• Title/Summary/Keyword: 나노 재료

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Improvement of Mechanical and Interfacial Properties of Carbon Fiber/Epoxy Composites by Adding Nano SiC Fillers (나노 SiC 입자의 형상에 따른 탄소섬유 강화 에폭시 복합재료의 기계적 및 계면 물성 변화 관찰)

  • Kwon, Dong-Jun;Wang, Zuo-Jia;Kim, Je-Jun;Jang, Key-Wook;Park, Joung-Man
    • Journal of Adhesion and Interface
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    • v.14 no.2
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    • pp.75-81
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    • 2013
  • Epoxy matrix based composites were fabricated by adding SiC nano fillers. The interfacial properties of composites were varied with different shapes of SiC nano fillers. To investigate the shape effects on the interfacial properties, beta and whisker type SiC nano fillers were used for this evaluation. The dispersion states of nano SiC-epoxy nanocomposites were evaluated by capacitance measurements. FE-SEM was used to observe the fracture surface of different structures of SiC-epoxy nanocomposites and to investigate for reinforcement effect. Interfacial properties between carbon fiber and SiC-epoxy nanocomposites were also evaluated by ILSS (interlaminar shear strength) and IFSS (interfacial shear strength) tests. The interfacial adhesion of beta type nanocomposites was better than whisker type.

Effect of Ozone Treatment of Carbon Nanotube on PTC/NTC Behaviors of High-Density Polyethylene Matrix Composites (오존처리에 따른 탄소나노튜브 강화 고밀도 폴리에틸렌 기지 복합재료의 PTC/NTC 특성)

  • Park, Soo-Jin;Seok, Su-Ja;Lee, Jae-Rock;Hong, Sung-Kwon
    • Polymer(Korea)
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    • v.29 no.1
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    • pp.32-35
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    • 2005
  • In this paper, the carbon nanotubes (CNTs) were ozonized and the positive temperature coefficient (PTC) behaviors of CNTs-filled high-density polyethylene (HDPE) conductive composites were studied. The results of element analysis (EA) and FT-IR indicate that the oxygen-containing functional groups on the CNTs surfaces, such as O-H, C-O, and C=O groups, were increased with the ozonization. Electrical resistivities of the CNTs/HDPE composites were measured by using a digital multimeter. The resistivity of the composites was increased abruptly near the crystalline melting temperature of the HDPE used as matrix, which could be attributed to the destruction of conductive network by the thermal expansion of HDPE. And, the PTC intensity of the CNTs/HDPE composites was increased with the increase of the ozone treatment time. It was probably due to the growing of maximum volume resistivity of the composites induced by the increased oxygen-containing functional groups in the CNTs surfaces.

Thermal and Surface Properties of PET/Nylon66/Clay Nanocomposites (PET/Nylon66/Clay 나노복합재료의 열적물성 및 표면특성)

  • Lee, Minho;Ku, Jahun;Min, Byung Hun;Kim, Jeong Ho
    • Applied Chemistry for Engineering
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    • v.22 no.5
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    • pp.490-494
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    • 2011
  • Nanocomposites of blends of polyethyleneterephthalate (PET) and polyamide66 (Nylon66) containing natural and organically modified montmorillonite clays (PM, $Cloisite^{(R)}$ 25A and 15A) were prepared by melt mixing. DSC results showed that the addition of clay changed the crystallization behavior of PET/Nylon66 nanocomposites. Clay C25A was observed to most significantly change the crystallization temperature than other clays in blends of PET and Nylon66, which may be caused by the difference in interaction with matrix polymers. AFM results also showed that the lowest value of surface roughness was observed for nanocomposites containing C25A indicating the smooth and relatively homogenous surface. Mechanical properties measurement showed the similar results. Contact angle was measured to study the difference in hydrophobicity. An increase in contact angle was observed for nanocomposites with C25A or C15A due to the increased hydrophobicity.

Electrospun Metal Oxide/Carbon Nanofiber Composite Electrode for Supercapacitor Application (전기방사를 이용한 슈퍼캐퍼시터용 금속산화물/탄소나노섬유 복합체)

  • Yang, Kap Seung;Kim, Bo Hye
    • Applied Chemistry for Engineering
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    • v.26 no.3
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    • pp.239-246
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    • 2015
  • The hybridization of carbon nano-materials enhances the efficiency of each function of the resulting structure or composites. Also, the addition of non-carbon elements to nanomaterials modifies the electrochemical properties. Electrodes combining porous carbon nanofibers (CNFs) and metal oxides benefit from the combination of the double-layer capacitance of the CNFs and the pseudocapacitive character associated with the surface redox-type reactions. Consequently, they demonstrate superior supercapacitor performance in terms of high capacitance, high energy/power efficiency and high rate capability. This paper presents a comprehensive review of the latest advances made in the development and application of various metal oxide/CNF composites (CNFCs) to supercapacitor electrodes.

