• 제목/요약/키워드: Complex Sol-Gel Process

검색결과 18건 처리시간 0.021초

티탄산바륨 분말과 박막의 제조 및 특성 연구 (Preparation and Characterization of BaTiO3 Powders and Thin films)

  • 정미원;손현진;이지윤;김현정
    • 분석과학
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    • 제17권2호
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    • pp.173-179
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    • 2004
  • Ethylene glycol의 polymerization-complex route를 통한 졸-겔 합성법으로 안정하고 균일한 barium titanate 분말 및 박막을 제조하였다. 출발 용액으로 킬레이팅 리간드인 acetylacetone을 barium과 titanium 용액에 치환시켜 합성한 복합 산화물 졸 용액을 사용했을 때 박막을 만들 수 있었다. 졸 용액의 입자 분포도는 안정한 gaussian 분포를 보였으며, $1100^{\circ}C$에서 열처리한 겔 분말의 입자 크기는 40~77 nm이었다. 열분석 및 FT-IR, $^{13}C$ CP/MAS NMR 스펙트라와 XRD 결과로부터 (Ba-Ti)-oxycarbonate 중간상을 거쳐 $BaTiO_3$ 분말이 형성됨을 알 수 있었다. Quartz에 스핀 코팅으로 제조한 박막은 치밀하고 균열 없는 미세 조직을 보였다. $1100^{\circ}C$에서 열처리한 박막 표면의 입자 크기는 220 nm였으며 치밀한 입자 성장을 관찰할 수 있었다.

Sol-gel deposited TiInO thin-films transistor with Ti effect

  • Kim, Jung-Hye;Son, Dae-Ho;Kim, Dae-Hwan;Kang, Jin-Kyu;Ha, Ki-Ryong
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2009년도 제38회 동계학술대회 초록집
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    • pp.200-200
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    • 2010
  • In recent times, metal oxide semiconductors thin films transistor (TFT), such as zinc and indium based oxide TFTs, have attracted considerable attention because of their several advantageous electrical and optical properties. There are many deposition methods for fabrication of ZnO-based materials such as chemical vapor deposition, RF/DC sputtering and pulsed laser deposition. However, these vacuum process require expensive equipment and result in high manufacturing costs. Also, the methods is difficult to fabricate various multicomponent oxide semiconductor. Recently, several groups report solution processed metal oxide TFTs for low cost and non vacuum process. In this study, we have newly developed solution-processed TFTs based on Ti-related multi-component transparent oxide, i. e., InTiO as the active layer. We propose new multicomponent oxide, Titanium indium oxide(TiInO), to fabricate the high performance TFT through the sol-gel method. We investigated the influence of relative compositions of Ti on the electrical properties. Indium nitrate hydrate [$In(NO^3).xH_2O$] and Titanium isobutoxide [$C_{16}H_{36}O_4Ti$] were dissolved in acetylacetone. Then monoethanolamine (MEA) and acetic acid ($CH_3COOH$) were added to the solution. The molar concentration of indium was kept as 0.1 mol concentration and the amount of Ti was varied according to weighting percent (0, 5, 10%). The complex solutions become clear and homogeneous after stirring for 24 hours. Heavily boron (p+) doped Si wafer with 100nm thermally grown $SiO_2$ serve as the gate and gate dielectric of the TFT, respectively. TiInO thin films were deposited using the sol-gel solution by the spin-coating method. After coating, the films annealed in a tube furnace at $500^{\circ}C$ for 1hour under oxygen ambient. The 5% Ti-doped InO TFT had a field-effect mobility $1.15cm^2/V{\cdot}S$, a threshold voltage of 4.73 V, an on/off current ratio grater than $10^7$, and a subthreshold slop of 0.49 V/dec. The 10% Ti-doped InO TFT had a field-effect mobility $1.03\;cm^2/V{\cdot}S$, a threshold voltage of 1.87 V, an on/off current ration grater than $10^7$, and a subthreshold slop of 0.67 V/dec.

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24-웰 마이크로 플레이트를 이용한 미생물 발효공정에서 pH 및 용존산소의 모니터링 (Monitoring of pH and dissolved oxygen in microorganism fermentation processes using a 24-well microplate)

