment at $400^{\circ}C$. Again, the physico-chemical and photoelectrochemical properties of these films were controlled by the surface treatment with $TiCl_4$ aqueous solution. The photocurrents and the hydrogen production rates measured under the present experimental conditions varied in the range of $3.5{\sim}4.5mA/cm^2$ and $0.3{\sim}1.8cc/cm^2$-hr, respectively, and showed the maximum values at the $CdS/[CdS+TiO_2]$ mole ratio of 0.2. Also, the surface treatment with $TiCl_4$ aqueous solution caused a considerable improvement in the photocatalytic activity, Probably as a result of close contacts between the primary particles by the etching effect of $TiCl_4$ It was found that the photoelectrochemical performance of these particulate films could be effectively enhanced by this approach.

무전해도금 및 방전 플라즈마 소결을 이용한 구리/흑연 복합재료 제조 및 열물성 특성 평가 (Thermophysical Properties of Copper/graphite Flake Composites by Electroless Plating and Spark Plasma Sintering)

  • 이재성;강지연;김슬기;정찬회;이동주
    • 한국분말재료학회지
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    • 제27권1호
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    • pp.25-30
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    • 2020
  • Recently, the amount of heat generated in devices has been increasing due to the miniaturization and high performance of electronic devices. Cu-graphite composites are emerging as a heat sink material, but its capability is limited due to the weak interface bonding between the two materials. To overcome these problems, Cu nanoparticles were deposited on a graphite flake surface by electroless plating to increase the interfacial bonds between Cu and graphite, and then composite materials were consolidated by spark plasma sintering. The Cu content was varied from 20 wt.% to 60 wt.% to investigate the effect of the graphite fraction and microstructure on thermal conductivity of the Cu-graphite composites. The highest thermal conductivity of 692 W m-1K-1 was achieved for the composite with 40 wt.% Cu. The measured coefficients of thermal expansion of the composites ranged from 5.36 × 10-6 to 3.06 × 10-6K-1. We anticipate that the Cu-graphite composites have remarkable potential for heat dissipation applications in energy storage and electronics owing to their high thermal conductivity and low thermal expansion coefficient.

재사용이 가능한 나노복합재료 Fe3O4-ACCS-Ag의 제조 및 항균 특성 평가 (Investigation of Synthesis and Antibacterial Properties of a Magnetically Reusable Fe3O4-ACCS-Ag Nanocomposite)

  • 심재홍;김해원;김진원;서영석;오세강;조민;박정희;오병택
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제20권3호
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    • pp.25-33
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    • 2015
  • In this study, Fe3O4-ACCS-Ag nanoparticles (NPs) were successfully synthesized using silica extracted from corn cob ash. The synthesized Fe3O4-ACCS-Ag NPs were characterized using X-ray diffraction (XRD), scanning electron microscopyenergy dispersive X-ray spectroscopy (SEM-EDX), transmission electron microscopy (TEM) and fourier transform infrared spectroscopy (FTIR). In addition, the potential application of Fe3O4-ACCS-Ag NPs as an antibacterial material in water disinfection was investigated using Escherichia coli ATCC 8739 as model bacteria. The antibacterial activity of synthesized composite material showed 99.9% antibacterial effect within 20 min for the tested bacteria. From this experiment, the synthesized Fe3O4-ACCS-Ag nanocomposites also hold magnetic properties and could be easily recovered from the water solution for its reuse. The reused nanocomposites presented the decreasing antibacterial efficiencies with the reuse cycle but the composite used three times still killed 90% of bacteria in 20 min.

산화 아연 나노 입자로 도포된 마이카의 합성 및 특성 규명 (Synthesis and Characterization of Mica Coated with Zinc Oxide Nanoparticles)

  • 길현석;김용호;박민영;이석우
    • 공업화학
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    • 제23권3호
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    • pp.271-278
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    • 2012
  • 본 연구에서는 마이카와 산화 아연을 이용하여 복합 재료를 제조하고, 이를 자외선 차단 크림에 응용하는 연구를 수행하였다. 먼저 마이카와 산화 아연을 각각 3-aminopropyltrimethoxysilane (APTMS)으로 처리하여 표면에 아민기를 생성시켰다. 아민기가 붙은 마이카를 1,4-phenylenediisothiocyanate (PDC)와 반응시켜 표면에 -N=C=S 작용기를 활성화시킨 후, 아민기가 붙어있는 산화 아연과 결합시켜 산화 아연으로 덮인 마이카 복합 재료를 합성하였다. 원소 분석, EDS 분석, 열 중량 분석, SEM 이미지 분석, 형광 이미지 분석, 제타 전위 측정, X-선 회절 분석, DRS UV/Vis 분석을 통하여 고체 생성물의 특성을 규명하였다. 최종적으로 표준 프로토콜로 제조된 자외선 차단 크림의 파장에 따른 투과도를 280~400 nm 범위에서 측정하여 자외선 차단 효과를 확인하였다.

