• 제목/요약/키워드: SEM-EDS

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From Paris and Shanghai to Singapore: A Multidisciplinary Study in Evaluating the Provenance and Dating of Two of Liu Kang's Paintings

  • Lizun, Damian
    • 보존과학회지
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    • 제37권4호
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    • pp.322-339
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    • 2021
  • This paper focuses on the dating and provenance of two paintings, Climbing the hill and View from St. John's Fort by the prominent Singaporean artist Liu Kang (1911-2004). Climbing the hill, from the National Gallery Singapore collection, was believed to have been created in 1937, based on the date painted by the artist. However, a non-invasive examination unveiled evidence of an underlying paint scheme and a mysterious date, 1948 or 1949. These findings prompted a comprehensive technical study of the artwork in conjunction with comparative analyses of View from St. John's Fort (1948), from the Liu family collection. The latter artwork is considered to be depicting the same subject matter. The investigation was carried out with UVF, NIR, IRFC, XRR, digital microscopy, PLM and SEM-EDS to elucidate the materials and technique of both artworks and find characteristic patterns that could indicate a relationship between both paintings and assist in correctly dating Climbing the hill. The technical analyses were supplemented with the historical information derived from the Liu family archives. The results showed that Climbing the hill was created in 1948 or 1949 on top of an earlier composition painted in Shanghai between 1933 and 1937. As for the companion View from St. John's Fort from 1948, the artist reused an earlier painting created in France in 1931. The analytical methods suggested that Liu Kang used almost identical pigment mixtures for creating new artworks. However, their painting technique demonstrates some differences. Overall, this study contributes to the understanding of Liu Kang's painting materials and his working practice.

나노영가철/활성탄 입자전극과 과황산을 이용한 3차원 전기화학적 산화공정 (Three-dimensional Electrochemical Oxidation process using Nanosized Zero-valent Iron/Activated carbon as Particle electrode and Persulfate)

  • 민동준;김철용;안준영;조수빈;황인성
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제23권6호
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    • pp.104-113
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    • 2018
  • A three-dimensional electrochemical process using nanosized zero-valent iron (NZVI)/activated carbon (AC) particle electrode and persulfate (PS) was developed for oxidizing pollutants. X-ray diffraction (XRD), scanning electron microscopy with energy dispersive spectroscopy (SEM-EDS), and Brunauer-Emmett-Teller (BET) surface area analysis were performed to characterize particle electrode. XRD and SEM-EDS analysis confirmed that NZVI was impregnated on the surface of AC. Compared with the conventional two-dimensional electrochemical process, the three-dimensional particle electrode process achieved three times higher efficiency in phenol removal. The system with current density of $5mA/cm^2$ exhibited the highest phenol removal efficiency among the systems employing 1, 5, and $10mA/cm^2$. The removal efficiency of phenol increased as the Fe contents in the particle electrode increased. The particle electrode achieved more than 70% of phenol removal until it was reused for three times. The sulfate radical played a predominant role in phenol removal according to the radical scavenging test.

졸-겔 공정으로 제조한 나노 실리카의 표면개질 및 가스차단성 필름으로의 응용 (Surface Modification of Nano Silica Prepared by Sol-gel Process and Subsequent Application towards Gas-barrier Films)

  • 장효준;장미정;남광현;정대원
    • 공업화학
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    • 제30권1호
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    • pp.68-73
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    • 2019
  • 실리카 표면의 개질을 위하여 다양한 조건 하에서 tetraethyl orthosilicate (TEOS)로부터 졸-겔 공법으로 제조한 실리카 졸에 실란 커플링제인 octyltrimethoxysilane (OTMS) 또는 hexadecyltrimethoxysilane (HDTMS)을 반응시켰다. 얻어진 반응물들의 SEM-EDS, 열분석 및 원소분석을 통하여 실리카의 표면이 유기물로 개질된 것을 확인할 수 있었다. 유기용매에서의 분산성 및 에폭시 수지와 복합화한 필름의 표면 조도 등을 평가한 결과, 에탄올을 용매로 사용하여 $50^{\circ}C$에서 TEOS를 24 h 가수분해하고, OTMS를 2 h 반응시킨 물질이 최적으로 나타났다. 이와 같은 표면 개질 실리카를 포함하는 복합체 필름의 산소 투과도를 측정한 결과, 개질 실리카를 포함하지 않는 필름에 비하여 산소 투과도가 12% 저하된 것을 확인할 수 있었다.

