• 제목/요약/키워드: organic-inorganic hybrid materials

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유기 염료-무기 실리카 하이브리드 안료의 제조와 분산잉크로서 응용 (Preparation of Organic Dye-Inorganic Silica Hybrid Pigment and It's Application for Inkjet Dispersion Ink)

  • 전영민;김종규;공명선
    • 한국재료학회지
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    • 제16권7호
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    • pp.422-429
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    • 2006
  • Studies were performed on preparation of organic-inorganic hybrid silica dye in a dispersing ink system. The silica was subjected to surface modification using 3-aminopropyltrimethoxysilane (APTMS) in order to promote the chemical reactivity of the raw silica. On the surfaces of the aminosilane-functionalised silica, red vinylsulfone-containing azo dye was adsorbed. The dye was found to have chemically reacted with the aminosilane-grafted silica surface, which was proven by FT-IR spectra. Studies on morphology and microstructure were performed employing scanning electron microscopy. The SEM micrographs and particle size distributions showed that a homogeneous pigment can be obtained employing silica as a core. Particle size distribution was also examined using the technique of dynamic light scattering. The ensuing pigment was subjected to various physicochemical evaluation such as inkjet property, storage stability, color change as inkjet ink using printer, spectrophotometric, microscopic techniques. Studies on hybrid dyes from the silica surface demonstrated that, in general, stable pigments for inkjet dispersion ink were obtained.

고분자 전해질 연료전지용 유.무기 복합막의 연구개발동향 (Research Trend of Organic/Inorganic Composite Membrane for Polymer Electrolyte Membrane Fuel Cell)

  • 김득주;남상용
    • 멤브레인
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    • 제22권3호
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    • pp.155-170
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    • 2012
  • 연료전지는 석유엔진과 비교하여 높은 전류밀도와 효율성, 그리고 친환경적이기 때문에 21세기 들어 대체 발전시스템으로서 각광받아왔다. 연료전지 시스템에서 고분자 전해질 막은 핵심부품으로써 현재 Nafion막이 연료전지시스템에서 사용 중이지만 높은 제조단가와 고온에서 낮은 전도도를 가지는 단점을 가지고 있다. 그러므로 많은 학자들이 낮은 제조단가, 높은 물리적 특성들을 달성하기 위한 연구를 진행하여 왔으며 연료전지의 상용화와 동시에 고성능의 연료전지의 개발을 위하여 많은 방법들이 개발되어 왔다. 그중, 유무기 복합막은 유기물과 무기물의 물성을 균일하게 조합할 수 있으므로 잠재성을 가지고 있는 제조방법이다. 본고에서는 다양한 무기물이 사용되어 제조된 유무기 복합막의 연구동향에 대하여 조사하였다.

Staggered and Inverted Staggered Type Organic-Inorganic Hybrid TFTs with ZnO Channel Layer Deposited by Atomic Layer Deposition

  • Gong, Su-Cheol;Ryu, Sang-Ouk;Bang, Seok-Hwan;Jung, Woo-Ho;Jeon, Hyeong-Tag;Kim, Hyun-Chul;Choi, Young-Jun;Park, Hyung-Ho;Chang, Ho-Jung
    • 마이크로전자및패키징학회지
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    • 제16권4호
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    • pp.17-22
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    • 2009
  • Two different organic-inorganic hybrid thin film transistors (OITFTs) with the structures of glass/ITO/ZnO/PMMA/Al (staggered structure) and glass/ITO/PMMA/ZnO/Al (inverted staggered structure), were fabricated and their electrical and structural properties were compared. The ZnO thin films used as active channel layers were deposited by the atomic layer deposition (ALD) method at a temperature of $100^{\circ}C$. To investigate the effect of the substrates on their properties, the ZnO films were deposited on bare glass, PMMA/glass and ITO/glass substrates and their crystal properties and surface morphologies were analyzed. The structural properties of the ZnO films varied with the substrate conditions. The ZnO film deposited on the ITO/glass substrate showed better crystallinity and morphologies, such as a higher preferred c-axis orientation, lower FWHM value and larger particle size compared with the one deposited on the PMMA/glass substrate. The field effect mobility ($\mu$), threshold voltage ($V_T$) and $I_{on/off}$ switching ratio for the OITFT with the staggered structure were about $0.61\;cm^2/V{\cdot}s$, 5.5 V and $10^2$, whereas those of the OITFT with the inverted staggered structure were found to be $0.31\;cm^2/V{\cdot}s$, 6.8 V and 10, respectively. The improved electrical properties for the staggered OITFTs may originate from the improved crystal properties and larger particle size of the ZnO active layer.

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내열성이 우수한 유-무기 하이브리드 방염제에 관한 연구 (Study on the Excellent Heat Resistance Organic-Inorganic Hybrid Flame Retardant)

  • 조경래;이성은;이춘하;김시국
    • 한국화재소방학회논문지
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    • 제30권3호
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    • pp.67-72
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    • 2016
  • 본 연구에서는 최근 사회적으로 이슈가 되고 있는 다중이용시설의 화재 시 건축자재로 사용되는 내장재의 가연성으로 인한 화재확산 및 연소 시 유독가스 발생으로 인한 인명피해를 사전 예방하기 위한 방염제를 개발하고자 한다. 유-무기 하이브리드 소재로 실리카 졸에 방염성을 부여할 수 있는 방염 소재를 적용하여 졸-겔법에 의한 방염 접착제 또는 코팅제를 제조하였다. 기존의 방염소재는 물론 비방염소재의 방염화를 비할로겐 방법으로 적용가능하며, 기존의 접착 코팅제의 기본 물성과 특히 내열성능을 높여 화재 시 내열성 및 내구성을 향상시킬 수 있기 때문에 건축자재의 비할로겐 방염화를 확대하고자 한다.

