• 제목/요약/키워드: Fe nanoparticle

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Transparent Conductive Films Composite with Copper Nanoparticle/Graphene Oxide Fabricated by dip Process and Electrospinning

  • 김진운;김경민;김용호;김수용;조수지;이응상;석중현
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2014년도 제46회 동계 정기학술대회 초록집
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    • pp.382.2-382.2
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    • 2014
  • We explain a method to fabricate multi-layered transparent conductive films (TCF) using graphene oxide (GO), copper powder and polyurethane (PU) solution. The flexible graphene nanosheets (GNSs) serve as nanoscale connection between conductive copper nanoparticles (CuNps) and PU nanofibers, resulting in a highly flexible TCF. To fabricate conductive films with high transmittance, polyurethane (PU) nanofibers were used for a conductive network consisting of CuNps and GNSs (CuNps-GNSs). In this experiment, copper powder and graphene oxides were mixed in deionized water with the ultrasonication for 2 h. NaBH4 solution is used as a reduction agents of CuNps and GNSs (CuNps-GNSs) under a nitrogen atmosphere in the oil bath at 100% for 24 h to mixed. The purified and dispersed CuNp-GNS were obtained in deionized water, and diluted to a 10wt.% based on the contents of GNSs. Polyurethane (PU) nanofibers on a PET substrate were formed by electrospinning method. PET slides coated with the PU nanofibers were immersed into CuNp-GNS solution for several second, rinsed briefly in deionized water, and dried to obtain self-assembled CuNp-GNS/PU films. The morphology of the multi-layered films were characterized with a field emission scanning electron microscope (FE-SEM, Hitachi S-4700) and atomic force microscope (AFM, PSIA XE-100). The electrical property was analysed by the I-V measurement system and the optical property was measured by the UV/VIS spectroscopy.

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나노 크기의 마그네타이트 입자를 이용한 자성 키토산 미소구체의 제조 (Preparation of Magnetic Chitosan Microsphere Particles)

  • 고상길;조준희;안양규;송기창;최은정
    • 한국자기학회지
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    • 제16권1호
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    • pp.66-70
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    • 2006
  • 본 연구에서는 음향화학법을 적용한 공침 기술을 이용, 균일한 마그네타이트 나노 입자를 합성하였다 이 방법을 통하여 합성된 마그네타이트 나노 입자를 이용하여 마그네타이트 나노 입자들이 균일하게 분산된 마이크로미터 크기의 키토산 미소구체를 제조하였다. 이 연구의 목적은 생분해성, 저독성, 생체친화성의 특징을 갖고 있는 키토산과 균일한 마그네타이트 나노 입자를 이용하여 자기공명 영상의 조영제와 혈관 폐색을 위한 혈관 색전물질 등에 활용 가능성 있는 초상자성 특성을 갖는 미소구체를 제조하는 것이다. 우리는 $1\%$ 아세트산 용액을 사용하여 키토산 용액을 제조, 마그네타이트 나노 입자들을 분산시켰다. 키토산이 알칼리 수용액에서 겔화되는 성질을 이용하여, 마그네타이트 나노 입자들이 분산된 키토산 용액을 알칼리 용액에 분무하여 초상자성 특성을 갖는 자성 키토산 미소구체를 제조하였다.

Fruits Extracts Mediated Synthesis of Zinc Oxide Nanoparticles Using Rubus coreanus and its Catalytic Activity for Degradation of Industrial Dye

  • Rupa, Esrat Jahan;Gokulanathan, Anandapadmanaban;Ahn, Jong-Chan;Mathiyalagan, Ramya;Markus, Josua;Elizabeth, Jimenez Perez Zuly;Soshnikova, Veronika;Kim, Yeon-Ju;Yang, Deok-Chun
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2018년도 춘계학술발표회
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    • pp.93-93
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    • 2018
  • This study disclosed the aqueous fruits extract of Rubus coreanus as a sustainable agent for the synthesis of Rubus coreanus zinc oxide nanoparticle (Rc-ZnO Nps) using as a reducing and capping precursor for co-precipitation method. The development of Rc-ZnO was assured by white precipitated powder and analyzed by spectroscopic and analytical instruments. The UV-visible (UV-Vis) studies indicate the maximum absorbance at 357nm which confirmed the formation of ZnO Nps and the purity, functional group and monodispersity were assured by field emission transmission electron microscopy (FE-TEM), Fourier Transform Infrared (FTIR) Spectroscopy and dynamic light scattering (DLS). The X-ray powder diffraction (XRD) data revealed the Nps is 23.16 nm in size, crystalline in nature and possess hexagonal wurtzite structure. The Rc-ZnO Nps were subjected for catalytic studies. The Malachite Green dye was degraded by Rc- ZnO NPs in both dark and light (100 W tungsten) conditions and it degraded about 90% at 4 hours observation in both cases. The biodegradable, low cost Rc-ZnO NPs can be a better weapon for waste water treatment.

