• Title/Summary/Keyword: P-$TiO_2$

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Effects of pH variation on thermal stability of electrodeposited Ni-$TiO_2$ composite (Ni-$TiO_2$ 전기도금층의 pH에 따른 열적안정성 연구)

  • Kim, Myeong-Jin;Kim, Jeong-Su;Kim, Dong-Jin;Kim, Hong-Pyo
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2011.05a
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    • pp.133-134
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    • 2011
  • 전기도금을 이용하여 $TiO_2$ 입자들을 니켈 도금층에 넣은 Ni-$TiO_2$ 복합체를 만들때 pH, 전류형태에 따른 열적안정성에 대한 영향을 평가하였다. pH 범위는 1, 2, 3.4 였으며, 전류형태는 직류, duty cycle 50%의 펄스를 사용하였다. pH가 낮으면 도금속도는 낮아졌으나 $TiO_2$의 부피분율은 증가하였고, 펄스를 이용하면 도금속도는 증가하였으나 $TiO_2$ 부피분율은 감소하였다. 경도는 pH가 낮으면 상온에서는 낮았으나 고온에서는 상대적으로 경도값이 높았다.

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Reaction Mechanism on the Synthesis of BaTiO3 by Direct Wet Process (BaTiO3 습식직접합성 반응기구에 관한 연구)

  • 이경희;이병하;김대웅
    • Journal of the Korean Ceramic Society
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    • v.26 no.3
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    • pp.371-380
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    • 1989
  • The purpose of this experiment is to elucidate the reaction mechanism concerning to the formation of crystalline BaTiO3 synthesized by adding the pH control agent(KOH soln) in TiCl4 and BaCl2 solution (Wet direct synthetic method). In this expeirment, it is identified that the amorphous barium-titanate having Ba-O-Ti bonding is formed above pH5 due to the -OH- ion and Ti-gel is formed below pH5 due to the polymerization of metatitanic acid. The bonding of the amorphous Ba-O-Ti is identified by FT-IR spectrum and crystallization temperature is about 82$0^{\circ}C$. If the pH of the above system according to the -OH- ion concentration is above 13.8, the polymerized metatitanic acid will be depolymerized and produce [TiO3]2+ion and crystalline BaTiO3 is formed by reacting the produced [TiO3]-- ion with the active Ba++ ion.

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A Study on Comparison and Evaluation Standard of Photocatalytic Activity for Commercial TiO2 (광촉매 TiO2의 반응활성 비교 . 평가 기준에 관한 연구)

  • Lee, Sang-Jin;Hong, Sung-Chang
    • Journal of Environmental Science International
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    • v.17 no.7
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    • pp.801-808
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    • 2008
  • This study was investigated experimental condition which is able to evaluate photocatalytic activity of various commercial $TiO_2$. The experiments were performed for three representative substances (ethanol, phenol and methylene blue) and four kinds of commercial $TiO_2$, under the experimental conditions such as pH, reactant concentration, amount of $TiO_2$, reaction time and UV intensity. The optimum experimental conditions to evaluate photocatalytic activity were as follows : for ethanol, the initial concentration 1000 ppm, initial pH 8, $TiO_2$ loadings 0.1 wt%, and reaction time 90 minutes: for phenol, the initial concentration 200 ppm, initial pH 8, $TiO_2$ loadings 1 wt%, and reaction time 60 minutes: for methylene blue, the initial concentration 200 ppm, initial pH 4, $TiO_2$ loadings 0.5 wt%, and reaction time 30 minutes.

Study on the Powder Synthesis of $BaTiO_3$ and its Dielectric Properties (초소형 캐패시터용 $BaTiO_3$분말합성 및 소결특성에 관한 연구)

  • 문흥수;박병규;이태근;김철긴;이석근
    • Korean Journal of Crystallography
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    • v.10 no.1
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    • pp.56-65
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    • 1999
  • 수열법을 이용하여 미세한 BaTiO3 분말을 합성하였다. Ti원으로 두 종류의 TiO2 gel을 사용하였으며 그 크기와 모양을 BaTiO3 합성에 주는 영향을 고찰하였다. 구형의 단분산 TiO2 gel을 사용하여 Ba(NO3)2 수용액에서 수열 합성한 BaTiO3 분말은 입자크기도 균일하였으며 응집이 일어나지 않아않았다. 비교적 낮은 pH에서 구형 TiO2 gel을 사용하여 합성한 BaTiO3 분말은 구형을 그대로 유지하였지만 높은 pH에서 합성한 BaTiO3 분말은 그 구형이 분해되었다. KOH양이 많아지고, 합성시간이 길어짐에 따라 합성된 BaTiO3 분말의 크기는 커졌으며 그 c/a 값도 증가하였다.