Study on the Properties of Polystyrene and Styrenic Copolymer Containing Carbon Nanotubes and Nanoclay (탄소나노튜브와 나노클레이를 포함하는 폴리스티렌 및 스티렌계 공중합체 나노복합재료의 물성에 관한 연구)

  • Lee, Kyung Hoon;Kim, Young Doo;Lee, Minho;Min, Byong Hun;Kim, Jeong Ho
    • Applied Chemistry for Engineering
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    • v.20 no.5
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    • pp.493-499
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    • 2009
  • The properties of polystyrene and styrenic copolymer nanocomposites containing carbon nanotubes (CNT) and nanoclays were studied. Polystyrene and styrenic copolymer containing styrene and vinylbenzyl trimethylammonium chloride (SVTAC) were synthesized by emulsion polymerization. Polystyrene/CNT/clay and SVTAC/CNT/clay nanocomposites with various concentrations of CNT and different types of clay were prepared via mixing of polystyrene emulsion and clay. SVTAC/CNT nanocomposites showed a better electrical conductivity than PS/CNT nanocomposites. Nanocomposites with more surfactant during polymerization showed a better electrical conductivity than the ones with less surfactant. These indicated the positive effect of comonomer and surfactant on the electrical conductivity. Transmission electron microscopy (TEM) was used to analyze the state of CNT dispersion. TEM results showed that CNT loading, comonomer composition and amount of surfactant affected the final dispersion of CNT in nanocomposites. In order to confirm the effects of CNT loading, comonomer composition and the amount of surfactant on the thermal and dynamic mechanical properties, DSC and DMA analyses were conducted.

무전해 식각법으로 합성된 Si 나노와이어를 이용한 CMOS 인버터

  • Mun, Gyeong-Ju;Lee, Tae-Il;Lee, Sang-Hun;Hwang, Seong-Hwan;Myeong, Jae-Min
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2011.10a
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    • pp.22.2-22.2
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    • 2011
  • Si 나노와이어를 합성하는 다양한 방법들 중에서 Si 기판을 나노와이어 형태로 제작하는 무전해 식각법은 쉽고 간단하기 때문에 최근 많은 연구가 진행되고 있다. 무전해 식각법을 이용한 Si 나노와이어는 p 또는 n형의 전기적 특성을 갖는 Si 기판의 도핑농도에 따라 원하는 전기적 특성을 갖는 나노와이어를 얻을 수 있을 것이라는 기대가 있었지만 n형으로 제작된 나노와이어의 경우 식각에 의한 표면의 거칠기 때문에 그 특성을 나타내지 못하는 문제점을 가지고 있다. 본 연구에서는 무전해 식각법을 이용하여 p와 n형 나노와이어를 합성하고 field-effect transistors (FETs) 소자를 제작하여 각각의 특성을 구현하였다. 나노와이어와 절연막 사이의 계면 결함을 최소화하기 위하여 poly-4-vinylphenol (PVP) 고분자 절연막에 나노와이어를 삽입시킨 형태로 소자를 제작하였고, 특히 n형 나노와이어의 표면을 보다 평평하게 하기 위하여 열처리를 진행 하였다. 이렇게 각각의 특성이 구현된 나노와이어를 이용하여 soft-lithography 공정을 통해 complementary metal-oxide semiconductor (CMOS) 구조의 인버터 소자를 제작하였으며 그 전기적 특성을 평가하였다.

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printing 방식을 이용한 은 나노 잉크 직접 패터닝 기술

  • O, Sang-Cheol;Yang, Gi-Yeon;Han, Gang-Su;Lee, Heon
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.63-63
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    • 2010
  • 나노 구조를 제작은 나노 기술을 기반으로 하는 electronics, optoelectronics, sensing, ultra display등의 여러 분야에서 이용되고 있다. 특히 나노 구조를 갖는 금속 패터닝의 경우 전자빔 리소 그래피 (electron beam lithography)나 레이저 패터닝(laser patterning)과 같은 방법들이 많이 사용되고 있다. 하지만 공정이 복잡하고 그로 인해 공정 비용이 많이 든다는 단점이 있었다. 나노 임프린트 리소그래피 기술은 master mold 표면의 나노 패턴을 가열, 가압 공정을 통해 기판 위의 고분자 레지스트 층으로 전사하는 기술이다. 이 기술은 간단한 공정을 통해 나노 패턴을 형성할 수 있는 기술이기 때용에 차세대 나노 패터닝 기술로써 각광받고 있다. 특히 이 기술은 레지스트 층과의 직접적인 접촉을 통해 나노 패턴을 형성하기 때문에 다양한 방법을 통해 기능성 나노 패턴을 직접적으로 형성할 수 있는 가능성을 지니고 있다. 본 연구는 novel meta1의 하나인 Ag 입자가 첨가된 ink solution를 master mold로부터 복제한 PDMS mold를 이용하여 다양한 구조의 나노 패턴을 만드는 방법에 대한 연구이다.

