• 제목/요약/키워드: Ni/NiO nanoparticle

검색결과 37건 처리시간 0.03초

Novel solvothermal approach to hydrophilic nanoparticles of late transition elements and its evaluation by nanoparticle tracking analysis

  • Dutilleul, Marion Collart;Seisenbaeva, Gulaim A.;Kessler, Vadim G.
    • Advances in nano research
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    • 제2권2호
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    • pp.77-88
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    • 2014
  • Solvothermal treatment of late transition metal acetylacetonates in a novel medium composed either of pure acetophenone or acetophenone mixtures with amino alcohols offers a general approach to uniform hydrophilic metal nanoparticles with high crystallinity and low degree of aggregation. Both pure metal and mixed-metal particles can be accesses by this approach. The produced materials have been characterized by SEM-EDS, TEM, FTIR in the solid state and by Nanoparticle Tracking Analysis in solutions. The chemical mechanisms of the reactions producing nanoparticles has been followed by NMR. Carrying out the process in pure acetophenone produces palladium metal, copper metal with minor impurity of $Cu_2O$, and NiO. The synthesis starting from the mixtures of Pd and Ni acetylacetonates with up to 20 mol% of Pd, renders in minor yield the palladium-based metal alloy along with nickel oxide as the major phase. Even the synthesis starting from a mixed solution of $Cu(acac)_2$ and $Ni(acac)_2$ produces oxides as major products. The situation is improved when aminoalcohols such as 2-aminoethanol or 2-dimethylamino propanol are added to the synthesis medium. The particles in this case contain metallic elements and pairs of individual metals (not metal alloys) when produced from mixed precursor solutions in this case.

다양한 씨앗의 발아 및 발아지수에 근거한 나노입자 생물학적 독성평가 (Bioassessment of Nanoparticle Toxicity based on Seed Germination and Germination Index of Various Seeds)

  • 구본우;이민경;석우도;공인철
    • 청정기술
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    • 제21권1호
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    • pp.39-44
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    • 2015
  • 본 연구에서는 다섯 종의 씨앗(춘채, 아욱, 양배추, 배추, 당근)을 이용하여 금속산화물 나노입자(CuO, NiO, Fe2O3, Co3O4, TiO2, ZnO)들이 씨앗발아와 발아지수에 미치는 영향을 조사하였다. CuO, ZnO, NiO 나노입자는 씨앗 활성에 뚜렷한 독성 영향을 나타내었으며, 나노입자종류에 따라 상이한 민감도를 나타내었다. 각 나노입자에 대한 독성순서(EC50 범위)는 다음과 같다: CuO 6~27 mg/L > ZnO 16~86 mg/L > NiO 48~112 mg/L. 나머지 조사 대상 나노입자인 Co3O4, TiO2, Fe2O3은 최대 1,000 mg/L 높은 농도 노출에도 뚜렷한 영향을 나타내지 않았다. 씨앗별 상이한 민감도를 나타내었으며, 가장 민감한 종인 아욱의 씨앗발아 EC50은 CuO 5.5 mg/L ZnO 16.4 mg/L, NiO 53.4 mg/L로 조사되었다. 씨앗별 나노입자에 대한 독성 영향은 CuO > ZnO > NiO > Fe2O3 ≈ Co3O4 ≈ TiO2 나타났으나, 당근씨앗은 NiO [EC50 80.4(71.41~90.54) mg/L]와 ZnO [EC50 85.8(69.31~106.29) mg/L]가 유사한 독성을 나타내었다.

CO Oxidation of Catalytic Filters Consisting of Ni Nanoparticles on Carbon Fiber

  • Seo, Hyun-Ook;Nam, Jong-Won;Kim, Kwang-Dae;Kim, Young-Dok;Lim, Dong-Chan
    • Bulletin of the Korean Chemical Society
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    • 제33권4호
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    • pp.1199-1203
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    • 2012
  • Catalytic filters consisting of Ni nanoparticle and carbon fiber with different oxidation states of Ni (either metallic or oxidic) were prepared using a chemical vapor deposition process and various post-annealing steps. CO oxidation reactivity of each sample was evaluated using a batch type quartz reactor with a gas mixture of CO (500 mtorr) and $O_2$ (3 torr) at $300^{\circ}C$. Metallic and oxidic Ni showed almost the same CO oxidation reactivity. Moreover, the CO oxidation reactivity of metallic sample remained unchanged in the subsequently performed second reaction experiment. We suggested that metallic Ni transformed into oxidic state at the initial stage of the exposure to the reactant gas mixture, and Ni-oxide was catalytically active species. In addition, we found that CO oxidation reactivity of Ni-oxide surface was enhanced by increase in the $H_2O$ impurity in the reactor.

