• 제목/요약/키워드: Water Raman

검색결과 133건 처리시간 0.027초

Biaxial flexural strength and phase transformation of Ce-TZP/$Al_2O_3$ and Y-TZP core materials after thermocycling and mechanical loading

  • Gungor, Merve Bankoglu;Yilmaz, Handan;Aydin, Cemal;Nemli, Secil Karakoca;Bal, Bilge Turhan;Tiras, Tulay
    • The Journal of Advanced Prosthodontics
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    • 제6권3호
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    • pp.224-232
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    • 2014
  • PURPOSE. The purpose of the present study was to evaluate the effect of thermocycling and mechanical loading on the biaxial flexural strength and the phase transformation of one Ce-TZP/$Al_2O_3$ and two Y-TZP core materials. MATERIALS AND METHODS. Thirty disc-shaped specimens were obtained from each material. The specimens were randomly divided into three groups (control, thermocycled, and mechanically loaded). Thermocycling was subjected in distilled water for 10000 cycles. Mechanical loading was subjected with 200 N loads at a frequency of 2 Hz for 100000 times. The mean biaxial flexural strength and phase transformation of the specimens were tested. The Weibull modulus, characteristic strength, 10%, 5% and 1% probabilities of failure were calculated using the biaxial flexural strength data. RESULTS. The characteristic strengths of Ce-TZP/$Al_2O_3$ specimens were significantly higher in all groups compared with the other tested materials (P<.001). Statistical results of X-ray diffraction showed that thermocycling and mechanical loading did not affect the monoclinic phase content of the materials. According to Raman spectroscopy results, at the same point and the same material, mechanical loading significantly affected the phase fraction of all materials (P<.05). CONCLUSION. It was concluded that thermocycling and mechanical loading did not show negative effect on the mean biaxial strength of the tested materials.

Unusual Facilitated Olefin Transport through Polymethacrylate/Silver Salt Complexes

  • Kim, Jong-Hak;Joo, Seung-Hwan;Kim, Chang-Kon;Kang, Yong-Soo;Jongok Won
    • Macromolecular Research
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    • 제11권5호
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    • pp.375-381
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    • 2003
  • Silver salt complex membranes with glassy poly(methyl methacrylate) (PMMA) unexpectedly showed higher propylene permeance than those with rubbery poly(butyl methacrylate) (PBMA) where as neat PMMA is much less permeable to propylene than that of neat PBMA. Such unusual facilitated olefin transport has been systematically investigated by changing the side chain length of polymethacrylates (PMAs) from methyl, ethyl to butyl. The ab initio calculation showed almost the same electron densities of the carbonyl oxygens in the three PMAs, expecting very similar intensity of the interaction between carbonyl oxygen and silver ion. However, the interaction intensity decreases with the length of the alkyl side chain: PMMA > PEMA > PBMA according to wide angle X-ray scattering and FT-Raman spectroscopy. The difference in the interaction intensity may arise from the difference in the hydrophilicity of the three PMAs, as confirmed by the contact angle of water, which determines the concentrations of the ionic constituents of silver salts: free ion, contact ion pair and higher order ionic aggregate. However, propylene solubilities and facilitated propylene transport vary with the side chain length significantly even at the same concentration of the free ion, the most active olefin carrier, suggesting possible difference in the prohibition of the molecular access of propylene to silver ion by the side chains: the steric hindrance. Therefore, it may be concluded that both the hydrophilicity and the steric hindrance associated with the side chain length in the three PMAs are of pivotal importance in determining facilitated olefin transport through polymer/silver salt complex membranes.

Synthesis and Characterization of MoS2/Graphene-TiO2 Ternary Photocatalysts for High-Efficiency Hydrogen Production under Visible Light