KOH Activated Nitrogen Doped Hard Carbon Nanotubes as High Performance Anode for Lithium Ion Batteries

  • Zhang, Qingtang;Li, Meng;Meng, Yan;Li, An
    • Electronic Materials Letters
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    • 제14권6호
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    • pp.755-765
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    • 2018
  • In situ nitrogen doped hard carbon nanotubes (NHCNT) were fabricated by pyrolyzing tubular nitrogen doped conjugated microporous polymer. KOH activated NHCNT (K-NHCNT) were also prepared to improve their porous structure. XRD, SEM, TEM, EDS, XPS, Raman spectra, $N_2$ adsorption-desorption, galvanostatic charging-discharge, cyclic voltammetry and EIS were used to characterize the structure and performance of NHCNT and K-NHCNT. XRD and Raman spectra reveal K-NHCNT own a more disorder carbon. SEM indicate that the diameters of K-NHCNT are smaller than that of NHCNT. TEM and EDS further indicate that K-NHCNT are hollow carbon nanotubes with nitrogen uniformly distributed. $N_2$ adsorption-desorption analysis reveals that K-NHCNT have an ultra high specific surface area of $1787.37m^2g^{-1}$, which is much larger than that of NHCNT ($531.98m^2g^{-1}$). K-NHCNT delivers a high reversible capacity of $918mAh\;g^{-1}$ at $0.6A\;g^{-1}$. Even after 350 times cycling, the capacity of K-NHCNT cycled after 350 cycles at $0.6A\;g^{-1}$ is still as high as $591.6mAh\;g^{-1}$. Such outstanding electrochemical performance of the K-NHCNT are clearly attributed by its superior characters, which have great advantages over those commercial available carbon nanotubes ($200-450mAh\;g^{-1}$) not only for its desired electrochemical performance but also for its easily and scaling-up preparation.

리튬이온전지용 양극활물질 LiNi0.83 Co0.11Mn0.06O2의 전기화학적 특성에 미치는 Ce와 Nd 희토류 금속의 단독 혹은 이중 도핑효과 (Effect of Single and Dual Doping of Rare Earth Metal Ce and Nd Elements on Electrochemical Properties of LiNi0.83 Co0.11Mn0.06O2Cathode Lithium-ion Battery Material)

  • 김유영;하종근;조권구
    • 한국분말재료학회지
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    • 제26권1호
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    • pp.49-57
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    • 2019
  • Layered $LiNi_{0.83}Co_{0.11}Mn_{0.06}O_2$ cathode materials single- and dual-doped by the rare-earth elements Ce and Nd are successfully fabricated by using a coprecipitation-assisted solid-phase method. For comparison purposes, non-doping pristine $LiNi_{0.83}Co_{0.11}Mn_{0.06}O_2$ cathode material is also prepared using the same method. The crystal structure, morphology, and electrochemical performances are characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive spectrometer (EDS) mapping, and electrochemical techniques. The XRD data demonstrates that all prepared samples maintain a typical ${\alpha}-NaFeO_2$-layered structure with the R-3m space group, and that the doped samples with Ce and/or Nd have lower cation mixing than that of pristine samples without doping. The results of SEM and EDS show that doped elements are uniformly distributed in all samples. The electrochemical performances of all doped samples are better than those of pristine samples without doping. In addition, the Ce/Nd dual-doped cathode material shows the best cycling performance and the least capacity loss. At a 10 C-rate, the electrodes of Ce/Nd dual-doped cathode material exhibit good capacity retention of 72.7, 58.5, and 45.2% after 100, 200, and 300 cycles, respectively, compared to those of pristine samples without doping (24.4, 11.1, and 8.0%).

