• 제목/요약/키워드: Fe dopant

검색결과 54건 처리시간 0.023초

Magnetic and Photo-catalytic Properties of Nanocrystalline Fe Doped $TiO_2$ Powder Synthesized by Mechanical Alloying

  • Uhm, Y.R.;Woo, S.H.;Lee, M.K.;Rhee, C.K.
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.955-956
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    • 2006
  • Fe-doped $TiO_2$ nanopowders were prepared by mechanical alloying (MA) varying Fe contents up to 8.0 wt.%. The UV-vis absorption showed that the UV absorption for the Fe-doped powder shifted to a longer wavelength (red shift). The absorption threshold depends on the concentration of nano-size Fe dopant. As the Fe concentration increased up to 4 wt.%, the UV-vis absorption and the magnetization were increased. The benefical effect of Fe doping for photocatalysis and ferromagnetism had the critical dopant concentration of 4 wt.%. Based on the UV absorption and magnetization, the dopant level is localized to the valence band of $TiO_2$.

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치환된 $LaFeO_3$의 환원반응성에 대한 연구 (Study on the reducibility of substituted $LaFeO_3$)

  • 전현표;이상범
    • 자연과학논문집
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    • 제15권1호
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    • pp.35-46
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    • 2005
  • $LaFeO_3$ 복합산화물과 부분 치환한 $LaFeO_3$ 복합산화물을 citrate와 Cyanide 공침법으로 합성하여 공기중에서 $850^{\circ}C$로 24시간동안 열처리해 제조방법에 의한 영향을 비교하였다. XRD와 IR의 결과에 의하여면, 합성된 산화물은 Orthorhombic의 Perovskite구조를 나타냈으나 B자리에 0.5mol의 Cu가 치환된 복합산화물은 단일상을 얻지 못하였다. 또한, 이들 산화물의 환원반응은 치환하지 않은 $LaFeO_3.17$ 복합산홤루은 2단계 반응인 반면에 치환한 복합산화물은 3단계 반응으로 Dopant에 의한 새로운 환원단계가 존재함을 알았다.

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Nylon6,6/Polypyrrole 전도성 복합체의 제조에 관한 연구 (A Study on the Preparation of Nylon6,6/Polypyrrole Conducting Composite)

  • 이완진;김효용
    • 공업화학
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    • 제10권2호
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    • pp.281-286
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    • 1999
  • Nylon6,6를 matrix로 사용하여 전도성 고분자인 polypyrrole (PPy)과의 전도성 복합체를 블렌딩 방법에 의하여 제조하였다. PPy를 화학적으로 중합시키는데 있어서 $FeCl_3$를 산화제로 사용하였으며, dopant로서 camphorsulfonic acid (CSA)와 dodecylbenzenesulfonic acid (DBSA)와 같은 알킬 벤젠 술폰산을 사용하였다. 제조된 전도성 복합체에 대하여 dopant의 종류에 따라 또는 PPy의 함량에 따라 전기전도도 및 몰포로지 그리고 기계적 물성 등을 측정 분석하였다. PPy 착체의 함량이 증가할수록 전기전도도는 증가하였으며, 알킬사슬의 길이가 긴 DBSA로 도핑된 25 wt % PPy 착체와 nylon6,6 복합체의 전기전도도는 0.64 S/cm까지 향상되었다.

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Softener 및 Hardener 동시 첨가가 PZT 압전세라믹에 미치는 영향 (Effects of Softener and Hardener Co-doping on Properties of PZT Piezoelectric Ceramics)

  • 이언종;김윤해;이병우
    • 한국해양공학회지
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    • 제24권6호
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    • pp.81-85
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    • 2010
  • The effects of co-doping with complex dopants of softeners, $La^{+3}$ and/or $Nb^{+5}$, and a hardener, $Fe^{+3}$, on the microstructural and piezoelectric properties of PZT ceramics with a composition of a rhombohedral-tetragonal morphotropic phase boundary, $PbZr_{0.53}Ti_{0.47}O_3$, were investigated. Unlike single-element doping, the complex doping of both the softener and hardener ions led to various compensation effects for the piezoelectric properties of the PZT ceramics. For 0.5 wt.% $La_2O_3$ softener and/or 0.5 wt.% $Nb_2O_5$ doped compositions, there were apparent hardener doping (compensation) effects for an addition of over 1.0 wt.% $Fe_2O_3$. For the $La_2O_3$ and/or $Nb_2O_5$ doped composition, the co-dopant $Fe_2O_3$ addition led to lower kp and $\varepsilon$r, and increased $Q_m$ values. The prepared PZT ceramics modified with complex soft dopants, $La^{+3}$ and $Nb^+$, as well as a hard dopant, $Fe^{+3}$, showed that the piezoelectric properties were stable with the compositional variations, which made it possible to establish piezoelectric performances with higher reliability and reproducibility. The most improved piezoelectric properties of enhanced $Q_m$ with $\varepsilon_r$ remaining higher $k_p$, were obtained in the PZT composition complexly doped with $La^{+3}$ and $Fe^{+3}$. From the results obtained in this study, the properties of compositionally modified PZT ceramics can also be tailored over a wider range by changing the dopant compositions to meet the specific requirements for underwater or other applications.