  • Zhang, Feng-Jun;Kong, Cui;Li, Xuan;Sun, Xian-Yang;Xie, Wen-Jie;Oh, Won-Chun
    • 한국세라믹학회지
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    • 제56권3호
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    • pp.284-290
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    • 2019
  • Ternary MoS2/graphene (G)-TiO2 photocatalysts were prepared by a simple hydrothermal method. The morphology, phase structure, band gap, and catalytic properties of the prepared samples were investigated by X-ray diffraction, Raman spectroscopy, scanning electron microscopy, UV-vis spectrophotometry, and Brunauer-Emmett-Teller surface area measurement. The H2 production efficiency of the prepared catalysts was tested in methanol-water mixture under visible light. MoS2/G-TiO2 exhibited the highest activity for photocatalytic H2 production. For 5 wt.% and 1 wt.% MoS2 and graphene (5MT-1G), the production rate of H2 was as high as 1989 µmol-1h-1. The catalyst 5MT-1G showed H2 production activity that was ~ 11.3, 5.6, and 4.1 times higher than those of pure TiO2, 1GT, and 5MT, respectively. The unique structure and morphology of the MoS2/G-TiO2 photocatalyst contributed to its improved hydrogen production efficiency under visible light.

Synthesis of CdS with Graphene by CBD(Chemical Bath Deposition) Method and Its Photocatalytic Activity

  • Pawar, R.C.;Lee, Jin-Yong;Kim, Eun-Jeong;Kim, Hyungsub;Lee, Caroline Sunyong
    • 한국재료학회지
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    • 제22권10호
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    • pp.504-507
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    • 2012
  • Synthesis of RGO (reduced graphene oxide)-CdS composite material was performed through CBD (chemical bath deposition) method in which graphene oxide served as the support and Cadmium Sulfate Hydrate as the starting material. Graphene-based semiconductor photocatalysts have attracted extensive attention due to their usefulness for environmental and energy applications. The band gap (2.4 eV) of CdS corresponds well with the spectrum of sunlight because the crystalline phase, size, morphology, specic surface area and defects, etc., of CdS can affect its photocatalytic activity. The specific surface structure (morphology) of the photocatalyst can be effective for the suppression of recombination between photogenerated electrons and holes. Graphene (GN) has unique properties such as a high value of Young's modulus, large theoretical specific surface area, excellent thermal conductivity, high mobility of charge carriers, and good optical transmittance. These excellent properties make GN an ideal building block in nanocomposites. It can act as an excellent electron-acceptor/transport material. Therefore, the morphology, structural characterization and crystal structure were observed using various analytical tools, such as X-ray diffraction, scanning electron microscopy, transmission electron microscopy, and Raman spectroscopy. From this analysis, it is shown that CdS particles were well dispersed uniformly in the RGO sheet. Furthermore, the photocatalytic property of the resulting RGO-CdS composite is also discussed in relation to environmental applications such as the photocatalytic degradation of pollutants. It was found that the prepared RGO-CdS nanocomposites exhibited enhanced photocatalytic activity as compared with that of CdS nanoparticles. Therefore, better efficiency of photodegradation was found for water purification applications using RGO-CdS composite.

라만 스펙트럼의 카보닐 신축진동 이동에 대한 용매효과 : 케톤 (Solvent Effects upon Carbonyl Stretching Freguency Shifts of Raman Spectra : Ketones)

  • 이인주;서성훈;이무상
    • 대한화학회지
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    • 제37권12호
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    • pp.987-994
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    • 1993
  • 유발효과와 공명효과는 케톤의 카르보닐기의 신축진동수를 결정하는데 중요한 역할을 하며 용액에서 수소결합, 유전효과 그리고 입체효과는 모두 케톤의 카르보닐 신축진동수, $ν_{C=O}$를 결정하는 인자이다. νC=O는 아세톤의 메틸기가 페닐기로 하나씩 치환될 때마다 약 27 $cm^{-1}$ 장파장 이동하였다. 케톤의$ν_{C=O}$진동수는 용매에 따라 다른 변화를 보이며 수용액에서 케톤의 부피비가 증가함에 따라 $ν_{C=O}$도 증가하였다. 케톤의 일정농도에서 $ν_{C=O}$ 진동수는 $(CH_3)_2SO/CCl_4$$CHCl_3/CCl_4$ 혼합 용매의 몰 비율 변화에 따라 연속적으로 이동하며 이로써 $ν_{C=O}$$(CH_3)_2SO$ 또는 $CCl_4$, $CHCl_3$ 또는 $CCl_4$의 농도 변화에 모두 영향을 받는다는 것을 알 수 있었다.