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Ultralow-n SiO2 Thin Films Synthesized Using Organic Nanoparticles Template

  • Dung, Mai Xuan;Lee, June-Key;Soun, Woo-Sik;Jeong, Hyun-Dam
    • Bulletin of the Korean Chemical Society
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    • 제31권12호
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    • pp.3593-3599
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    • 2010
  • In an original effort, this lab attempted to employ polystyrene nanoparticles as a template for the synthesis of ordered and highly porous macroporous $SiO_2$ thin films, utilizing their high combustion temperature and narrow size distribution. However, polystyrene nanoparticle thin films were not obtained due to the low interaction between individual particles and between the particle and silicon substrate. However, polystyrene-polyacrylic acid (PS-AA) colloidal particles of a core-shell structure were synthesized by a one-pot miniemulsion polymerization approach, with hydrophilic polyacrylic acid tails on the particle surface that improved interaction between individual particles and between the particle and silicon substrate. The PS-AA thin films were spin-coated in the thickness ranges from monolayer to approximately $1.0\;{\mu}m$. Using the PS-AA thin films as sacrificial templates, macroporous $SiO_2$ thin films were successfully synthesized by vapor deposition or conventional solution sol-gel infiltration methods. Inspection with field emission scanning electron microscopy (FE-SEM) showed that the macroporous $SiO_2$ thin films consist of interconnected air balls (~100 nm). Typical macroporous $SiO_2$ thin films showed ultralow refractive indices ranging from 1.098 to 1.138 at 633 nm, according to the infiltration conditions, which were confirmed by spectroscopy ellipsometry (SE) measurements. This research shows how the synthetic control of the macromolecule such as hydrophilic polystyrene nanopaticles and silicate sol precursors innovates the optical properties and processabilities for actual applications.

Synthesis and Characterization of Magnetic Nanoparticles and Its Application in Lipase Immobilization

  • Xu, Jiakun;Ju, Caixia;Sheng, Jun;Wang, Fang;Zhang, Quan;Sun, Guolong;Sun, Mi
    • Bulletin of the Korean Chemical Society
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    • 제34권8호
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    • pp.2408-2412
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    • 2013
  • We demonstrate herein the synthesis and modification of magnetic nanoparticles and its use in the immobilization of the lipase. Magnetic $Fe_3O_4$ nanoparticles (MNPs) were prepared by simple co-precipitation method in aqueous medium and then subsequently modified with tetraethyl orthosilicate (TEOS) and 3-aminopropyl triethylenesilane (APTES). Silanization magnetic nanoparticles (SMNP) and amino magnetic nanomicrosphere (AMNP) were synthesized successfully. The morphology, structure, magnetic property and chemical composition of the synthetic MNP and its derivatives were characterized using transmission electron microscopy (TEM), Fourier transform infrared spectroscopy (FT-IR) analysis, X-ray diffraction, superconducting quantum interference device (SQUID) and thermogravimetric analyses (TGA). All of these three nanoparticles exhibited good crystallization performance, apparent superparamagnetism, and the saturation magnetization of MNP, SMNP, AMNP were 47.9 emu/g, 33.0 emu/g and 19.5 emu/g, respectively. The amino content was 5.66%. The AMNP was used to immobilize lipase, and the maximum adsorption capacity of the protein was 26.3 mg/g. The maximum maintained activity (88 percent) was achieved while the amount of immobilized lipase was 23.7 mg $g^{-1}$. Immobilization of enzyme on the magnetic nanoparticles can facilitate the isolation of reaction products from reaction mixture and thus lowers the cost of enzyme application.