Effect of Fe3O4 loading on the conductivities of carbon nanotube/chitosan composite films

  • Marroquin, Jason;Kim, H.J.;Jung, Dong-Ho;Rhee, Kyong-Yop
    • Carbon letters
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    • 제13권2호
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    • pp.126-129
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    • 2012
  • Nanocomposite films were made by a simple solution casting method in which multi-walled carbon nanotubes (MWCNT) and magnetite nanoparticles ($Fe_3O_4$) were used as dopant materials to enhance the electrical conductivity of chitosan nanocomposite films. The films contained fixed CNT concentrations (5, 8, and 10 wt%) and varying $Fe_3O_4$ content. It was determined that a 1:1 ratio of CNT to $Fe_3O_4$ provided optimal conductivity according to dopant material loading. X-ray diffraction patterns for the nanocomposite films, were determined to investigate their chemical and phase composition, revealed that nanoparticle agglomeration occurred at high $Fe_3O_4$ loadings, which hindered the synergistic effect of the doping materials on the conductivity of the films.

Bi2Te3계 열전박막의 열전 출력인자에 미치는 첨가제의 영향 (Doping Effects to the Thermoelectric Power Factor of Bi2Te3 Thin Films)

  • 배상현;최순목
    • 한국전기전자재료학회논문지
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    • 제33권2호
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    • pp.141-146
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    • 2020
  • Thermoelectric Bi2Te3 thin films were synthesized by a co-sputtering method at 300℃. A Fe dopant was considered to enhance the thermoelectric properties of the system. The Seebeck coefficient of the Fe-doped films increased whereas the electrical conductivity decreased. As a result, the power factor of the system increased owing to the enhanced Seebeck coefficient. Grain growth inhibition was detected in the Fe-doped system, which produced more grain boundaries in the Fe-doped films than in the undoped system. The increased grain boundary scattering was deemed to be effective for a reduced thermal conductivity. This is advantageous for the preparation of high-performance thermoelectric films.

높은 전기 전도성을 갖는 가용성 폴리피롤 합성 및 특성 (Synthesis and Characterization of Soluble Polypyrrole with High Conductivity)

  • 홍장후;장관식
    • 공업화학
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    • 제18권3호
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    • pp.234-238
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    • 2007
  • 기능성 도핑제인 혼합 도판트[sodium di(2-ethylhexyl)sulfosuccinate(DEHSNa) Naphthalenesulfonic acid (NSA), DEHSNa Toluensulfonic acid (TSA), DEHSNa Dodecylbenzensulfonic acid (DBSA)], 혼합 산화제[$(NH_4)_2S_2O_8{\cdot}FeCl_3$, $(NH_4)_2S_2O_8{\cdot}Fe_2(SO_4)_3$]을 사용하여 높은 전기전도도를 갖는 유기용매에 가용성인 폴리피롤을 합성하였다. 산화제로 $(NH_4)_2S_2O_8$ (10wt%/vol.)을 사용한 Ppy-DEHS 분말은 혼합 도판트(DEHSNa NSA, 3 wt%/vol.)와 혼합 산화제[$(NH_4)_2S_2O_8{\cdot}Fe_2(SO_4)_3$, 4 wt%/vol.]을 사용한 경우보다 극성 용매(DMF)에서 높은 용해도를 나타내었다. 그러나, DMF 용매에서 제조된 혼합 도판트[DEHSNa NSA, 16 S/cm]와 혼합 산화제[$(NH_4)_2S_2O_8{\cdot}FeCl_3$, 13 S/cm]을 사용한 Ppy-DEHS 필름의 전기전도도는 $(NH_4)_2S_2O_8$ (2 S/cm)을 사용한 경우보다 더 높게 나타났다. 다양한 조건에서 제조된 Ppy-DEHS 필름의 전하전달은 모두 3차원 VRH mode{$\{{\sigma}_{dc}(T)={\sigma}_oexp[-(T_o/T)^{1/4}]\}$에 부합하였다.