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Cultivation and Nutritional Value of Prominent Pleurotus spp.: An Overview

  • Raman, Jegadeesh;Jang, Kab-Yeul;Oh, Youn-Lee;Oh, Minji;Im, Ji-Hoon;Lakshmanan, Hariprasath;Sabaratnam, Vikineswary
    • Mycobiology
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    • 제49권1호
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    • pp.1-14
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    • 2021
  • Pleurotus species are commercially essential mushrooms and widely cultivated throughout the world. The production of Pleurotus mushrooms alone accounts for around 25% of that total cultivated mushrooms globally. In America and Europe, Pleurotus species are considered specialty mushrooms, whereas, in Korea, their cultivation is economically profitable, and it is one of the highly consumed species. Pleurotus species are predominantly found in tropical forests and often grow on fallen branches, dead and decaying tree stumps, and wet logs. Biographical studies have shown that the Pleurotus genus is among the more conspicuous fungi that induce wood decay in terrestrial ecosystems worldwide due to its formidable lignin-modifying enzymes, including laccase and versatile peroxidases. Pleurotus species can be grown easily due to their fast colonization nature on diversified agro-substrates and their biological efficiency 100%. Pleurotus mushrooms are rich in proteins, dietary fiber, essential amino acids, carbohydrates, water-soluble vitamins, and minerals. These mushrooms are abundant in functional bioactive molecules, though to influence health. Pleurotus mushrooms are finding unique applications as flavoring, aroma, and excellent preservation quality. Apart from its unique applications, Pleurotus mushrooms have a unique status delicacy with high nutritional and medicinal values. The present review provides an insight into the cultivation of Pleurotus spp. using different agro-waste as growth substances paying attention to their effects on the growth and chemical composition.

리튬이차전지 양극 분말 소재 위 탄소나노튜브의 직접 성장 거동 고찰 (Investigation of direct growth behavior of carbon nanotubes on cathode powder materials in lithium-ion batteries)

  • 한현호;이종환;정구환
    • 한국표면공학회지
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    • 제57권1호
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    • pp.22-30
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    • 2024
  • This study reports a direct growth of carbon nanotubes (CNTs) on the surface of LiCoO2 (LCO) powders to apply as highly efficient cathode materials in lithium-ion batteries (LIB). The CNT synthesis was performed using a thermal chemical vapor deposition apparatus with temperatures from 575 to 625 ℃. Ferritin molecules as growth catalyst of CNTs were mixed in deionized (DI) water with various concentrations from 0.05 to 1.0 mg/mL. Then, the LCO powders was dissolved in the ferritin solution at a ratio of 1g/mL. To obtain catalytic iron nanoparticles on the LCO surface, the LCO-ferritin suspension was dropped in silicon dioxide substrates and calcined under air at 550℃. Subsequently, the direct growth of CNTs on LCO powders was performed using a mixture of acetylene (10 sccm) and hydrogen (100 sccm) for 10 min. The growth behavior was characterized by scanning and transmission electron microscopy, Raman scattering spectroscopy, X-ray diffraction, and thermogravimetric analysis. The optimized condition yielding high structural quality and amount of CNTs was 600 ℃ and 0.5 mg/mL. The obtained materials will be developed as cathode materials in LIB.

Development of Zinc-Doped Titanium Dioxide Coatings with Enhanced Biocompatibility for Biomedical Application

  • Minseo Yu;Yo Han Song;Mi-Kyung Han
    • 한국재료학회지
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    • 제34권8호
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    • pp.377-386
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    • 2024
  • The surface of titanium (Ti) dental implants was modified by applying a zinc (Zn)-doped titanium dioxide (TiO2) coating. Initially, the Ti surfaces were etched with NaOH, followed by a hydrolysis co-condensation using tetrabutyl titanate (TBT, Ti(OC4H9)4) and zinc nitrate hexahydrate (Zn(NO3)2·6H2O), with ammonia water (NH3·H2O) acting as a hydroxide anion source. The morphology and chemical composition of the Zn-doped TiO2-coated Ti plates were characterized using X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), Raman spectroscopy, and scanning electron microscopy (SEM). Synthesis temperatures were carefully adjusted to produce anatase Zn-doped TiO2 nanoparticles with a bipyramidal structure and approximate sizes of 100 nm. Wettability tests and cell viability assays demonstrated the biomedical potential of these modified surfaces, which showed high biocompatibility with a survival rate of over 95 % (p < 0.05) and improved wettability. Corrosion resistance tests using potentiodynamic polarization reveal that Zn-TiO2-treated samples with an anatase crystal structure exhibited a lower corrosion current density and more noble corrosion potential compared to samples coated with a rutile structure. This method offers a scalable approach that could be adapted by the biomaterial industry to improve the functionality and longevity of various biomedical implants.

