• 제목/요약/키워드: $LaCl_3$

검색결과 109건 처리시간 0.024초

LaCl3-CsCl 2성분계 용융염의 점도 (Viscosities of LaCl3-CsCl Binary Melts)

  • 김기호
    • 한국표면공학회지
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    • 제46권2호
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    • pp.87-92
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    • 2013
  • Viscosities of $LaCl_3$-CsCl binary melts were measured by the capillary method over the range of their liquidus temperatures to about 1200 K. The cell constant were determined by using pure water. The results obtained are summerized as follows: Viscosities of melted $LaCl_3$ were decreased with the content of CsCl for all over the composition range of binary melts. Composition versus viscosity relation for the binary melt showed a non-linear relationship from the additivity line and the deviations showed a maximum value at about 60 mol% CsCl. This suggest the existence of the complex ion of $LaCl_4{^-}$ in the melt. Activation energy for the viscous flow of the binary melts decreased monotonously with the increasing content of CsCl after a few increasement till 40 mol% CsCl. All of these results were the resemble with the viscosities of $LaCl_3$-NaCl binary melts.

$LaCl_3-NaCl$ 2성분계 용융염의 점도 (Viscosities of $LaCl_3-NaCl$ Binary Melts)

  • 김기호
    • 한국표면공학회지
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    • 제39권6호
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    • pp.282-287
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    • 2006
  • Viscosities of $LaCl_3-NaCl$ binary melts were measured by the capillary method over the range of their liquidus temperatures to about 1200K. The cell constant were determined by using pure water. The results obtained are summerized as follows: Viscosities were decreased with the content of NaCl for all over the composition range of binary melts. Composition - viscosity relation for the binary melts show a non-linear from the additivity line and the deviations shows a maximum at about 60 mol% NaCl. This suggests the existence of the complex ion of $LaCl_4^-$ in the melt. Activation energy for viscous flow of the binary melts decrease monotonously with the increasing content of NaCl.

용융 LaC $l_3$-LiCl 2성분계 혼합염의 전도도 (Electric Conductivities of LaC $l_3$-LiCl Binary Melts)

  • 김기호
    • 한국표면공학회지
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    • 제37권5호
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    • pp.301-306
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    • 2004
  • Electric Conductivities of $LaCl_3$-LiCl binary melts have been measured by the Kohlausch bridge method over the range of their liquidus temperatures to about 1200 K. The electric conductivity increases with the content of LiCl for all over the composition range of binary melts. Composition dependence of the electric conductivity and molar conductivity for the binary melt shows a non-linear relation from the additivity line, and the deviations displays a maximum value at about 60 mol % LiCl. This suggest the existence of the complex ion of$ LaCl_{4}^{-}$ in the melt. Activation energy for electric conductivity of the binary melts decrease monotonously with increasing content of LiCl.l.

Neutron spectroscopy using pure LaCl3 crystal and the dependence of pulse shape discrimination on Ce-doped concentrations

  • Vuong, Phan Quoc;Kim, Hongjoo;Luan, Nguyen Thanh;Kim, Sunghwan
    • Nuclear Engineering and Technology
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    • 제53권11호
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    • pp.3784-3789
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    • 2021
  • We report a simple technique for direct neutron spectroscopy using pure LaCl3 crystals. Pure LaCl3 crystals exhibit considerably better pulse shape discrimination (PSD) capabilities with relatively good energy resolution as compared with Ce-doped LaCl3 crystals. Single crystals of pure and Ce-doped LaCl3 were grown using an inhouse-developed Bridgman furnace. PSD capabilities of these crystals were investigated using 241Am and 137Cs sources. Fast neutron detection was tested using a252Cf source and three separate bands corresponding to electron, proton, and alpha were observed. The proton band induced by the 35Cl(n,p)35S reaction can be used for direct neutron spectroscopy because proton energy is proportional to incident neutron energy. Owing to good scintillation performance and excellent PSD capabilities, pure LaCl3 is a promising candidate for space detectors and other applications that necessitate gamma/fast neutron discrimination capability.