  • 김선용;김춘광;손옥재;이종일
    • KSBB Journal
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    • 제24권2호
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    • pp.207-211
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    • 2009
  • 본 연구에서는 광학적 특성이 우수한 GPTMS 졸-겔에 pH와 용존산소를 검출할 수 있는 6-aminofluorescein과 $Ru(dPP)_3\;^{2+}$를 고정화하였다. 제조한 검출막의 광학적 특성을 조사하였고 E.coli JM109와 P.pastoris X-33의 발효중 pH와 용존산소를 모니터링하는데 사용하여 오프라인으로 측정 된 데이터와 비교, 고찰하였다. 여기파장 480 nm와 방출파장 600 nm에서 최적 형광 검출파장을 나타내는 용존산소 검출막에 흑연이 혼합된 절광층을 재코팅한 막이 0%와 100% 용존산소 조건에서 800 [RFU]의 형광세기 차이를 나타냈다. 제조한 용존산소 검출막을 사용하여 E.coli JM109와 p.pastoris X-33의 발효중 배양액내의 용존산소를 모니터링한 결과, 미생물의 성장에 따른 용존산소량의 변화를 잘 모니터링 할 수 있었다. 한편, GPTMS 졸-겔에 6-aminofluorescein을 고정화하여 제조한 pH 검출막은 여기파장 480 nm와 방출파장 520 nm에서 최적 검출파장을 나타내었고 절광막을 재코팅한 검출막이 pH의 변화에 따라 높은 감도를 나타내었다. 제조한 pH 검출막에 E. coli JM109와 P.pastoris X-33을 배양하여 발효시간에 따른 배양액의 pH 변화를 오프라인으로 측정하고 형광세기 변화와 비교하였다. 발효중 미생물의 유기산 생산과 단백질분해로 인한 pH 변화를 pH 검출막이 잘 모니터링 함을 볼 수 있었다. 따라서 본 연구에서 제조한 pH와 용존산소 검출막은 높은 감도등 우수한 광학적 특성을 보여줄 뿐만 아니라 미생물 발효중 pH와 용존산소를 온라인 모니터링 할 수 있음을 알 수 있다.

생물공정 모니터링을 위한 광섬유 포도당 및 젖산 센서의 개발 (Development of Optical Fiber Glucose and Lactate Biosensors for Bioprocess Monitoring)

  • 정창환;손옥재;이종일
    • KSBB Journal
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    • 제32권1호
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    • pp.35-45
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    • 2017
  • In this work the optical fiber glucose and lactate biosensors were developed by using fluorescent dye and enzyme immobilized on the end tip of an optical fiber. 3-Glycidyloxypropyl)methyldiethoxysilane (GPTMS), (3-Aminopropyl) trimethoxysilane (APTMS) and Methyltrimethoxysilane (MTMS) were used to immobilize glucose oxidase (GOD), lactate oxidase (LOD) and ruthenium(II) complex (tris(4,7-diphenyl-1,10-phenanthroline) ruthenium(II), $Ru(dpp)_3^{2+}$) as oxygen sensitive fluorescent dye. MTMS sol-gel was an excellent supporting material for the immobilization of $Ru(dpp)_3^{2+}$, GOD, and LOD on the optical fiber. Storage stability of the optical fiber glucose sensor was kept constant over 20 days, while the optical fiber lactate sensor had constant storage stability over 17 days. The optical fiber glucose and lactate biosensors also maintained good operational stability for 20 hours and 14 hours, respectively. The activities of the immobilized enzymes were most excellent at pH 7 and at $25^{\circ}C$. On-line monitoring of glucose and lactate in a simulated process was performed with the optical fiber glucose and lactate biosensors. On-line monitoring results were agreed with those of off-line data measured with high performance liquid chromatography (HPLC).

상온에서 고결정성 나노기공 이산화티탄 제조기술 (Synthesis of highly crystalline nanoporous titanium dioxide at room temperature)

  • 정평진;권용석
    • 에너지공학
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    • 제25권2호
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    • pp.65-78
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    • 2016
  • 광촉매 연구의 초기는 태양에너지의 전환 및 저장에 관련된 분야들로부터 개발되어 왔다. 최근에는 광 또는 광촉매의 존재 하에서 자외선을 조사하여 물의 정제 및 폐수처리와 각종 유기화합물의 분해연구가 활발하게 진행되고 있다. 또한 산화물질-카본나노튜브, 그래핀 나노복합체 등이 광촉매물질로서 연구되고 있다. 이와 같은 복합체는 열적, 화학적으로 안정하기 때문에 플렉서블 소자를 포함한 광분해 태양전지 및 나노전자 소자를 구성하는 재료로서 적당하다.

실리카-이산화티탄 복합 코팅층의 열적, 화학적 안정성 및 인쇄적성 평가 (Printability of Thermally and Chemically Stable Silica-Titanium Dioxide Composite Coating Layer)

  • 김혜진;한규성;황광택;남산;김진호
    • 한국재료학회지
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    • 제29권10호
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    • pp.631-638
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    • 2019
  • As automation systems become more common, there is growing interest in functional labeling systems using organic and inorganic hybrid materials. Especially, the demand for thermally and chemically stable labeling paper that can be used in a high temperature environment above $300^{\circ}C$ and a strong acid and base atmosphere is increasing. In this study, a composite coating solution for the development of labeling paper with excellent thermal and chemical stability is prepared by mixing a silica inorganic binder and titanium dioxide. The silica inorganic binder is synthesized using a sol-gel process and mixed with titanium dioxide to improve whiteness at high-temperature. Adhesion between the polyimide substrate and the coating layer is secured and the surface properties of the coating layer, including the thermal and chemical stability, are investigated in detail. The effects of the coating solution dispersion on the surface properties of the coating layer are also analyzed. Finally, it is confirmed that the developed functional labeling paper showed excellent printability.