Antioxidant activity of partially characterized polysaccharides from the edible mushroom Pleurotus djamor var. roseus

  • Raman, Jegadeesh;Sivakumar, Archana;Lakshmanan, Hariprasath;Raaman, Nanjian;Shin, Hyun-Jae
    • 한국버섯학회지
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    • 제19권3호
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    • pp.140-149
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    • 2021
  • 버섯 다당류는 면역 조절 기능, 항암 및 항산화 활성을 비롯하여 항바이러스 활성과 방사선스트레스의 경감등 인체에 유익한 다양한 생리활성을 나타낸다. 본 연구에서는 분홍느타리버섯 (Pleurotus djamor var. roseus Corner)으로부터 뜨거운 물과 에탄올 침전을 이용하여 5.6%의 수율로 갈색을 띠는 경화된 다당류(CPs)를 순차적으로 추출하였다. 이렇게 추출된 CP는 Diethylaminoethyl cellulose(DEAE) 및 sepharose-6B 컬럼 분리를 통해 4개의 분획을 얻었고 각 분획의 총 글루칸 함량은 각각 76.85%, 2.95%, 75.08%, 1.46%로 밝혀졌다. 이중 가장 높은 수율의 분획(PP)으로부터 300 mg의 백색 분말이 얻어 졌으며, 박층 크로마토그래피(TLC)와 푸리에 변환 적외선 분광법(FTIR)의 결과로부터 자일로펜토스 유형의 화합물과 함께 다당류 부분의 존재를 확인하였다. PP의 항산화 활성은 1,1-diphenyl-2-picryl-hydrazyl(DPPH) 자유라디칼 소거 분석 및 슈퍼옥사이드 라디칼 소거 분석을 통하여 높은 활성을 나타냄을 확인하였다. PP분획에는 페놀, 단백질 및 단순 탄수화물이 없는 정제된 베타글루칸이 주 구성성분으로, 정제된 다당류가 천연 항산화제로 사용될 수 있음을 알 수 있었다.

열수 연신시 흑연화 촉매 도입에 따른 탄소섬유의 흑연화 촉진효과 (Catalytic Effects on Graphitized Carbon Fibers of Graphitization Catalysts Introduced during Hot-Water Stretching)

  • 조현재;이혜린;김병석;정용식
    • Composites Research
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    • 제37권3호
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    • pp.162-169
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    • 2024
  • 본 논문에서는 습식 방사 공정을 통한 PAN(polyacrylonitrile)계 전구체 섬유의 형태학적 제어 및 2종의 흑연화 촉진제(Ca, Ni)가 도입된 PAN계 탄소섬유의 흑연화 거동을 조사하였다. 흑연화 촉진제는 습식방사된 PAN 계 전구체 섬유의 열수 연신시 형성된 기공으로 도입되었으며, 결정구조 및 라만 분석을 통해 흑연화 촉진효과를 검토하였다. 1500℃의 상대적으로 낮은 온도에서는 흑연화에 큰 영향을 주지 않은 반면에, 2400℃의 고온에 서는 흑연화 촉진제 미처리 섬유와 비교하여 ID/IG 비율이 최대 2배까지 감소하는(GF-AS 0.54: GF-Ni100 0.28) 경향을 나타냈다. 흑연화도(degree of graphitization)는 Ca 흑연화 촉진제와 비교하여 Ni 흑연화 촉진제가 더 큰 영향을 끼침을 ID/IG 비율을 비교하여(GF-Ca100 0.42: GF-Ni100 0.28) 확인할 수 있었다. 또한, 2D band의 존재로부터 흑연평면구조가 다층으로 구성되어 있음을 알 수 있었다. 흑연결정의 결정면간거리(d002)에 대한 흑연화 촉진제 효과는 미비하였으나, 특히 Ca 흑연화 촉진제 처리된 흑연섬유(GF-Ca100)의 경우 최대 ~5 nm 결정 크기가 증가함이 확인되었다.