역-마이셀 공정에 의한 CoAl2O4 무기안료 나노 분말의 합성 및 특성 (Synthesis and Characterization of CoAl2O4 Inorganic Pigment Nanoparticles by a Reverse Micelle Processing)

  • 손정훈;배동식
    • 한국재료학회지
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    • 제24권7호
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    • pp.370-374
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    • 2014
  • Inorganic pigments have high thermal stability and chemical resistance at high temperature. For these reasons, they are used in clay, paints, plastic, polymers, colored glass and ceramics. $CoAl_2O_4$ nano-powder was synthesized by reverse-micelle processing the mixed precursor(consisting of $Co(NO_3)_2$ and $Al(NO_3)_3$). The $CoAl_2O_4$ was prepared by mixing an aqueous solution at a Co:Al molar ratio of 1:2. The average particle size, and the particle-size distribution, of the powders synthesized by heat treatment (at 900; 1,000; 1,100; and $1,200^{\circ}C$ for 2h) were in the range of 10-20 nm and narrow, respectively. The average size of the synthesized nano-particles increased with increasing water-to-surfactant molar ratio. The synthesized $CoAl_2O_4$ powders were characterized by X-ray diffraction analysis(XRD), field-emission scanning electron microscopy(FE-SEM) and color spectrophotometry. The intensity of X-ray diffraction of the synthesized $CoAl_2O_4$ powder, increased with increasing heating temperature. As the heating temperature increased, crystal-size of the synthesized powder particles increased. As the R-value(water/surfactant) and heating temperature increased, the color of the inorganic pigments changed from dark blue-green to cerulean blue.

X-선 광전자분광법을 이용한 MgO/Mg 표면에 증착된 Pd의 분석 (X-Ray Photoelectron Spectroscopy Studies of Pd Supported MgO/Mg)

  • 태위승;서현욱;김광대;김영독
    • 한국진공학회지
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    • 제18권4호
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    • pp.281-287
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    • 2009
  • 본 연구에서는 고진공 조건에서 열기화 증착 방법으로 산화막으로 덮인 Mg 리본(MgO/Mg) 위에 Pd을 증착하였다. 고진공 속에서 만든 시료의 전자구조를 in-situ X-선 광전자 분광법 (XPS)을 통하여 분석하였고, 분석 후, FE-SEM을 통해 증착량의 증가에 따른 표면구조의 변화를 확인하였다. Pd 증착량이 1 나노미터 (nm) 이하인 경우에는 증착량 증가에 따른 Pd 나노입자 크기의 증가를 확인하였으며, Pd을 1 nm 이상의 두께로 증착시킨 경우에는 Pd 입자들의 뭉침에 의해 얇은 필름이 형성됨을 관찰하였다. Pd과 기판사이의 전하이동에 의하여 산화물/금속 계면의 Pd 원자들은 부분적으로 양전하를 띔을 확인하였다.

Ag가 코팅된 ZnO nanorod 구조의 광학적 특성 연구

  • 고영환;이동훈;유재수
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2010년도 제39회 하계학술대회 초록집
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    • pp.209-209
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    • 2010
  • 금(Au) 또는 은(Ag) 금속 나노입자의 모양, 크기, 분포 상태를 조절하여 가시광선과 적외선, 자외선 영역에서 강한 표면 플라즈몬 효과을 이용할 수 있는데, 최근 이러한 금속 나노입자의 표면플라즈몬 효과를 이용하여 태양광 소자의 성능을 향상시키는 연구가 매우 활발하게 이루어지고 있다. 그 중, 높은 효율과 낮은 제작비용 그리고 간단한 공정과정의 장점을 갖고 있어서 크게 주목 받고 있는 염료감응태양전지에서도 금(Au) 또는 은(Ag) 금속 나노입자을 이용하기 위한 많은 연구가 진행되고 있다. 그 예로, Au가 코팅된 $TiO_2$ 기반의 염료감응태양전지구조를 제작하여, 입사된 빛이 표면플라즈몬 효과를 통해, Au에서 여기된 전자들이 Au/$TiO_2$ 사에의 schottky 장벽을 통과하여 $TiO_2$의 전도대 전자들의 밀도가 증가하여, charge carrier generating rate을 높여 소자의 광변환 효율의 향상을 증명하였다. 이에 본 연구에서는, $TiO_2$보다 높은 전자 이동도(mobility)와 직선통로(direct path way)의 장점을 갖고 있는 ZnO nanorod에서의 charge carrier generating rate을 높일 수 있도록, 비교적 가격이 저렴한 Ag nanoparticle을 코팅하였다. ZnO nanorod 제작은 낮은 온도에서 간단하게 성장시킬 수 있는 hydrothermal 방법을 이용하였다. 기판위에 RF magnetron 스퍼터를 이용하여 AZO seed layer를 증착한 후, zinc nitrate $Zn(NO_3)_2{\cdot}6H_2O$과 hexamethylentetramines (HMT)으로 혼합된 용액을 사용해 ZnO nanorods를 성장시켰다. 이 후, Ag를 형성할 수 있도록 열증기증착법을 이용하여 코팅하였다. Ag의 증착시간에 따른 ZnO nanorods에서의 코팅된 구조와 형태를 관찰하기 위해 field emission scanning electron microscopy (FE-SEM)을 이용하여 측정하였으며, 결정성을 조사하기 위해 X-ray diffraction (XRD)을 이용하여 분석하였다. 또한 입사된 빛에 의해, 여기된 ZnO 전도대 전자들이 다시 재결합을 통해 방출되는 photoluminescence 양을 scanning PL 장비를 통해 측정하여 Ag가 코팅된 ZnO nanorod의 광특성을 분석하였다.

