• 제목/요약/키워드: Layered inorganic material

검색결과 15건 처리시간 0.022초

Efficient Transdermal Penetration and Improved Stability of L-Ascorbic Acid Encapsulated in an Inorganic Nanocapsule

  • Yang, Jae-Hun;Lee, Sun-Young;Han, Yang-Su;Park, Kyoung-Chan;Choy, Jin-Ho
    • Bulletin of the Korean Chemical Society
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    • 제24권4호
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    • pp.499-503
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    • 2003
  • Encapsulation of L-ascorbic acid (vitamin C) within a bio-compatible layered inorganic material was achieved by coprecipitation reaction, in which the layered inorganic lattice and its intercalate of vitamin C are simultaneously formed. The nano-meter sized powders of vitamin C intercalate thus prepared was again encapsulated with silica nano-sol to form a nanoporous shell structure. This ternary nanohybrid of vitamin Clayered inorganic core-$SiO_2$ shell exhibited an enhanced storage stability and a sustained releasing of vitamin C. Furthermore, the nano-encapsulation of vitamin C with inorganic mineral was very helpful in delivering vitamin C molecules into skin through stratum corneum, facilitating transdermal penetration of vitamin C in topical application.

Controlled Growth of Layered Silver Stearate on 2D and 3D Surfaces

  • Lee, Seung-Joon;Han, Sang-Woo;Kim, Kwan
    • ETRI Journal
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    • 제25권6호
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    • pp.517-522
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    • 2003
  • This investigation confirms that silver stearate consists of an infinite-sheet, two-dimensional, nonmolecular layered structure. Scanning electron microscopy, X-ray diffraction, and infrared spectroscopy reveal the following: plate-like morphology is identified from the SEM image, XRD peaks can be indexed to the (0k0) reflections of a layered structure, and infrared peaks show that alkyl chains are present in an all-trans conformational state with little or no significant gauche population. Based on these structural characteristics, we demonstrate that silver stearate, a prototype of layered organic-inorganic hybrid material, can be grown not only in a designed two-dimensional pattern but also in three-dimensionally ordered ways by using carboxyl-group terminated nanoparticles as a template.

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평판 유리로 봉인된 다층 무기 박막을 갖는 OLED 봉지 방법 (Encapsulation Method of OLED with Inorganic Multi-layered Thin Films Sealed with Flat Glass)

  • 박민경;주성후;양재웅;백경갑
    • 한국전기전자재료학회논문지
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    • 제24권11호
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    • pp.905-910
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    • 2011
  • To study encapsulation method for large-area organic light emitting diodes (OLEDs), red emitting OLEDs were fabricated, on which LiF and Al were deposited as inorganic protective films. And then the OLED was attached to flat glass by printing method using epoxy. In case of direct coating of epoxy onto OLED by printing method, luminance and current efficiency were remarkably decreased because of the damage to the OLED by epoxy. In case of depositing LiF and Al as inorganic protective films and then coating of epoxy onto OLED, luminance and current efficiency were not changed. OLED lifetime was more increased through inorganic protective films between OLED and flat glass than that without any encapsulation (8.8 h), i.e., 47 (LiF/Al/epoxy/glass), 62 (LiF/Al/LiF/epoxy/glass), and 84 h (LiF/Al/Al/epoxy/glass). The characteristics of OLED encapsulated with inorganic protective films (attached to flat glass) showed the possibility of application of protective films.

리튬 2차 전지용 양극활물질 LiMO2(M=Co,Ni)의 온도와 산소 분압에 따른 상전이 거동 (Phase Evolution in LiMO2(M=Co,Ni) Cathode Materials for Secondary Lithium Ion Batteries : Effect of Temperature and Oxygen Partial Pressure)