용융 LaCl3-KCl 2성분계 혼합염의 전기전도도 (Electric Conductivities of LaCl3-KCl Binary Melts)

  • 김기호
    • 한국표면공학회지
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    • 제47권1호
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    • pp.48-52
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    • 2014
  • Electric conductivities of $LaCl_3$-KCl binary melts have been measured by the Kohlausch bridge method over the range from their liquidus temperatures to about 1280 K. The electric conductivity increased with the content of KCl for all over the composition range of binary melts. The composition dependence of the electric conductivity and molar conductivity for the binary melt showed a non-linear relation from the additivity line, and the deviation showed a maximum value at about 60 mol.% KCl. The deviation implies the existence of complex ion of $LaCl^{4-}$ in the melt. Activation energy for electric conductivity of the binary melts decreased monotonously with increasing content of KCl.

Preparation and Characteristics of Calcium Lactate from Black Snail

  • Lee, Ye-Kyung;Kim, Soon-Dong
    • Preventive Nutrition and Food Science
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    • 제8권2호
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    • pp.166-172
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    • 2003
  • Calcium lactate (CL) prepared from powdered black snail (PBS) or its ashed powder (ABS), was investigated for ideal manufacturing conditions to optimize color, solubility and sensory quality. Based on the amount of PBS and 100 mL lactic acid (LA), the yields of PBS-CL were 300% and 15 g in 10% LA and 260% and 20 g in 20% LA. Yields of ABS-CL based on the amount ABS and 100 mL LA were 400% and 60 g in 10% LA and 329% and 66 g in 20% LA. Both of the yields were decreased with an increase of the LA concentration on the basis of PBS and ABS amounts, but proportionally increased with the increment in the LA concentration on the basis of LA volume. Optimal preparation times of the dehydrated PBS-CL and ABS-CL were, respectively, 4 hr and 5 hr at 10$0^{\circ}C$, 3 hr and 4 hr at 12$0^{\circ}C$, and 1 hr and 2 hr at 15$0^{\circ}C$, which showed shorter time in preparing the dehydrated ABS-CL. PBS-CL and ABS-CL were confirmed to be Ca($CH_3$CHOH$CO_2$)$_2$ by the analysis results of IR and $^1$H-NMR. Calcium contents of the anhydrous PBS-CL and ABS-CL were individually 15.4% (w/w) and 17.3% (w/w) representing 84.2% and 94.5% or each theoretical value. Colors or PBS-CL and ABS-CL were light yellow and light-greenish white each. Solubilities of PBS- CL and ABS-CL in distilled water at pH 3~8 were 5.43 and 6.11 g/100 mL, respectively, which demonstrated higher mean solubilities rather than the 4.74 g/100 mL of standard CL. Solubilities of PBS-CL (3.14~5.03 g/100 mL) and ABS-CL (4.69~6.05 g/100 mL) against soup soy sauce, 3% brine, Soju (Korean distilled liquor), thick soy sauce, grape juice and orange juice were higher than those of standard CL (2.94~5.84 g/100 mL). ABS-CL was believed to have a wide use range due to its low sourness while different applications of PBS-CL in food are expected due to its mild astringent taste and strong savory taste despite its strong bitter taste as estimated by sensory evaluation.

Eu2+ 이온을 도핑한 LaCl3 결정의 섬광 특성 (Scintillation Properties of Eu2+ ions doped LaCl3 Crystal)

  • 김성환
    • 한국산학기술학회논문지
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    • 제12권2호
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    • pp.600-604
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    • 2011
  • 본 Czochralski 방법으로 새로운 섬광체인 $LaCl_3:Eu^{2+}$ 결정을 육성하고, 육성된 섬광체의 섬광 특성을 조사하였다. 육성한 $LaCl_3:Eu^{2+}$ 결정 구조는 육방정계로서 $P_63$/m 공간군에 속함을 확인할 수 있었으며, 격자상수는 각각 a = b = $7.48{\AA}$, c = $4.37{\AA}$이었다. 335 nm로 여기시킨 $LaCl_3:Eu^{2+}$ 결정의 발광 스펙트럼 파장 범위는 약 370 ~ 640 nm 이었으며, 중심 파장은 430 nm이었다. 형광 감쇠 곡선은 $2.82{\pm}0.72{\mu}s$의 단일 성분으로 구성되었으며, $^{137}Cs$ 662 keV ${\gamma}$-선에 대한 에너지 분해능은 약 8.8%이었다.

