• Title/Summary/Keyword: Atomic emission

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플라즈마 분자선 에피택시에 의해 성장 멈춤법으로 증착된 완충층에 성장된 ZnO 박막의 특성 변화

  • Im, Gwang-Guk;Kim, Min-Su;Kim, So-ARam;Nam, Gi-Ung;Park, Dae-Hong;Cheon, Min-Jong;Lee, Dong-Yul;Kim, Jin-Su;Kim, Jong-Su;Lee, Ju-In;Im, Jae-Yeong
    • Proceedings of the Korean Vacuum Society Conference
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    • 2011.02a
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    • pp.83-83
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    • 2011
  • 본 연구에서는 p-type Si (100) 위에 분자선 에피택시 성장방법으로 ZnO 완충층이 삽입된 ZnO 박막을 성장시켰다. ZnO 완충층은 Zn 셀 셔터의 열림/닫힘을 반복하는 성장 멈춤법으로 성장되었다. Zn 셀 셔터의 열림 시간은 4분, 2분, 1분이며 닫힘 시간은 2분으로 동일하게 유지하였다. 이러한 과정은 각각 5, 10, 20회로 반복되었으며 ZnO 완충층을 성장한 후 ZnO 박막은 기존의 분자선 에피택시 방법으로 성장되었다. ZnO 박막의 구조적, 광학적 특성은 field-emission scanning electron microscopy (FE-SEM), atomic force microscopy (AFM), X-ray diffraction (XRD), photoluminescence (PL)로 조사하였다. SEM 측정결과 성장 멈춤 횟수가 증가함에 따라 ZnO 박막의 표면은 섬(island) 구조에서 미로(maze) 구조로 변화하였고, XRD 측정결과 full-width at half-maximum (FWHM) 이 감소하고 결정립 크기(grain size)가 증가하였다. 그리고 PL 측정결과 성장 멈춤 횟수가 증가함에 따라 near-band-edge emission (NBE) 피크의 세기가 증가하였고 deep-level emission (DLE) 피크의 위치는 오렌지 발광에서 녹색 발광으로 청색편이(blue-shift)하였다.

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He-Polymer Microchip Plasma (PMP) System Incorporating a Gas Liquid Separator for the Determination of Chlorine Levels in a Sanitizer Liquid

  • Oh, Joo-Suck;Kim, Y.H.;Lim, H.B.
    • Bulletin of the Korean Chemical Society
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    • v.30 no.3
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    • pp.595-598
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    • 2009
  • The authors describe an analytical method to determine total chlorine in a sanitizer liquid, incorporating a lab-made He-rf-plasma within a PDMS polymer microchip. Helium was used instead of Ar to produce a plasma to achieve efficient Cl excitation. A quartz tube 1 mm i.d. was embedded in the central channel of the polymer microchip to protect it from damage. Rotational temperature of the He-microchip plasma was in the range 1350-3600 K, as estimated from the spectrum of the OH radical. Chlorine was generated in a volatilization reaction vessel containing potassium permanganate in combination of sulfuric acid and then introduced into the polymer microchip plasma (PMP). Atomic emission lines of Cl at 438.2 nm and 837.7 nm were used for analysis; no emission was observed for Ar plasma. The achieved limit of detection was 0.81 ${\mu}g\;mL^{-1}$ (rf powers of 30-70 W), which was sensitive enough to analyze sanitizers that typically contained 100-200 ${\mu}g\;mL^{-1}$ of free chlorine in chlorinated water. This study demonstrates the usefulness of the devised PMP system in the food sciences and related industries.