  • 황성주;김호진;정연욱;이준형;김정주
    • 한국세라믹학회지
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    • 제42권4호
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    • pp.292-297
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    • 2005
  • 출발원료로 $Li_{2}CO_{3},\;Co_{3}O_{4}$와 NiO를 사용하여 고상반응법으로 $LiMO_{2}(M=Co,Ni)$를 합성하였다. $LiCoO_{2}$는 저온$T=400^{\circ}C$에서 스피넬구조를 형성하고 온도가 증가$(T\ge600^{\circ}C)$되면 층상구조로 상전이 한다. 우리는 열처리 온도와 시간을 변수로 $LiCoO_{2}$의 스피넬구조에서 층상구조로의 상전이 거동을 관찰하였다. 스피넬구조에서 층상구조로의 상전이 속도는 스피넬상의 농도에 1차 비례하고 상전이하는 활성화 에너지는 약 6.76 kcal/mol이다. 출발원료로 스피넬구조인 $Co_{3}O_{4}$ 대신 암염 구조인 CoO를 사용하면 저온$(T=500^{\circ}C)$에서부터 층상구조가 형성되고 스피넬구조는 관찰되지 않는다. $LiNiO_{2}$는 온도가 증가함에 따라 층상구조에서 암염구조로 상전이 한다. $LiNiO_{2}$의 고온상인 암염구조는 저온에서 disordering/ordering에 의해 쉽게 층상구조로 되돌아가는 상전이 거동을 보인다. 반면 $LiCoO_{2}$에서는 층상구조에서 암염구조로의 상전이가 쉽게 일어나지 않는다. 이온반경비 $Li^+/Co^{3+}$ 보다 큰 것이 $LiCoO_{2}$의 층상구조가 고온에서 $LiNiO_{2}$의 층상구조보다 더 안정할 수 있는 이유 중의 하나로 생각된다.

박막 자심 인덕터의 제조와 특성 (Fabrication and Properties of Thin-Film Inductors with Magnetic Core)

  • 김현식;민복기;변우봉;김기욱;송재성;오영우
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1997년도 하계학술대회 논문집 C
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    • pp.1314-1316
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    • 1997
  • In this study, We fabricated thin film magnetic core inductors by using thin film manufacturing techniques such as photolithography and wet etching process. The inductors were prepared using multi-layered CoNbZr/Cu/CoNbZr. These devices are measured at high frequency range of $1\;MHz{\sim}1\;GHz$.

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Synthesis, Characterization and Magnetic Properties of a Novel Disulfonate-pillared Copper Hydroxide Cu2(OH)3(DS4)1/2, DS4 = 1,4-Butanedisulfonate

  • Park, Seong-Hun;Lee, Cheol-Eui
    • Bulletin of the Korean Chemical Society
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    • 제27권10호
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    • pp.1587-1592
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    • 2006
  • We report the preparation, structure and magnetic properties of a new pillared complex, copper(II) hydroxy-1,4-butanedisulfonate, $Cu_2(OH)_3(O_3SC_4H_8SO_3)_{1/2}$. The titled compound was obtained by anion exchange, using copper hydroxyl nitrate $(Cu_2(OH)_3NO_3)$ as the starting material. According to the XRD data, this compound exhibits a pillared layered structure with organic layers tilted between the copper hydroxide layers with a tilt angle of $21.8^{\circ}$. FTIR spectroscopy confirms total exchange of nitrate by the sulfonate and indicates that the sulfonate functions are linked to the copper(II) ions with each aliphatic chain bridging the adjacent hydroxide layers. According to the dc and ac magnetic measurements, the title compound is a metamagnet consisting of spin-canted antiferromagnetic layers, with a Neel temperature of 11.8 K.

저에너지 UV 경화형 무용제 소재 개발 (Solventless UV Curable Material for Low Cost System)

  • 김광인;이주헌;이현주;한학수
    • 한국수소및신에너지학회논문집
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    • 제28권1호
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    • pp.77-84
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    • 2017
  • In this study, Poly-urethane acrylate (PUA) was synthesized by the reaction between Polycaprolactonetriol (PCLT) and Isophorone dissocyanate (IPDI) and hybridized with inorganic materials. Tetraethylortho silicate (TEOS) and nano clay (Closite 20A) were used as inorganic particles. For the hybridization of TEOS with PUA, sol-gel method is used, in which TEOS is made into spherical particle in the firsthand. In the case of Nano clay, hybridization is carried out through the dispersion as Nano clay has a layered structure. The solution of PUA hybrid was made into a film after UV curing and its thermo and electrical properties were measured. The experimental analysis and result demonstrate that the PUA hybrid shows an improved thermal properties and lower dielectric constant than that of the non-hybrid PUA. The trend of improved properties was different depending on structure of inorganic materials.