LiCl 용융염에서 전해환원법을 통한 La0.5Nd0.5Ni5 합금 제조 (Preparation of La0.5Nd0.5Ni5 Alloy by an Electrochemical Reduction in Molten LiCl)

  • 임종길;정상문
    • Korean Chemical Engineering Research
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    • 제53권2호
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    • pp.145-149
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    • 2015
  • LiCl 용융염에서 희토류 금속을 포함한 $Nd_2O_3-La_2O_3-NiO$ 복합산화물의 전해환원을 통한 $La_{0.5}Nd_{0.5}Ni_5$ 합금제조에 대한 연구를 수행하였다. $Nd_2O_3-La_2O_3-NiO$ 복합산화물은 $1100^{\circ}C$에서 소결시에 $NiNd_2O_4$ (스피넬)과 $LaNiO_3$ (페로브스카이트) 구조가 생성되었다. 스피넬 및 페로브스카이트 구조는 복합산화물의 전해환원 반응속도를 증가시켰다. LiCl 용융염에서 전해환원 반응 동안 $Nd_2O_3-La_2O_3-NiO$ 복합산화물은 Ni, $NiLa_2O_4$ 등의 다양한 중간생성물을 거쳐 $La_{0.5}Nd_{0.5}Ni_5$ 합금으로 환원됨을 확인할 수 있었다. XRD 분석결과를 통해 최종 생성물인 $La_{0.5}Nd_{0.5}Ni_5$의 생성 메카니즘을 제시하였다.

Density of Molten Salt Mixtures of Eutectic LiCl-KCl Containing UCl3, CeCl3, or LaCl3

  • Zhang, C.;Simpson, M.F.
    • 방사성폐기물학회지
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    • 제15권2호
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    • pp.117-124
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    • 2017
  • Densities of molten salt mixtures of eutectic LiCl-KCl with $UCl_3$, $CeCl_3$, or $LaCl_3$ at various concentrations (up to 13 wt%) were measured using a liquid surface displacement probe. Linear relationships between the mixture density and the concentration of the added salt were observed. For $LaCl_3$ and $CeCl_3$, the measured densities were significantly higher than those previously reported from Archimedes' method. In the case of $LiCl-KCl-UCl_3$, the data fit the ideal mixture density model very well. For the other salts, the measured densities exceeded the ideal model prediction by about 2%.

The Co-luminescence Groups of Sm-La-pyridyl Carboxylic Acids and the Binding Characteristics between the Selected Doped Complex and Bovine Serum Albumin

  • Yang, Zhengfa;Tang, Ruiren;Tang, Chunhua
    • Bulletin of the Korean Chemical Society
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    • 제33권4호
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    • pp.1303-1309
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    • 2012
  • A novel ligand N,N'-(2,6-pyridinedicarbonyl)bis[N-(carboxymethyl)] (L1) was designed and synthesized. Four co-luminescence groups of Sm-La-pyridyl carboxylic acids systems were researched, which are $K_4Sm_{(1-x)}-La_x(L_1)Cl_3{\cdot}y_1H_2O$, $K_4Sm_{(1-x)}La_x(L_2)Cl_3{\cdot}y_2H_2O$, $K_6Sm_{2(1-x)}La_{2x}(L_3)Cl_6{\cdot}y_3H_2O$, $K_4Sm_{(1-x)}La_x(L_4)Cl_3{\cdot}y_4H_2O$. The results indicated the addition of La(III) could sensitize the luminescence of Sm(III) obviously in a certain range, enhancing emission intensity of Sm-pyridyl carboxylic acids relative to the undoped ones. The optimal mole percentages of La(III) in the mixed ions for $L_1$, $L_2$, $L_3$, $L_4$ were confirmed to be 0.6, 0.5, 0.3, 0.6, respectively. The mechanism of the fluorescence enhancement effect was discussed in detail. Furthermore, the binding interaction of $K_4Sm_{0.4}La_{0.6}(L_4)Cl_3{\cdot}5H_2O$ with bovine serum albumin (BSA) have been investigated due to its potential biological activity. The binding site number n was equal to 1.0 and binding constant $K_a$ was about $2.5{\times}10^5\;L{\cdot}mol^{-1}$.