Effects of Surface Roughness on the Thermal Emissivity of IG-11 Graphite for Nuclear Reactor (IG-11 원자로용 흑연의 열방사 특성에 미치는 표면 거칠기의 영향)

  • Roh, Jae-Seung;Seo, Seung-Kuk;Kim, Suk Hwan;Chi, Se-Hwan;Kim, Eung-Seon;Kim, Hye Sung
    • Korean Journal of Metals and Materials
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    • v.49 no.7
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    • pp.557-564
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    • 2011
  • This paper reports the relationship between the surface roughness and thermal emissivity of graphite (IG-11) in nuclear reactors. The roughness was controlled by changing the oxidization time, resulting in 0, 6, and 11% losses of mass. The levels of roughness were 0.40, 0.72 and 1.09${\mu}m$ for the weight loss of 0, 6 and 11%, respectively. The binders and graphite fillers were found to have sequentially oxidized with a higher thermal emission for the highly oxidized sample, but with a lower emission when measured at a higher temperature. Our study suggests a method for predicting the thermal emission rate of graphite in a nuclear reactor based on roughness measurement.

Damage Monitoring of Concrete With Acoustic Emission Method for Nuclear Waste Storage: Effect of Temperature and Water Immersion

  • Park, June-Ho;Kwon, Tae-Hyuk;Han, Gyeol;Kim, Jin-Seop;Hong, Chang-Ho;Lee, Hang-Lo
    • Journal of Nuclear Fuel Cycle and Waste Technology(JNFCWT)
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    • v.20 no.3
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    • pp.297-306
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    • 2022
  • The acoustic emission (AE) is proposed as a feasible method for the real-time monitoring of the structural damage evolution in concrete materials that are typically used in the storage of nuclear wastes. However, the characteristics of AE signals emitted from concrete structures subjected to various environmental conditions are poorly identified. Therefore, this study examines the AE characteristics of the concrete structures during uniaxial compression, where the storage temperature and immersion conditions of the concrete specimens varied from 15℃ to 75℃ and from completely dry to water-immersion, respectively. Compared with the dry specimens, the water-immersed specimens exhibited significantly reduced uniaxial compressive strengths by approximately 26%, total AE energy by approximately 90%, and max RA value by approximately 70%. As the treatment temperature increased, the strength and AE parameters, such as AE count, AE energy, and RA value, of the dry specimens increased; however, the temperature effect was only minimal for the immersed specimens. This study suggests that the AE technique can capture the mechanical damage evolution of concrete materials, but their AE characteristics can vary with respect to the storage conditions.

A Direct Reading Atomic Emission Spectrometer for Chemical Analysis in the Iron and Steels (직독식 원자방출분광기를 이용한 철강중의 성분원소 분석)

  • Kim, Yeong Man;Jeong, Chan Lee;Kim, Seon Tae;Choe, Beom Seok
    • Journal of the Korean Chemical Society
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    • v.38 no.11
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    • pp.800-807
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    • 1994
  • A method to determine the iron and steels employing a Direct Reading Atomic Emission Spectrometer was investigated. Matrix effect was removed by two correction methods which utilize linear and curvilinear functions. Although two methods gave different sets of matrix correction coefficients, the analytical results by the two methods gave the same results. The analytical results obtained by the present work were well agreed with those obtained by inductively coupled plasma spectrometry.

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Low & Intermediate Level Radioactive Waste Vitrification Using Plasma Arc Melting Technology

  • Min Byeong-Yeon
    • Nuclear Engineering and Technology
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    • v.35 no.5
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    • pp.482-496
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    • 2003
  • effectiveness of the PAM graphite-electrode technology for the treatment of many types of low-level radioactive waste including : combustible material, solidified resins in cement, inorganic materials, steel, glass, and solidified boric acid cement. The objectives of PAM-200 evaluation were to verify that 1) the facility meets air emission regulations, 2) the facility can be safely operated when processing hazardous and radioactive materials and 3) satisfactory final waste forms can be produced. Results, derived from KAERI's(Korea Atomic Energy Research Institute) analyses for samples of vitrified product, scrubbing solution and offgas collected during test period, show that PAM-200 can treat radioactive wastes as well as hazardous wastes with toxic constituents and radionuclides contained in the offgas exiting from the stack to the environment controlled to be far lower than the limit regulated by air conservation law and atomic law.