나노물질 생산시설의 환경노출 평가와 안전관리 (Nano-safety Management and Exposure Assessment of Nanomaterials Producing Facilities)

  • 엄하늬;노진규;박준수;곽병규;이병천;최경희;이종협;김영훈
    • Korean Chemical Engineering Research
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    • 제50권1호
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    • pp.112-117
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    • 2012
  • 나노기술의 발전과 함께 나노물질을 포함한 소비재가 대중화되고 있다. 그러나 지난 10여년간 조심스럽게 제기되고 있는 나노물질의 잠재적 위해성으로 인해, 나노제품 사용을 불안해하고 있다. 특히 나노제품을 직접 취급하는 생산시설(연구소 및 업체)의 작업자는 직접적인 인체 노출을 초래하게 된다. 따라서 이들에 대한 인체 및 환경 노출 안전관리를 위하여, 직접적인 노출평가가 필요하다. 본 연구에서는 기상 및 액상 반응을 통해 나노물질을 생산하는 두 곳의 업체를 현장 방문하여 나노물질의 주요 노출대상 공정과 노출원을 파악하고 SMPS를 이용한 실시간 현장 모니터링을 실시하였다. 분석 결과, 액상 공정도 기상으로의 나노입자 노출이 심각하게 발생하고 있음을 확인하였다. 가장 문제가 되는 점은 나노물질의 잠재적인 위해성에 관한 인식의 부족으로 제대로 된 방호활동을 못하고 있다는 점이다. 따라서 보다 다양한 나노물질 취급 시설에 대한 환경노출 평가가 필요하고 이를 바탕으로 한 나노물질 취급 안전관리 방법이 제시되어야 한다.

Solution-Processed Nontoxic and Abundant $Cu_2ZnSnS_4$ for Thin-Film Solar Cells

  • 문주호
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2012년도 춘계학술발표대회
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    • pp.65-65
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    • 2012
  • Copper zinc tin sulfide ($Cu_2ZnSnS_4$, CZTS) is a very promising material as a low cost absorber alternative to other chalcopyrite-type semiconductors based on Ga or In because of the abundant and economical elements. In addition, CZTS has a band-gap energy of 1.4~1.5eV and large absorption coefficient over ${\sim}10^4cm^{-1}$, which is similar to those of $Cu(In,Ga)Se_2$(CIGS) regarded as one of the most successful absorber materials for high efficient solar cell. Most previous works on the fabrication of CZTS thin films were based on the vacuum deposition such as thermal evaporation and RF magnetron sputtering. Although the vacuum deposition has been widely adopted, it is quite expensive and complicated. In this regard, the solution processes such as sol-gel method, nanocrystal dispersion and hybrid slurry method have been developed for easy and cost-effective fabrication of CZTS film. Among these methods, the hybrid slurry method is favorable to make high crystalline and dense absorber layer. However, this method has the demerit using the toxic and explosive hydrazine solvent, which has severe limitation for common use. With these considerations, it is highly desirable to develop a robust, easily scalable and relatively safe solution-based process for the fabrication of a high quality CZTS absorber layer. Here, we demonstrate the fabrication of a high quality CZTS absorber layer with a thickness of 1.5~2.0 ${\mu}m$ and micrometer-scaled grains using two different non-vacuum approaches. The first solution-processing approach includes air-stable non-toxic solvent-based inks in which the commercially available precursor nanoparticles are dispersed in ethanol. Our readily achievable air-stable precursor ink, without the involvement of complex particle synthesis, high toxic solvents, or organic additives, facilitates a convenient method to fabricate a high quality CZTS absorber layer with uniform surface composition and across the film depth when annealed at $530^{\circ}C$. The conversion efficiency and fill factor for the non-toxic ink based solar cells are 5.14% and 52.8%, respectively. The other method is based on the nanocrystal dispersions that are a key ingredient in the deposition of thermally annealed absorber layers. We report a facile synthetic method to produce phase-pure CZTS nanocrystals capped with less toxic and more easily removable ligands. The resulting CZTS nanoparticle dispersion enables us to fabricate uniform, crack-free absorber layer onto Mo-coated soda-lime glass at $500^{\circ}C$, which exhibits a robust and reproducible photovoltaic response. Our simple and less-toxic approach for the fabrication of CZTS layer, reported here, will be the first step in realizing the low-cost solution-processed CZTS solar cell with high efficiency.

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