실세스키옥세인을 사용한 폴리스티렌 나노복합재료 (Organic-Inorganic Nanocomposites of Polystyrene with Polyhedral Oligomeric Silsesquioxane)

  • 김경민
    • 폴리머
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    • 제30권5호
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    • pp.380-384
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    • 2006
  • 구조가 제어된 polyhedral oligomeric silsesquioxane (POSS)을 무기물로 폴리스티렌(PS)을 유기고분자로 사용하여 유기용매에 가역적으로 용해될 수 있는 새로운 유기-무기 나노복합재료를 합성하였다. 페닐기가 도입된 POSS와 PS와의 복합화에서는 다양한 중량비에서 투명하고, 균일한 복합재료를 얻을 수 있었다. 반면에 사이클로헥실기가 도입된 POSS와 PS와의 복합화에서는 불투명하구 불균일한 복합체를 얻었다. 따라서 페닐기가 도입된 POSS와 PS간의 물리적인 결합(physical bonding), 즉 aromatic(${\pi}-{\pi}$) 결합을 통하여 지금까지 유기물질과 무기물질을 복합화하기 위해 주로 사용되었던 화학결합(chemical bonding) 없이도 두 성분이 서로 균일하게 나노 크기로 혼성된 새로운 나노복합재료를 제조할 수 있었다. 또한 POSS를 이용해 얻어진 나노복합체는 기존의 솔-젤(sol-gel)방법으로 얻어진 복합체와는 달리, 용매에 다시 녹고 물리적인 결합을 이용했기 때문에 가역적으로 반복해서 복합재료를 만들 수 있는 장점을 가지고 있었다. 합성되어진 복합재료의 균일성과 분산성은 시차 주사열분석기(DSC)와 주사전자현미경(SEM) 및 X-선 회절분석기(XRD)에 의해 확인하였다.

Layered Silicate-Polymer Nanocomposites

  • Jeong, Han-Mo
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2003년도 춘계학술발표강연 및 논문개요집
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    • pp.18-18
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    • 2003
  • Natural clays are composed of oxide layers whose thickness is about 1nm and cations existing between the layers. A number of these layers makes primary particles with a height of about 8∼10nm and these primary particles make aggregates with a size of about 0.1∼10$\mu\textrm{m}$. When layered silicate was made to be organophilic, by exchanging the interlayer cations with organic cationic molecules, the matrix polymer can penetrate between the layers to give a nanocomposite, where 1nm-scal clay layers exist separately in a continuous polymer matrix. These nanostructured hybrid organic-inorganic composites have attracted the great interest of researchers over the last 10 years. They exhibit improved performance properties compared with conventional composites, because their unique phase morphology by layer intercalation or exfoliation maximizes interfacial contact between the organic and inorganic phases and enhances interfacial properties. Since the advent of nylon-6/montmorillonite nanocomposite developed by Toyota Motor Co., the studies on layered silicate-polymer nanocomposites have been successfully extended to other polymer systems. They greatly improved the thermal, mechanical, barrier, and even the flame-retardant properties of the polymers.

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Microstructures and Thermal Properties of Polycaprolactone/Epoxy Resin/SiO2 Hybrids

  • He, Lihua;Liu, Pinggui;Ding, Heyan
    • 접착 및 계면
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    • 제7권4호
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    • pp.32-38
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    • 2006
  • A series of organic-inorganic hybrids, PCL/EP/$SiO_2$, involving epoxy resin and triethoxysilane-terminated polycaprolactone elastomer (PCL-TESi) were prepared via polymerization of diglycidyl ether of bisphenol A (DGEBA) with amine curing agent KB-2 and sol-gel process of PCL-TESi. The curing reactions were started from the initially homogeneous mixture of DGEBA, KB-2 and the PCL-TESi. The organicinorganic hybrids containing up to 4.95% (wt) of $SiO_2$ were obtained and characterized by FT-IR, transmission electron microscopy (TEM), differential scanning calorimetry (DSC) and thermogravimetry analysis (TGA). It was experimentally shown that the swelling property in toluene, morphologies and thermal properties of the resulting hybrids were quite dependent on the contents of $SiO_2$. The crosslink network density decreases with increasing of the PCL-TESi. And in TEM, the phase separated morphology of these hybrids was found, which resulted from the coagulation of Si-O-Si networks resulting from $-Si(OC_2H_5)_3$ of PCL-TESi self-curing by hydrolytic silanol condensation, with the advancement of the curing reaction in the modified epoxy resin systems. Meanwhile, the change of the $SiO_2$ content made the morphologies changed from aggregated particles of Si-O-Si in the hybrid to nanocluster of interconnected Si-O-Si particles, then to aggregated Si-O-Si dispersing in the continuous cured epoxy phase again, and last to co-continuous interpenetrating network. The glass transition behavior of the hybrid material was cooperative motion of large chain segments, which were hindered by the inorganic Si-O-Si network. And in TG analysis, the characteristic temperature at 5% of weight loss was evidently increased from $120.5^{\circ}C$ of pure cured epoxy to $277.6^{\circ}C$ of 3.84% (wt) of $SiO_2$ modified epoxy due to the existence of Si-O-Si when PCL-TESi was added in the hybrid.

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