소수성 실리카의 제조 및 가스차단성 필름으로의 응용에 관한 연구 (Study on the Synthesis of Hydrophobic Silica and Its Application for Gas Barrier Film)

  • 양경민;장미정;남광현;정대원
    • 공업화학
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    • 제28권5호
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    • pp.554-558
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    • 2017
  • 실리카 표면의 소수화를 위하여 다양한 조건 하에서 hexamethyldisilazane (HMDS)와 반응시켰다. 얻어진 반응물들은 형태학적으로는 실리카와 큰 차이가 없었으나, 열중량분석 및 원소분석을 통하여 실리카의 표면이 유기물로 개질된 것을 확인할 수 있었다. 톨루엔에서의 분산성 및 페녹시 수지와 복합화한 필름의 표면 조도를 측정하여 평가한 결과, 데칼린을 용매로 사용하여 $200^{\circ}C$에서 과량의 HMDS를 사용하여 6 h 반응시킨 물질이 최적으로 나타났다. 이와 같은 개질 실리카를 포함하는 복합체 필름의 산소 투과도 평가 결과, 개질 실리카는 필름의 산소 차단성을 향상시키는 것을 확인하였다.

다중벽 탄소 나노튜브 기반 고충전 나노복합 페이스트를 이용한 염료 감응 태양 전지용 상대 전극의 제조에 있어서 분산 제어의 효과 (Effect of Dispersion Control of Multi-walled Carbon Nanotube in High Filler Content Nano-composite Paste for the Fabrication of Counter Electrode in Dye-sensitized Solar Cell)

  • 박소현;홍성철
    • 폴리머
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    • 제37권4호
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    • pp.470-477
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    • 2013
  • 가공이 쉬우면서도 성능이 우수한 염료 감응 태양 전지(DSSC)용 상대 전극을 제조하기 위하여 다중벽 탄소 나노튜브(MWCNT) 기반의 고충전 나노복합 페이스트를 제조하고, MWCNT의 분산 제어가 미치는 영향에 대하여 조사하여 보았다. MWCNT의 분산성을 향상시키기 위하여 폴리스티렌 기반의 기능성 블록 공중합체를 리빙 라디칼 중합법으로 합성하여 MWCNT의 표면 개질제로 사용하였으며, 적절한 용매 조건의 선택을 통하여 고충전 나노복합 페이스트의 가공성이 향상되는 것을 확인할 수 있었다. MWCNT의 분산 제어를 통해 이를 상대 전극으로 도입한 DSSC의 광전 변환 효율이 향상됨을 확인할 수 있었으며, 이는 볼밀법을 이용한 MWCNT의 물리적 분산을 통해서도 검증할 수 있었다. 미량의 platinum(Pt) 나노입자와 복합화시킬 경우, 표준 Pt 상대 전극보다도 더 우수한 성능을 가지는 MWCNT 기반 상대 전극을 제조할 수 있음을 확인하였다.

MoS2/Montmorillonite Nanocomposite: Preparation, Tribological Properties, and Inner Synergistic Lubrication

  • Cheng, Lehua;Hu, Enzhu;Chao, Xianquan;Zhu, Renfa;Hu, Kunhong;Hu, Xianguo
    • Nano
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    • 제13권12호
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    • pp.1850144.1-1850144.13
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    • 2018
  • A nano-$MoS_2$/montmorillonite K-10 (K10) composite was prepared and characterized. The composite contains two types of 2H-$MoS_2$ nanoparticles. One is the hollow spherical $MoS_2$ with a size range of 75 nm, and the other is the spherical nano cluster of $MoS_2$ with a size range of 30 nm. The two kinds of nano-$MoS_2$ were formed via assembly of numerous $MoS_2$ nano-platelets with a size of ~10 nm. A tribological comparison was then made among nano-$MoS_2$/K10, K10, nano-$MoS_2$ and a mechanical mixture of K10 and nano-$MoS_2$. K10 reduced the wear but slightly increased the friction. Nano-$MoS_2$ remarkably reduced both friction and wear. The mechanical mixture demonstrated better wear resistance than nano-$MoS_2$, indicating a synergistic anti-wear effect of nano-$MoS_2$ and K10. The synergistic effect was reinforced using nano-$MoS_2$/K10 instead of the mechanical mixture. A part of the $MoS_2$ in the contact region always lubricated the friction pair, and the rest formed a tribofilm. K10 segregated the friction pair to alleviate the ablation wear but magnified the abrasive wear. S-$MoS_2$ protects K10 and they together function as both a lubricant and an isolating agent to reduce the ablation and abrasive wear.