Suzuki-Miyaura Cross-coupling Reaction Catalyzed by Nickel Nanoparticles Supported on Poly(N-vinyl-2-pyrrolidone)/TiO2-ZrO2 Composite

  • Kalbasi, Roozbeh Javad;Mosaddegh, Neda
    • Bulletin of the Korean Chemical Society
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    • 제32권8호
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    • pp.2584-2592
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    • 2011
  • Nickel nanoparticle-poly(N-vinyl-2-pyrrolidone)/$TiO_2-ZrO_2$ composite (Ni-PVP/$TiO_2-ZrO_2$) was prepared by in situ polymerization method. The physical and chemical properties of Ni-PVP/$TiO_2-ZrO_2$ were investigated by XRD, FT-IR, BET, TGA, SEM and TEM techniques. The catalytic performance of this novel heterogeneous catalyst was determined for the Suzuki-Miyaura cross-coupling reaction between aryl halides and phenylboronic acid in the presence of methanol-water mixture as solvent. The effects of reaction temperature, the amount of catalyst, amount of support, solvent, and amount of metal for the synthesis of Ni-PVP/$TiO_2-ZrO_2$, were investigated as well as recyclability of the heterogeneous composite. The catalyst used for this synthetically useful transformation showed considerable level of reusability besides very good activity.

나노다공성 NiO-SiO2 가교화 점토의 합성 및 가교물질의 표면개질 연구 (Synthesis of Nanoporous NiO-SiO2 Pillared Clays and Surface Modification of the Pillaring Species)

  • 윤주영;심광보;문지웅;오유근
    • 한국세라믹학회지
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    • 제41권1호
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    • pp.81-85
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    • 2004
  • 점토를 이용한 나노 다공성 촉매 제조를 목적으로 $Ni^{2+}$ 이온으로 피복된 $SiO_2$ 나노 졸 입자를 2차원 충상점토 화합물의 층간에 삽입, 가교화 시켜 비표면적 및 다공도가 우수한 $NiO-SiO_2$ 가교화 점토($NiO-SiO_2$-PILM)를 합성하였다. 나노 크기의 실리카 졸 입자는 tetraethyl orthosilicate(TEOS)를 가수분해하여 합성하였고, 여기에 $Ni^{2+}$ 수용액을 첨가한 다음 NaOH 용액을 적정하여 $Ni^{2+}-SiO_2$ 혼합 나노 졸입자를 완성하였다. 이렇게 제조된 혼합 졸 용액을 1wt%의 점토 수분산액에 첨가하여 $60{\circ}C$에서 5h 이온교환 반응을 통해 층간에 삽입, 수세, 건조 후 $40^{\circ}C$에서 2시간 열처리 하므로써 다공성 가교화 점토를 제조하였다. 나노 졸 입자의 가교화에 따라 점토의 층간거리($d_{001}$)는 $45{\AA}$ 정도 크게 증가하였고 $600^{\circ}C$까지도 다공구조가 안정하게 유지되었다. 또한 질소 흡착-탈착 등온선 분석 결과 비표면적($S_{BET}$)이 최대 $760m^2/g$으로 다공 구조가 매우 잘 발달되어 있음을 확인하였고, $NiO-SiO_2$ 졸 가교화 점토의 경우 $NiO-SiO_2$ 나노입자가 층간에 이중층으로 배열되어 있음을 알 수 있었다.

Effects of Solution Concentration on the Structural and Magnetic Properties of Ni0.5Zn0.5Fe2O4 Ferrite Nanoparticles Prepared by Sol-gel

  • Yoo, B.S.;Chae, Y.G.;Kwon, Y.M.;Kim, D.H.;Lee, B.W.;Liu, Chunli
    • Journal of Magnetics
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    • 제18권3호
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    • pp.230-234
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    • 2013
  • The $Ni_{0.5}Zn_{0.5}Fe_2O_4$ nanoparticles about 30 nm were prepared using sol-gel method with metal nitrates dissolved in 2-methoxyathanol. The concentrations of the metal nitrates are adjusted from 0.1 to 0.75 M in order to study the influence on the structural and magnetic properties. The structure and morphology characterization revealed that the crystallinity was improved and the nanoparticle size was increased with the nutrition solution concentrations up to 0.5 M. Degraded crystallinity together with decreased nanoparticle size were observed for concentration of 0.75 M. The saturation magnetization at room temperature reached maximum at 0.5 M, which can be explained by considering the crystallinity and size effect.