적층공정법으로 제작된 CoCrMo 합금의 복합열처리 효과 (Complex heat-treatment effects on as-built CoCrMo alloy)

  • 이정일;김형균;정경환;김강민;손용;류정호
    • 한국결정성장학회지
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    • 제28권6호
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    • pp.250-255
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    • 2018
  • 본 연구에서는 3D-프린팅 적층 공정으로 제조한 인공관절용 CoCrMo 합금 소재의 HIP 처리를 포함한 복합열처리 후 소재의 인장특성, 내마모 특성 등의 기계적 특성과 결정구조 및 미세조직 등의 재료특성 변화를 고찰하였다. 내부마이크로 기공을 제거하기 위한 HIP 열처리와 금속탄화물 생성을 위한 상압열처리 및 금속탄화물의 균질화를 위한 용체화 열처리를 거치는 복합열처리 공정을 실시하여 인공관절 소재로서의 특성을 부여하고자 하였다. 3D-프린팅 적층 공정으로 제조한 인공관절용 CoCrMo 합금 소재의 복합열처리 효과는 HIP 공정중의 치밀화 과정, 상압열처리 중의 금속탄화물 생성 및 용체화 열처리 과정중의 금속탄화물의 균질화 효과임을 XRD, FE-SEM, EDS 분석으로 확인하였다.

수열 합성법으로 제조된 구형의 실리콘/탄소 음극소재의 전기화학적 특성 (Electrochemical Performances of Spherical Silicon/Carbon Anode Materials Prepared by Hydrothermal Synthesis)

  • 최나현;이종대
    • Korean Chemical Engineering Research
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    • 제59권3호
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    • pp.326-332
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    • 2021
  • 본 연구에서는 수열 합성법을 이용하여 나노 실리콘이 포함된 구형의 탄소 복합체를 합성하고, 석유계 피치로 코팅하여 제조된 음극 소재의 전기화학 특성을 조사하였다. 수크로스의 몰 농도를 변화시켜 수열합성한 후, 유기 용매로 THF를 사용하여 피치로 코팅된 음극 복합소재를 제조하였다. 제조된 음극 소재는 SEM, EDS, XRD 및 TGA를 사용하여 물리적 특성을 분석하였으며, 1.0 M LiPF6 (EC : DMC : EMC = 1 : 1 : 1 vol%) 전해액에서 사이클, 율속, 순환전압전류 및 임피던스 테스트를 통해 리튬이차전지의 전기화학 성능을 조사하였다. 1.5 M의 수크로스와 피치를 사용하여 제조된 실리콘/탄소 소재는 구형 형태를 보였으며, 1756 mAh/g의 높은 초기 용량, 50 사이클 후 82 %의 용량 유지율 및 2 C/0.1 C에서 81%의 우수한 속도 특성을 확인할 수 있었다.

Effect of Inorganic Nanocomposite Based Liners on Deodorization of Kimchi

  • Chung, Kwon;Park, Hyun Jin;Shin, Yang Jai
    • 한국포장학회지
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    • 제27권2호
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    • pp.55-62
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    • 2021
  • This study aims to reduce the rancid odor generated during the fermentation process of kimchi by inserting zinc oxide (ZnO) into an inorganic porous material with a high surface area to decompose or adsorb the fermentation odor. ZnO activated by the presence of moisture exhibits decomposition of rancid odors. Mixed with Titanium dioxide (TiO2), a photocatalyst. To manufacture the packaging liner used in this study, NaOH, ZnCl2, and TiO2 powder were placed in a tank with diatomite and water. The sludge obtained via a hydrothermal ultrasonication synthesis was sintered in an oven. After being pin-milled and melt-blended, the powders were mixed with linear low-density polyethylene (L-LDPE) to make a masterbatch (M/B), which was further used to manufacture liners. A gas detector (GasTiger 2000) was used to investigate the total amount of sulfur compounds during fermentation and determine the reduction rate of the odor-causing compounds. The packaging liner cross-section and surface were investigated using a scanning electron microscope-energy dispersive X-ray spectrometer (SEM-EDS) to observe the adsorption of sulfur compounds. A variety of sulfur compounds associated with the perceived unpleasant odor of kimchi were analyzed using gas chromatography-mass spectrometry (GC-MS). For the analyses, kimchi was homogenized at room temperature and divided into several sample dishes. The performance of the liner was evaluated by comparing the total area of the GC-MS signals of major off-flavor sulfur compounds during the five days of fermentation at 20℃. As a result, Nano-grade inorganic compound liners reduced the sulfur content by 67 % on average, compared to ordinary polyethylene (PE) foam liners. Afterwards SEM-EDS was used to analyze the sulfur content adsorbed by the liners. The findings of this study strongly suggest that decomposition and adsorption of the odor-generating compounds occur more effectively in the newly-developed inorganic nanocomposite liners.