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Crystal Structure of $KTiP_2O_7$ (의 결정구조)

  • 이건수;윤호섭
    • Korean Journal of Crystallography
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    • v.7 no.1
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    • pp.57-63
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    • 1996
  • The compound titanium (III) pyrophosphate, KTiP2O7 has been prepared and the crystal structure of the compound has been determined by the X-ray diffraction techniques. It crytallizes in the space group P21/a of the monoclinic system with four formula units in a cell of dimensions a=8.210(3), b=10.292(2), c=7.434(1)Å and β=106.71(2)°. The structure consists of the framework possessing corner-sharing octahedral TiO6 and pyrophosphate groups. As a result, a tunnel structure has been constructed and the K+ cations reside inside the tunnel. KTiP2O7 is isostructural with other trivalent metal pyrophosphates such as KAlP2O7 and RbTiP2O7 but the size difference of the alkali metals causes the variation in the structure. The classical charge balance of the compound can be described as [K+][Ti3+][P24O74-].

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Preparation of Fe-AC/$TiO_2$ composites and pH dependence of their Photocatalytic activity for methylene blue

  • Meng, Ze-Da;Zhang, Kan;Oh, Won-Chun
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.19 no.5
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    • pp.268-276
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    • 2009
  • In this study, activated carbon (AC) was treated with ferric ion by a sol-gel method. The compound (Fe-AC) was employed for the preparation of Fe-activated carbon/$TiO_2$, (Fe-AC/$TiO_2$) composites. The prepared Fe-AC/$TiO_2$ composites were characterized with surface properties, structural crystallinity, elemental identification and photocatalytic activity. The SEM results showed that ferric compounds and titanium dioxide were fixed onto the AC surfaces. The XRD results showed that Fe-AC/$TiO_2$ composites mostly contained anatase phase. EDX showed the presence of C, O, and Ti with Fe peaks in all samples. Its photocatalytic degradation effect was evaluated with the degradation behavior of the methylene blue (MB) solution. MB degradation could be attributed to the synergetic effects of adsorption, photo-degradation of $TiO_2$ and photo-Fenton of Fe component. The degradation rate for this photocatalysis was evaluated as a function of the concentration of the dye, the amount of $TiO_2$ and the pH. Photocataytic activity is good at activity pH.

Characterization of Nitrogen-Doped $TiO_2$ Thin Films Prepared by Metalorganic Chemical Vapor Deposition (유기금속 화학 기상증착법으로 실리콘 기판위에 증착된 질소치환 $TiO_2$ 박막의 특성분석)

  • 이동헌;조용수;이월인;이전국;정형진
    • Journal of the Korean Ceramic Society
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    • v.31 no.12
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    • pp.1577-1587
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    • 1994
  • TiO2 thin films with the substitution of oxygen with nitrogen were deposited on silicon substrate by metalorganic chemical vapor deposition (MOCVD) using Ti(OCH(CH3)2)4 (titanium tetraisopropoxide, TTIP) and N2O as source materials. X-ray diffraction (XRD) results indicated that the crystal structure of the deposited thin films was anatase TiO2 with only (101) plane observed at the deposition temperatures of 36$0^{\circ}C$ and 38$0^{\circ}C$, and with (101) and (200) plane at above 40$0^{\circ}C$. Raman spectroscopic results indicated that the crystal structure was anatase TiO2 in accordance with the XRD results without any rutile, fcc TiN, or hcp TiN structure. No fundamental difference was observed with temperature increase, but the peak intensity at 194.5 cm-1 increased with strong intensity at 143.0 cm-1 for all samples. The crystalline size of the films varied from 49.2 nm to 63.9 nm with increasing temperature as determined by slow-scan XRD experiments. The refractive index of the films increased from 2.40 to 2.55 as temperature increased. X-ray photoelectron spectroscopy (XPS) study showed only Ti 2s, Ti 2p, C 1s, O 1s and O 2s peaks at the surface of the film. The composition of the surface was estimated to be TiO1.98 from the quatitative analysis. In the bulk of the film Ti 2s, Ti 2p, O 1s, O 2s, N 1s and N 2s were detected, and Ti-N bonding was observed due to the substitution of oxygen with nitrogen. A satellite structure was observed in the Ti 2p due to the Ti-N bonding, and the composition of titanium nitride was determined to be about TiN1.0 from the position of the binding energy of Ti-N 2p3/2 and the quatitative analysis. The spectrum of Ti 2p energy level could be the sum of a 4, 5, or 6 Gaussian curve reconstruction, and the case of the sum of the 6 Gaussian curve reconstruction was physically most meaningful. From the results of Auger electron spectroscopy (AES), it was known that the composition was not varied significantly throughout the whole thickness of the film, and silicon oxide was not observed at the interface between the film and the substrate. The composition of the film was possible (TiO2)1-x.(TiN)x or TiO2-2xNx and in this experimental condition x was found to be about 0.21-0.16.