불순물 첨가에 따른 저온소결 PMN-PNN-PZT 세라믹스의 압전 및 유전특성 (Piezoelectric and Dielectric Characteristics of Low Temperature Sintering PMN-PNN-PZT Ceramics according to the addition of dopant)

  • 이상호;이창배;정광현;류주현;홍재일
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2005년도 추계학술대회 논문집 Vol.18
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    • pp.33-34
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    • 2005
  • In this study, in odor to develop low temperature sintering multilayer piezoelectric actuator and ultrasonic vibrator, PMN-PNN-PZT ceramics were fabricated using $Li_2CO_3$ and $Na_2CO_3$ as sintering aids and their piezoelectric and dielectric characteristics were investigated according to the addition of dopant CuO and $Fe_2O_3$, respectively. The CuO added PMN-PNN-PZT ceramics improved mechanical quality factor Qm due to the acceptor doping effect. And also, $Fe_2O_3$ reacted as softner in this composition system in addition to the increase of grain size and sinterability. Taking into consideration electromechanical coupling factor kp of 0.62, dielectric constant $\varepsilon_r$, of 1275, Piezoelectric $d_{33}$ constant of 377[pC/N] and mechanical quality factor Qm of 975, it was concluded that the ceramics with the $Fe_2O_3$, added composition sintered at 900[$^{\circ}C$] were best for the multilayer piezoelectric actuator and ultrasonic vibrator application.

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Effect of Ni dopant on the multiferroicity of BiFeO3 ceramic

  • Hwang, J.S.;Yoo, Y.J.;Kang, J.H.;Lee, K.H.;Lee, B.W.;Park, S.Y.;Lee, Y.P.
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.139.1-139.1
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    • 2016
  • Multiferroic materials are of great interest because of its potential applications in the design of devices combining magnetic, electronic and optical functionalities. Among various multiferroic materials, $BiFeO_3$(BFO) is known to be one of the intensively focused mainly due to the possibility of multiferroism at device working temperature (> $200^{\circ}C$). However, leakage current and weak polarization resulting from oxygen deficiency and crystalline defect should be resolved. Furthermore the magnetic ordering of pure BFO mainly prefers to have antiferromagnetic coupling. Up to now many attempts have been performed to improve the ferromagnetic and the ferroelectric properties of BFO by doping. In this work, we investigated the effects of Ni substitution on the multiferroism of bulk BFO. Four BFO samples (a pure BFO and three Ni-doped BFO's; $BiFe_{0.99}Ni_{0.01}O_3$, $BiFe_{0.98}Ni_{0.02}O_3$ and $BiFe_{0.97}Ni_{0.03}O_3$) were synthesized by the standard solid-state reaction and rapid sintering technique. The XRD results reveal that Ni atoms are substituted into Fe-sites and give rise to phase transition of cubic to rhombohedal. By using vibrating sample magnetometer and standard ferroelectric tester, the multiferroic properties at room temperature were characterized. We found that the magnetic moment of Ni-doped BFO turned out to be maximized for 3% of Ni dopant.

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P형 Fe(Mn)Si2 열전재료 분말의 성형 및 미세조직 (Consolidation of p-type Fe(Mn)Si2 Thermoelectric Powder and Microstructure)

  • 심재식;홍순직;천병선
    • 한국분말재료학회지
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    • 제15권5호
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    • pp.345-351
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    • 2008
  • The effects of the dopant (Mn) ratio on the microstructure and thermoelectric properties of $FeSi_2$ alloy were studied in this research. The alloy was fabricated by a combination process of ball milling and high pressure pressing. Structural behavior of the sintered bulks were systematically investigated by XRD, SEM, and optical microscopy. With increasing dopan (Mn) ratio, the density and ${\varepsilon}-FeSi$ phase of the sintered bulks increased and maximum density of 94% was obtained in the 0.07% Mn-doped alloy. The sintered bulks showed fine microstructure of ${\alpha}-Fe_{2}Si_{5}$, ${\varepsilon}-FeSi$ and ${\beta}-FeSi_2$ phase. The semiconducting phase of ${\beta}-FeSi_2$ was transformed from ${\alpha}-Fe_{2}Si_{5}+{\varepsilon}-FeSi$ phase by annealing.