리튬 2차 전지용 LiCo1-XMgxO2(x=0.03)의 결정구조, 전기전도도 및 전기화학적 특성 (Crystal Structures, Electrical Conductivities and Electrochemical Properties of LiCo1-XMgxO2(x=0.03) for Secondary Lithium Ion Batteries)

  • 김호진;정우창;정연욱;이준형;김정주
    • 한국세라믹학회지
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    • 제42권9호
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    • pp.602-606
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    • 2005
  • [ $LiCoO_{2}$ ] is the most common cathode electrode materials in Lithium-ion batteries. $LiCo_{0.97}Mg_{0.03}O_2$ was synthesized by the solid-state reaction method. We investigated crystal structures, electrical conductivities and electrochemical properties. The crystal structure of $LiCo_{0.97}Mg_{0.03}O_2$ was analyzed by X-ray powder diffraction and Rietveld refinement. The material showed a single phase of a layered structure with the space group R-3m. The lattice parameter(a, c) of $LiCo_{0.97}Mg_{0.03}O_2$ was larger than that of $LiCoO_2$. The electrical conductivity of sintered samples was measured by the Van der Pauw method. The electrical conductivities of $LiCoO_2$ and $LiCo_{0.97}Mg_{0.03}O_2$ were $2.11{\times}10^{-4}\;S/cm$ and $2.41{\times}10^{-1}\;S/cm$ at room temperature, respectively. On the basis of the Hall effect analysis, the increase in electrical conductivities of $LiCo_{0.97}Mg_{0.03}O_2$ is believed due to the increased carrier concentrations, while the carrier mobility was almost invariant. The electrochemical performance was investigated by coin cell test. $LiCo_{0.97}Mg_{0.03}O_2$ showed improved cycling performance as compared with $LiCoO_2$.

스핀코팅 하드마스크용 유-무기 하이브리드 소재에 관한 연구 (Organic-inorganic Hybrid Materials for Spin Coating Hardmask)

  • 유제정;황석호;김상범
    • 공업화학
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    • 제22권2호
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    • pp.230-234
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    • 2011
  • 반도체산업은 고집적화된 회로를 요구하면서 미세 패턴을 형성하기 위해 계속해서 발전해가고 있다. 이에 반도체 산업에서 미세 패턴을 형성하기 위하여 하드마스크를 도입하여 사용되고 있다. 일반적으로 하드마스크는 화학증기증착법(CVD) 공정을 이용하여 다층구조로 제작된다. 이에 본 연구에서는 스핀공정이 가능하고 단층의 하드마스크용 조성물을 제조하기 위하여 유-무기 하이브리드 중합체를 이용하여 그 특성에 대하여 연구하였다. Silanol로 처리된 siloxane 화합물과 acetonide 그룹을 가지는 propionic acid를 에스터화 반응을 통하여 얻은 유-무기 하이브리드 중합체에 가교제 및 첨가제들의 첨가로 광학적, 열적, 그리고 표면 특성이 조절된 하드마스크 막을 제조하였다. 또한 하드마스크 막과 감광층의 식각비를 비교하여 유-무기 소재의 하이브리드 중합체에 대해 미세패턴을 형성시킬 수 있는 하드마스크 막으로써의 유용성을 확인하였다.

An Overview of Self-Grown Nanostructured Electrode Materials in Electrochemical Supercapacitors

  • Shinde, Nanasaheb M.;Yun, Je Moon;Mane, Rajaram S.;Mathur, Sanjay;Kim, Kwang Ho
    • 한국세라믹학회지
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    • 제55권5호
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    • pp.407-418
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    • 2018
  • Increasing demand for portable and wireless electronic devices with high power and energy densities has inspired global research to investigate, in lieu of scarce rare-earth and expensive ruthenium oxide-like materials, abundant, cheap, easily producible, and chemically stable electrode materials. Several potential electrode materials, including carbon-based materials, metal oxides, metal chalcogenides, layered metal double hydroxides, metal nitrides, metal phosphides, and metal chlorides with above requirements, have been effectively and efficiently applied in electrochemical supercapacitor energy storage devices. The synthesis of self-grown, or in-situ, nanostructured electrode materials using chemical processes is well-known, wherein the base material itself produces the required phase of the product with a unique morphology, high surface area, and moderate electrical conductivity. This comprehensive review provides in-depth information on the use of self-grown electrode materials of different morphologies in electrochemical supercapacitor applications. The present limitations and future prospects, from an industrial application perspectives, of self-grown electrode materials in enhancing energy storage capacity are briefly elaborated.