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Bio-toxicity of Titanium Dioxide Nano Particles (P-25) in Zebrafish Development Stage (Zebrafish 발생기에서 $TiO_2(P-25)$ 나노 입자의 생물 독성)

  • Yeo, Min-Kyeong;Jo, Yoon-Hee
    • Environmental Analysis Health and Toxicology
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    • v.22 no.3
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    • pp.189-196
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    • 2007
  • [ $TiO_2$ ] is widely used because it is non-toxic. Recently, however, nanometer size $TiO_2$ particles (P-25) have been produced and used to increase the photo catalysis efficiency. Nanometer-sized $TiO_2$ is efficient, but due to its small size ($20{\sim}30\;nm$), it can flow into ecosystems and into cells. Thus, it may affect human health. Additionally, $TiO_2$ can produce a second contaminant, OH-radical, which is a health risk for all living organisms during photo degradation reaction. Hence, when nanometer-sized $TiO_2$ flows into natural streams and attaches to living organisms, it will create health risks. We investigated the biological toxicity of this condition in zebrafish embryos. We observed abnormal morphology, hatching rate, and measured the catalase activity to determine anti-oxidation at 100 post fertilization hours. Zebrafish were somewhat affected by $TiO_2$ nanometer sized particles under UV-A (a condition similar to sunlight). Powdered $TiO_2$ is toxic to the zebrafish fly. Even without light, $TiO_2$ particles attached to embryos and flies, having an effect on both.

Specific Binding of Streptavidin onto the Nonbiofouling Titanium/Titanium Oxide Surface through Surface-Initiated, Atom Transfer Radical Polymerization and Bioconjugation of Biotin

  • Kang, Sung-Min;Lee, Bong-Soo;Kim, Wan-Joong;Choi, In-Sung S.;Kil, Mun-Jae;Jung, Hyuk-Jun;Oh, Eu-Gene
    • Macromolecular Research
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    • v.17 no.3
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    • pp.174-180
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    • 2009
  • Chemical modification of titanium/titanium oxide (Ti/$TiO_2$) substrates has recently gained a great deal of attention because of the applications of Ti/$TiO_2$-based materials to biomedical areas. The reported modification methods generally involve passive coating of Ti/$TiO_2$ substrates with protein-resistant materials, and poly(ethylene glycol) (PEG) has proven advantageous for bestowing a nonbiofouling property on the surface of Ti/$TiO_2$. However, the wider applications of Ti/$TiO_2$ based materials to biomedical areas will require the introduction of biologically active moieties onto Ti/$TiO_2$, in addition to nonbiofouling property. In this work, we therefore utilized surface-initiated polymerization to coat the Ti/$TiO_2$ substrates with polymers presenting the nonbiofouling PEG moiety and subsequently conjugated biologically active compounds to the PEG-presenting, polymeric films. Specifically, a Ti/$TiO_2$ surface was chemically modified to present an initiator for atom transfer radical polymerization, and poly(ethylene glycol) methacrylate (pEGMA) was polymerized from the surface. After activation of hydroxyl groups of poly(pEGMA) (pPEGMA) with N,N'-disuccinimidyl carbonate, biotin, a model compound, was conjugated to the pPEGMA films. The reactions were confirmed by infrared spectroscopy, X-ray photoelectron spectroscopy, contact angle goniometry, and ellipsometry. The biospecific binding of target proteins was also utilized to generate micropatterns of proteins on the Ti/$TiO_2$ surface.

Formation of Anatawe type TiO2 from Titanic acid (Titanic acid로부터 Anatase형 $TiO_2$의 형성에 관한 연구)

  • Kim, Hern;Kim, Dae-Woong;Lee, Kyung-Hee;Baik, Woon-Phil
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.9 no.5
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    • pp.510-515
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    • 1999
  • Synthesize of anatase type $TiO_2$ from $TiCl_4$ solution was studied. KOH was used on dehydration reaction of $TiCl_4$ solution. Products of dehydration reaction was calcined at 300, 500, 700, 900, $1000^{\circ}C$ during 1hour. Calcined products was studied by XRD, DTA, and FT-IR for effect of calcined temperature. The results are as follow. \circled1 Product pf dehydration reaction at$ 90^{\circ}C$ was semicrystalline anatase type $TiO_2$ because it has a peak vary broad and low at the position of anatase crysral XRD pattern. \circled2 Pure titanium oxide semi-crystalline products were produced at acid pH condition which convert to anatase crystal at $300^{\circ}C$ and to rutile crystal at $700^{\circ}C$. \circled3 The chemical composition of semicrystalline products which was produce at alkali pH conditions, were potasium titante. Potasium-titanate semi-crystalline products crystallized at 630~$640^{\circ}C$ \circled4 The transition temperature of potassium dopped titanium oxide semi-crystalline products was increased with the contents of potasium. \circled5 The optimum synthesise condition of anatase $TiO_2$ products from $TiCl_4$ and KOH are pH 3~5 and $300^{\circ}C$ calcination.

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