섬아연석 억제제인 황산아연과 잔세이트의 상호 작용에 관한 연구 (Study on the Interaction between Depressants Zinc Sulfate and Xanthate on the Flotation of Sphalerite)

  • 김민규;유광석
    • 자원리싸이클링
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    • 제29권6호
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    • pp.98-103
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    • 2020
  • 섬아연석(Sphalerite, ZnS)을 대상으로 억제제 황산아연(zinc sulfate, ZnSO4)과 포수제인 포타슘 부틸 잔세이트(potassium butyl xanthate(KBX), C5H9KOS2)과의 상호 작용 및 이에 따른 섬아연석의 억제 거동을 규명하고자 섬아연석 부유 선별 실험을 진행했다. 실험 결과, 억제제인 황산아연 첨가량이 일정 농도 이상에서는 KBX의 첨가로 섬아연석의 오히려 억제 효과가 떨어졌다. 할리몬드 튜브(Hallimond Tube) 부유선별 실험을 통해 얻어진 정광과 맥석을 대상으로 주사형 전자현미경/X선 분광분석(Scanning electron microscope/energy dispersive spectroscopy, SEM-EDS: TM3000, Tabletop Microscope, HITACH)과 푸리에 변환 적외선분광법(Fourier-transform infrared spectroscopy, FT-IR: NICOLET 6700, Thermo SCIENTIFIC)로 분석한 결과 정광에서는 비정질의 Zn-butyl xanthate(Zn-BX)가 생성되어 광물 입자에 흡착되어 있는 것을 확인 했다. 이러한 생성물은 용액 내 첨가된 황산아연의 용해에 따른 잔류 Zn 이온과 KBX 이온이 반응하여 생성되었다. 즉, 용액의 [Zn+]·[BX] 용해도 곱이 3.71×10-11 이상에서 Zn-butyl xanthate이 생성되며, 이로 인해 섬아연석 억제에 부정적인 영향을 끼치는 것으로 나타났다.

열분해 온도와 성형압력의 영향에 따른 비정질 탄화규소 블록의 치밀화 (Effect of pyrolysis temperature and pressing load on the densification of amorphous silicon carbide block)

  • 주영준;주상현;조광연
    • 한국결정성장학회지
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    • 제30권6호
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    • pp.271-276
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    • 2020
  • 본 연구에서는 유기 규소 폴리머(organosilicon polymer)인 폴리카보실란(polycarbosilane, PCS)을 사용하여 비정질 탄화규소 블록을 제조를 진행하였다. 다양한 형상의 치밀한 탄화규소 블록은 큐어링된 PCS 미세분말을 일축가압성형기를 통해 2~8 ton 하중을 가한 후 1100℃, 1200℃, 1300℃, 1400℃의 열처리 과정을 거쳐 제조되었으며, 물리적 화학적 특성 분석을 위해 열중량분석기(TGA), 주사전자현미경(SEM), 에너지분광분석법(EDS), 만능시험기(UTM)을 이용하였다, 제조된 탄화규소 성형체는 열분해 온도가 증가함에 따라 SiO와 CO 가스로의 분해가 발생하였고, 비정질의 구조에서 β-SiC 결정입자가 성장함을 보였다. 또한, 밀도와 굴곡강도는 1100℃의 열분해 온도에서 제조된 탄화규소 성형체가 1.9038 g/㎤과 6.189 MPa으로 가장 높았다. 제조된 비정질 탄화규소 블록은 이전에 보고된 마이크로파 도움 발열체와 같이 다른 분야에 적용 가능할 것으로 기대된다.