• 제목/요약/키워드: dimethysulfoxide(DMSO)

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액체 레이저의 매질 개발을 목적으로 한 $Nd^{3+}$ 착물의 광학적 특성 (Optical properties of $Nd^{3+}$ complexes for liquid laser material)

  • 김정호
    • 한국광학회지
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    • 제10권4호
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    • pp.318-322
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    • 1999
  • 액체 레이저의 매질 개발을 목적으로 $Nd^{3+}$ 주위에 저진동 모드의 결합으로 배위자를 형성하는 $Nd(HFA-D)_3$ 착물에 있어서의 $Nd^{3+}$ 이온의 발광특성은 유기용매의 종류에 의존하며, 강한 배위능력을 지니고 있는 용매일수록 발광특성이 우수한 결과로부터 액체 레이저 매질의 개발 시 유기용매로서는 $DMSO-d_6$가 유력한 후보임을 제시하였다. $DMSO-d_6$ 용매로 사용한 $Nd(HFA-D)_3$ 착물의 경우, 파장 585nm($^4F_{3/2}$)에 있어서의 흡수단면적은 $0.92{\times}10^{-20}\textrm{cm}^2$, 발광강도는 1.0$\mu\textrm{m}$대($^4F_{3/2}\Rightarrow ^4I_{11/2}$, Peak파장 : 1062nm)에서 가장 강하였으며, 발광스펙트럼의 반치폭 (FHWM)은 31nm, 발광수명은 약 12.0mus, 유도방출 단면적은 $3.89{\times}10_{-20}\textrm{cm}^2$ 였다.

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GC를 이용한 극성용매의 분석방법 개발 연구 (Study on Development of Analytical Method for Polar Solvents by GC)

  • 오도석;김성화;이슬;황경철
    • 한국산업보건학회지
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    • 제26권1호
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    • pp.20-29
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    • 2016
  • Objectives: The purpose of this study is to simplify and standardize analytical method of polar solvents(methanol, isopropanol, n-butanol, acetone, methylene chloride and MIBK) in the working environmental by GC. Because NIOSH methods are various and complicated. Methods: The method is using the same stationary phase(5% phenyl 95% dimethylpolysiloxane), absorbent(silica gel) and desorption solvent(DMSO) for above 6 solvents. For the 6 solvents desorption efficiency, calibration curve, and limit of detection were studied Results: As the results, 6 solvents{2 groups ; first group(methanol/isopropanol/butanol) and second group(acetone/methylene chloride/MIBK)} could be separated and quantified within 10 minutes. Desorption efficiency from silica gell of 6 solvents using dimethylsulfoxide(DMSO) was methanol 86.2%, isopropanol 103.2%, n-butanol 101.8%, acetone 98.2%, methylene chloride 103.9% and MIBK 106.2% in the range of 0.2, 0.5, 2.0 times of TWA, consequently, satisfied NIOSH estimation level(beyond 75%). Correlation coefficient(r)in the range of 0.2~2.0 times of TWA, was above 0.999 for 6 solvent. LOD(mg/DMSO ml) using calibration curve in the range of 0.2~2 times of TWA was methanol 0.11, isopropyl alcohol 0.20, n-butanol 0.03, acetone 0.50, methylene chloride 0.05, MIBK 0.04 respectably. Conclusions: This method can be used at the sampling and analytical method for polar solvents by GC. Also, will be able to be applied with NIOSH methods.