Setup and Atomic Calibration of Particle Induced X-ray Emission System

  • Song, Jin-Ho;Song, Jae-Bong;;Kim, Jun-Gon
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.206.2-206.2
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    • 2014
  • Recently, particle induced X-ray emission (PIXE) analysis system was installed at the 2MV ion acceleration system in Korea institute science and technology (KIST). This installation is for complement to low atomic resolution of heavy atoms at Rutherford backscattering spectrometry (RBS) system. For quantitative analysis, a mass calibration of the PIXE set-up has been done with thin film standards and. The GUPIX software package has been used to process the PIXE spectra and the results are compared with the values from RBS system. Therefore, the instrumental constant H (solid angle and correction factor) is determined relying completely on the GUPIX data base (cross-sections, fluorescence and Coster-Kronig probabilities, stopping powers and attenuation coefficients) for a large set of elements. These H values can be used in future analysis.

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Synthesis of 68Ga-labeled gold nanoparticles for tumor targeted positron emission tomography imaging

  • Jeon, Jongho;Choi, Mi Hee
    • Journal of Radiopharmaceuticals and Molecular Probes
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    • v.1 no.1
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    • pp.46-52
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    • 2015
  • Herein we present the synthesis of $^{68}Ga$-labeled gold nanoparticles for in vivo PET imaging. A novel chelator DTPA-Cys was easily prepared from diethylenetriaminepentaacetic dianhydride in high yield. The ${\alpha}_v{\beta}_3$ integrin receptor targeted gold nanoparticle probe was synthesized by using DTPA-Cys, polyethylene glycol and cRGD peptide. $^{68}Ga$ labeling of cRGD conjugated gold nanoparticle was carried out at $40^{\circ}C$ for 30 min. Observed radiochemical yield was more than 75% as determined by radio-TLC and the probe was purified by centrifugation. In vitro stability test showed that 90% of $^{68}Ga$-labeled gold nanoparticle probe was stable in FBS for 1 h. Those results demonstrated that $^{68}Ga$-labeled gold nanoparticle could be used as a potentially useful probe for specific tumor imaging.

A study of neutron activation analysis compared to inductively coupled plasma atomic emission spectrometry for geological samples in Iran

  • Mohammadzadeh, Mohammad;Ajami, Mona;shadeghipanah, Arash;Rezvanifard, Mehdi
    • Nuclear Engineering and Technology
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    • v.50 no.8
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    • pp.1349-1354
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    • 2018
  • Inductively Coupled Plasma Atomic Emission Spectroscopy (ICP-AES) is widely used for the determination of trace elements in geological samples in Iran. In this paper, we have calculated the detection limits of neutron activation analysis (NAA) for some of the common elements in such samples utilizing the ORIGEN and MCNP codes and verified the simulations using the experimental results of three soil standard reference materials, namely, G02.SRM, G18.SRM, and G28.SRM. The results show that while the detection limit of ICP-AES method is usually in the mg/kg range, it is represented to the ${\mu}g/kg$ range for most of the elements of interest using the NAA method, and the simulations can be verified in a tolerance range of 20%.

Radiative Transfer in Highly Thick Media through Rayleigh and Raman Scattering with Atomic Hydrogen

  • Chang, Seok-Jun
    • The Bulletin of The Korean Astronomical Society
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    • v.46 no.2
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    • pp.40.1-40.1
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    • 2021
  • Hydrogen is the most abundant element in the universe, which is, in the cosmological context, attributed to its simplest structure consisting of a proton and an electron. Hydrogen interacts with an electromagnetic wave in astrophysical environments. Rayleigh scattering refers to elastic scattering, where the frequencies of the incident and scattered photons are the same. Rayleigh and resonance scattering is a critical role study Lyman Alpha objects in the early universe. The scattering causes the frequency and spatial diffusion of Lyα. In the case of Raman scattering, the energies of the incident and scattered photons are different. The photons near Lyβ convert to the optical photons near Hα through Raman scattering. The photon scattered by atomic hydrogen can carry both of the properties of the H I region and the emission region. I adopt a Monte Carlo approach to investigate the formation of the various spectral line features through Rayleigh and Raman scattering in highly thick media of atomic hydrogen. In this thesis, I present my works on radiative transfer involving the scattering processes between far UV photon and atomic hydrogen. I introduce scattering processes with atomic hydrogen and the spectral, spatial, and polarized information originating from the scattering.

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