나노·바이오 융합응용을 위한 초상자성 Ni-Zn Ferrite의 자기적 특성연구 (Magnetic Properties of Superparamagnetic Ni-Zn Ferrite for Nano·Bio Fusion Applications)

  • 이승화;류연국;양계준;안중수;김철성
    • 한국자기학회지
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    • 제15권2호
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    • pp.100-105
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    • 2005
  • 최근 들어 바이오 의약품으로 응용 가능한 자성 나노 입자에 대한 많은 연구가 이루어지고 있으며, 바이오 의약품으로 응용이 가능하려면 상온에서 초상자성의 특성을 가져야만 한다. 초상자성 나노 입자의 제작이 가능한 졸-겔 법을 이용하여 초상자성 나노 입자 $Ni_{0.9}Zn_{0.1}Fe_2O_4$를 제조하여 입자의 크기 및 자기적 성질을 DTA/TGA, x-선 회절법, SEM 측정과 $M\ddot{o}ssbauer$ 분광법, 진동시료 자화율 측정기(VSM)를 이용하여 연구하였다. DTA/TGA, SEM 및 x-선 회절실험으로부터 $300^{\circ}C$에서 열처리한 입자가 순수한 cubic spinel 구조를 가지며, 평균입자 크기가 10nm인 균일한 구형상 임을 알 수 있었다. $M\ddot{o}ssbauer$ 분광실험으로 $300^{\circ}C$에서 열처리한 입자가 상온에서 초상자성의 특성을 가지고 있음을 알 수 있었으며 13K에서 573K가지 $M\ ddot{o}ssbauer$ 스펙트럼을 취하였을 때 77 K까지는 sextet의 공명흡수선(준강자성체)으로 나타났고 130K이상에서는 가운데 doublet의 공명흡수선이 나타나 400K에서는 sextet과 doublet의 면적비가 같아짐을 알 수 있었다. 13K에서의 초미세자기장은 $H_{hf}(B)=532kOe,\;H_{hf}(A)=507 kOe$이며, VSM 측정 결과로부터 초상자성의 특성을 잃어버리는 차단온도 $T_B$는 250 K로 결정하였다. 또한 자기이방성상수 $K=1.0{\times}10^6\;erg/cm^3$, 완화시간상수 ${\tau}_0=5.0{\times}10^{-13}$ s의 값을 얻었으며, 교류 발열 측정기를 이용하여 자기발열 상태를 측정한 결과 자기발열은 온열온도인 $43.6^{\circ}C$로 나타났다.

폐과일껍질을 이용한 친환경 NiO 나노분말 합성 및 향균특성 연구 (Enviroment-Friendly Synthesis of Nanocrystalline Nickel Oxide and Its Antibacterial Properties)

  • ;송재숙;홍순익
    • 한국재료학회지
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    • 제28권1호
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    • pp.24-31
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    • 2018
  • This study reports an environment-friendly synthetic strategy to process nickel oxide nanocrystals. A mesoporous nickel oxide nanostructure was synthesized using an environmentally benign biomimetic method. We used a natural rambutan peel waste resource as a raw material to ligate nickel ions to form nickel-ellagate complexes. The direct decomposition of the obtained complexes at $700^{\circ}C$, $900^{\circ}C$ and $1100^{\circ}C$ in a static air atmosphere resulted in mesoporous nickel oxide nanostructures. The formation of columnar mesoporous NiO with a concentric stacked doughnuts architecture was purely dependent on the suitable direct decomposition temperature at $1100^{\circ}C$ when the synthesis was carried out. The prepared NiO nanocrystals were coated on cotton fabric and their antibacterial activity was also analyzed. The NiO nanoparticle-treated cotton fabric exhibited good antibacterial and wash durability performance.

P-Type Doping of Graphene Films by Hybridization with Nickel Nanoparticles

  • Lee, Su Il;Song, Wooseok;Kim, Yooseok;song, Inkyung;Park, Sangeun;Cha, Myung-Jun;Jung, Dae Sung;Jung, Min Wook;An, Ki-Seok;Park, Chong-Yun
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2013년도 제44회 동계 정기학술대회 초록집
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    • pp.208-208
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    • 2013
  • Graphene has emerged as a fascinating material for next-generation nanoelectronics due to its outstanding electronic properties. In particular, graphene-based field effect transistors (GFETs) have been a promising research subject due to their superior response times, which are due to extremely high electron mobility at room temperature. The biggest challenges in GFET applications are control of carrier concentration and opening the bandgap of graphene. To overcome these problems, three approaches to doping graphene have been developed. Here we demonstrate the decoration of Ni nanoparticles (NPs) on graphene films by simple annealing for p-type doping of graphene. Ni NPs/graphene films were fabricated by coating a $NiCl2{\cdot}6H2O$ solution onto graphene followedby annealing. Scanning electron microscopy and atomic force microscopy revealed that high-density, uniformly sized Ni NPs were formed on the graphene films and the density of the Ni NPs increased gradually with increasing $NiCl2{\cdot}6H2O$ concentration. The formation of Ni NPs on graphene films was explained by heat-driven dechlorination and subsequent particlization, as investigated by X-ray photoelectron spectroscopy. The doping effect of Ni NPs onto graphene films was verified by Raman spectroscopy and electrical transport measurements.

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