FTIR 분자구조 해석을 통한 에폭시-실리카 나노복합소재의 열기계적 물성 연구 (Study on the Thermomechanical Properties of Epoxy-Silica Nanocomposites by FTIR Molecular Structure Analyses)

  • 장서현;한유수;황도순;정주원;김영국
    • 마이크로전자및패키징학회지
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    • 제28권2호
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    • pp.51-57
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    • 2021
  • 이 연구에서는 에폭시 수지에 포함된 나노 실리카 입자의 농도가 재료의 열/기계적 물성에 미치는 영향에 대해 알아보았다. 약 12 nm 크기의 나노 입자를 에폭시 수지에 다섯가지 무게비로 섞은 나노복합소재를 제작하였다. DMA와 TMA 방법을 이용하여 유리전이온도, 응력이완, 열팽창 거동을 측정하였다. 이를 통해 나노입자가 재료의 점탄성 거동에 어떠한 영향을 미치는지 보였다. 실리카 입자의 함량이 증가할수록 순수 에폭시 재료 대비 탄성 물성은 증가하였고, 유리전이온도는 감소하였다. FTIR 결과는 분자구조의 관점에서 충진제 함량에 따른 물성변화의 원인을 찾고 나노입자가 에폭시 분자 구조에 어떠한 영향을 미치는지를 규명하는데 중요한 역할을 하였다.

코발트 페라이트 나노입자/탄소 나노섬유 복합전극 제조 및 슈퍼커패시터 특성평가 (Preparation of CoFe2O4 Nanoparticle Decorated on Electrospun Carbon Nanofiber Composite Electrodes for Supercapacitors)

  • 황혜원;육서연;정민식;이동주
    • 한국분말재료학회지
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    • 제28권6호
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    • pp.470-477
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    • 2021
  • Energy storage systems should address issues such as power fluctuations and rapid charge-discharge; to meet this requirement, CoFe2O4 (CFO) spinel nanoparticles with a suitable electrical conductivity and various redox states are synthesized and used as electrode materials for supercapacitors. In particular, CFO electrodes combined with carbon nanofibers (CNFs) can provide long-term cycling stability by fabricating binder-free three-dimensional electrodes. In this study, CFO-decorated CNFs are prepared by electrospinning and a low-cost hydrothermal method. The effects of heat treatment, such as the activation of CNFs (ACNFs) and calcination of CFO-decorated CNFs (C-CFO/ACNFs), are investigated. The C-CFO/ACNF electrode exhibits a high specific capacitance of 142.9 F/g at a scan rate of 5 mV/s and superior rate capability of 77.6% capacitance retention at a high scan rate of 500 mV/s. This electrode also achieves the lowest charge transfer resistance of 0.0063 Ω and excellent cycling stability (93.5% retention after 5,000 cycles) because of the improved ion conductivity by pathway formation and structural stability. The results of our work are expected to open a new route for manufacturing hybrid capacitor electrodes containing the C-CFO/ACNF electrode that can be easily prepared with a low-cost and simple process with enhanced electrochemical performance.

Repair of sports bone injury based on multifunctional nanomaterial particles

  • Dongbai Guo
    • Structural Engineering and Mechanics
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    • 제86권4호
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    • pp.487-501
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    • 2023
  • Nanoparticles have lower size and larger specific surface area, good stability and less toxic and side effects. In recent years, with the development of nanotechnology, its application range has become wider and wider, especially in the field of biomedicine, which has received more and more attention. Bone defect repair materials with high strength, high elasticity and high tissue affinity can be prepared by nanotechnology. The purpose of this paper was to study how to analyze and study the composite materials for sports bone injury based on multifunctional nanomaterials, and described the electrospinning method. In this paper, nano-sized zirconia (ZrO2) filled micro-sized hydroxyapatite (HAP) composites were prepared according to the mechanical properties of bone substitute materials in the process of human rehabilitation. Through material tensile and compression experiments, the performance parameters of ZrO2/HAP composites with different mass fraction ratios were analyzed, the influence of filling ZrO2 particles on the mechanical properties of HAP matrix materials was clarified, and the effect of ZrO2 mass fraction on the mechanical properties of matrix materials was analyzed. From the analysis of the compressive elastic modulus, when the mass fraction of ZrO2 was 15%, the compressive elastic modulus of the material was 1222 MPa, and when 45% was 1672 MPa. From the analysis of compression ratio stiffness, when the mass fraction of ZrO2 was 15%, the compression ratio stiffness was 658.07 MPa·cm3/g, and when it was 45%, the compression ratio stiffness is 943.51MPa·cm3/g. It can be seen that by increasing the mass fraction of ZrO2, the stiffness of the composite material can be effectively increased, and the ability of the material to resist deformation would be increased. Typically, the more stressed the bone substitute material, the greater the stiffness of the compression ratio. Different mass fractions of ZrO2/HAP filling materials can be selected to meet the mechanical performance requirements of sports bone injury, and it can also provide a reference for the selection of bone substitute materials for different patients.