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Molten salt method에 의한 $BaTiO_3$ 나노 입자 합성

  • Park, Guk-Hyo;Sin, Hyo-Sun;Yeo, Dong-Hun;Hong, Yeon-U;Kim, Hyeong-Sun
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2010.06a
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    • pp.273-273
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    • 2010
  • 최근 들어 에너지 개발과 환경문제의 해결방안으로 열전발전 및 열전냉각에 많은 관심과 연구가 진행되고 있다. 열전소재의 특성 향상을 위해 열전성능지수를 높이기 위하여 나노 입자상을 열전소재 내에 분산하고자 하는 연구가 진행되었다. Grain 내에 나노 입자를 분산하기 위해서는 원료 입자에서부터 나노 입자가 열전소재 내에 분산되어야 하며 이것은 산화물 나노입자의 코어-쉘 형성으로부터 가능하다. 이 과정에서 나노 입자를 열전소재 내에 코어로 분산하기위한 나노입자의 합성 및 제어가 필수적이다. 본 연구에서는 용융염법을 이용한 BaTiO3 나노 일자를 합성하고 이들을 용매에 분산하는 것을 목표로 하였다. 염으로는 KCl, LiCl, NaCl 및 이들의 혼합 염을 사용하였으며 염의 청가량, 염의 종류, 반응온도 및 반응시간의 변화에 따라 BaTiO3 나노 입자를 합성하였다. 또한, 합성된 나노 입자의 입자크기와 응집 제어를 통해 나노입자들의 분산 상태를 확인해 보았다. 이 결과는 SEM, TEM, 입도측정기, XRD등의 측정 결과를 통하여 확인하고자 하였다.

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Preparation and Properties of Polystyrene/Graphene Nanofiller Nanocomposites via Latex Technology (라텍스 기법에 의한 폴리스티렌/그래핀 나노필러 나노복합재료의 제조 및 물성)

  • Yeom, Hyo Yeol;Na, Hyo Yeol;Chung, Dae-Won;Lee, Seong Jae
    • Polymer(Korea)
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    • v.39 no.3
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    • pp.468-474
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    • 2015
  • Electrically conductive polymer nanocomposites were prepared by the inclusion of graphene-based nanofillers. Graphene oxide (GO) and reduced graphene oxide wrapped by poly(styrene sulfonate) (PSS-RGO) were used as nanofillers to make good dispersion with the aqueous dispersion of polystyrene (PS) particles. GO sheets were synthesized by the modified Hummers' method from graphite, and PSS-RGO sheets were prepared by the reduction of GO-dispersed PSS solution with hydrazine monohydrate. Morphology and properties of PS/GO and PS/PSS-RGO nanocomposites via latex technology were investigated. Both nanofillers showed well dispersed morphology in PS matrix. Rheological and electrical percolation thresholds were 0.28 and 0.51 wt% for GO, and 0.50 and 1.01 wt% for PSS-RGO respectively. It is speculated that PS/GO nanocomposites showed better conductivity than PS/PSS-RGO counterparts due to the partial recovery of GO by thermal reduction during molding.

Measurement of Optical Properties of Nano-Cement Using THz Electromagnetic Waves (THz 전자기파를 이용한 나노시멘트 광학물성 측정)

  • Kim, Heonyoung;Kang, Donghoon;Oh, Seung Jae;Joo, Chulmin
    • Journal of the Korean Society for Nondestructive Testing
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    • v.36 no.5
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    • pp.363-369
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    • 2016
  • Enhancing mechanical strength of concrete has been fascinated using carbon-based nanomaterials such as CNT and graphene. The key to improving strength is a dispersion of nanomaterials. A novel method is required to investigate the dispersion inner concrete nondestructively. In this study, the optical optical properties such as refractive index and absorption coefficient are measured in nano-cement mortar specimens containing MWCNT and GO using THz electro-magnetic waves. From the results, the properties of nano-cement mortar are confirmed to be 1.0% to 2.5% higher in refractive index, and -14% to 28% higher in absorption coefficient than those of cement mortar at the average values. Using these characteristics, visualizing the dispersion of nano-concrete structures seems possible in future.