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Rich Se Nanoparticles Modified Mo-W18O49 as Enhanced Electrocatalyst for Hydrogen Evolution Reaction

  • Wang, Jun Hui;Tang, Jia-Yao;Fan, Jia-Yi;Meng, Ze-Da;Zhu, Lei;Oh, Won-Chun
    • 한국재료학회지
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    • 제32권2호
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    • pp.57-65
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    • 2022
  • Herein a rich, Se-nanoparticle modified Mo-W18O49 nanocomposite as efficient hydrogen evolution reaction catalyst is reported via hydrothermal synthesized process. In this work, Na2SeSO3 solution and selenium powder are used as Se precursor material. The structure and composition of the nanocomposites are characterized by X-ray diffraction (XRD), high-resolution field emission scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), EDX spectrum analysis and the corresponding element mapping. The improved electrochemical properties are studied by current density, and EIS analysis. The as-prepared Se modified Mo-W18O49 synthesized via Na2SeSO3 is investigated by FE-SEM analysis and found to exhibit spherical particles combined with nanosheets. This special morphology effectively improves the charge separation and transfer efficiency, resulting in enhanced photoelectric behavior compared with that of pure Mo-W18O49. The nanomaterial obtained via Na2SeSO3 solution demonstrates a high HER activity and low overpotential of -0.34 V, allowing it to deliver a current density of 10 mA cm-2.

K-Birnessite를 이용한 Li-Mn Spinel 나노입자 합성 및 전기화학적 특성 평가 (Hydrothermal Synthesis of Li-Mn Spinel Nanoparticle from K-Birnessite and Its Electrochemical Characteristics)

  • 김준일;이재원;박선민;노광철;선양국
    • 공업화학
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    • 제21권5호
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    • pp.590-592
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    • 2010
  • 본 연구에서는 리튬 2차 전지의 양극물질 중 하나인 Li-Mn spinel ($LiMn_2O_4$)을 합성하기 위해 전구체로 K-Birnessite ($K_xMnO_2{\cdot}{yH_2O}$)를 이용하였다. K-Birnessite는 과망간산칼륨[$KMnO_4$]과 우레아[$CO(NH_2)_2$]를 사용하여 수열합성법으로 합성하였고, K-Birnessite와 LiOH를 수열 반응시켜 Li-Mn spinel 나노입자를 제조하였다. 리튬함량에 따른 Li-Mn spinel 의 구조 및 형상 변화와 전기화학적 특성에 대한 경향성을 알아보기 위해 LiOH와 K-Birnessite의 몰 비를 조절하여 Li-Mn spinel를 합성하였다. 합성된 분말은 X-ray diffraction (XRD), field emission scanning electron microscopy (FE-SEM), energy-dispersive X-ray spectroscopy (EDS), thermogravimetry (TG)를 이용하여 물질의 구조 및 형상을 분석하였고, 정전류법으로 양극재의 용량과 율 특성을 비교 분석하였다. 그 결과 LiOH/K-Birnessite의 몰 비가 0.8일 때 가장 큰 용량($117\;mAhg^{-1}$)을 나타냈고, 몰 비가 증가할수록 Li-Mn spinel 중 리튬함량이 증가하여 용량은 감소하였으나, 입자크기는 작아져서 율 특성은 점점 향상되는 경향을 보였다.