• 제목/요약/키워드: Reversed-Phase Capillary-HPLC

검색결과 5건 처리시간 0.017초

Determination of Co(II) Ion as a 4-(2-Thiazolylazo)resorcinol or 5-Methyl-4-(2-thiazolylazo)resorcinol Chelate by Reversed-Phase Capillary High-Performance Liquid Chromatography

  • Chung, Yong-Soon;Chung, Won-Seog
    • Bulletin of the Korean Chemical Society
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    • 제24권12호
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    • pp.1781-1784
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    • 2003
  • Determination of Co(II) ion as a 4-(2-thiazolylazo)resorcinol(TAR) or 5-methyl-4-(2-thiazolylazo)resorcinol(5MTAR) chelate was accomplished by reversed-phase capillary high-performance liquid chromatography (RP-Capillary-HPLC) using a Vydac $C_4$ column and MeCN-water mixture as mobile phase. The effect of change in pH and MeCN percentage of the mobile phase on the retention factor, k and peak intensity were evaluated. It was found that 30% MeCN (v/v) of pH 5.60 or 7.20 was adequate as mobile phase when TAR or 5MTAR is used. Detection limit (D.L., S/N=3) in each case was $2.0\;{\times}\;10^{-7}$M (11.8 ppb) and $3.0\;{\times}\;10^{-7}$ M (17.7 ppb). The Co(II) ion in mineral and waste water was determined with the optimum column and mobile phase.

역상 모세관-고성능 액체 크로마토그래피에 의한 코발트와 니켈 이온의 4-(2-피리딜아조)레조루신올 킬레이트로서의 분리 및 정량 (Separation and Determination of Co(II) and Ni(II) Ion as their 4-(2-Pyridylazo) resorcinol Chelates by Reversed-Phase Capillary High-Performance Liquid Chromatography)

  • 정용순;정원석
    • 대한화학회지
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    • 제47권6호
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    • pp.547-552
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    • 2003
  • 코발트와 니켈 이온을 4-(2-피리딜아조)레조루신올(PAR) 리간드와 킬레이트를 만들고 이 금속-PAR 킬레이트들을 역상 모세관 고성능 액체 크로마토그래피(RP-CpHPLC)로 분리와 정량을 하였다. 컬럼은 주로 Vydac C4 모세관 컬럼을, 이동상은 아세토니트릴(MeCN) 수용액을 사용하였다. 머무름 인자, k와 봉우리 높이에 대한 이동상의 pH와 MeCN 농도의 영향을 검토하여 분리와 정량의 최적 조건을 얻었다. 결과, 분리의 최적 이동상은 22.5% MeCN, pH 5.6이었고, Co(II) 이온의 정량은 이 조건에서 할 수 있었다. 그러나 Ni(II) 이온의 정량은 분리와 봉우리의 높이로부타 22.5% MeCN, pH 7.20이 보다 적합함을 확인하였다. 각각의 조건에서 Co(II)와 Ni(II) 이온의 검출한계(D.L., S/N=3)는 각각 $2.0{\times}10{-7}$ M(14.9 ppb)와 $1.0{\times}10{-6}$ M(59.2 ppb)였다.

Enantioseparation of Neutral Compounds on a Quinine Carbamate-Immobilized Zirconia in Reversed-Phase Capillary Electrochromatography

  • Lee, Mun-Rak;Gwon, Ju-Rim;Park, Jung-Hag
    • Bulletin of the Korean Chemical Society
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    • 제31권1호
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    • pp.82-86
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    • 2010
  • Quinine (QN) is a weak anion-exchange type chiral selector and QN-based silica stationary phases have been widely used for enantioseparation of acidic chiral analytes in HPLC and recently in CEC. In this work we report enantioseparation of non-acidic chiral analytes on a quinine carbamate-immobilized zirconia (QNZ) in reversed-phase (RP) CEC. Influences of pH, composition of the buffer, acetonitrile content and the applied voltage on enantioseparation were examined. Enantiomers of the analytes investigated are well separated in acetonitrile/phosphate buffer mobile phases. Separation data on QNZ were compared to those on QN-bonded silica (QNS). Retention was longer but better enantioselectivity and resolution were obtained on QNZ than QNS.

Immobilization of Styrene-acrylamide Co-polymer on Either Silica Particles or Inner Surface of Silica Capillary for the Separation of D-Glucose Anomers

  • Ali, Faiz;Kim, Yune Sung;Cheong, Won Jo
    • Bulletin of the Korean Chemical Society
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    • 제35권2호
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    • pp.539-545
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    • 2014
  • Styrene-acrylamide co-polymer was immobilized on porous partially sub-$2{\mu}m$ silica monolith particles and inner surface of fused silica capillary ($50{\mu}m$ ID and 28 cm length) to result in ${\mu}LC$ and CEC stationary phases, respectively, for separation of anomeric D-glucose derivatives. Reversed addition-fragmentation transfer (RAFT) polymerization was incorporated to induce surface polymerization. Acrylamide was employed to incorporate amide-functionality in the stationary phase. The resultant ${\mu}LC$ and CEC stationary phases were able to separate isomers of D-glucose derivatives with high selectivity and efficiency. The mobile phase of 75/25 (v/v) acetonitrile (ACN)/water with 0.1% TFA, was used for HPLC with a packed column (1 mm ID, 300 mm length). The effects of pH and ACN composition on anomeric separation of D-glucose in CEC have been examined. A mobile phase of 85/15 (v/v) ACN/30 mM sodium acetate pH 6.7 was found the optimized mobile phase for CEC. The CEC stationary phase also gave good separation of other saccharides such as maltotriose and Dextran 1500 (MW~1500) with good separation efficiency (number of theoretical plates ~300,000/m).

銀Ion 및 역상(逆相) HPLC를 이용(利用)한 입체이성체적(立體異性體的) 분석(分析)에 의한 은행종실유(銀杏種實油)의 트리글리세리드의 분자종(分子種)에 관한 연구(硏究) (The Stereospecific Analysis of the Triacylglycerols of Ginkgo Nut Oils by High-Performace Liquid Chromatography(HPLC) in the Silver Ion and Reversed Phase Modes)

  • 조용계;우효경;김훈숙
    • 한국응용과학기술학회지
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    • 제14권1호
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    • pp.61-76
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    • 1997
  • Triacylglycerols of the seeds of Ginkgo biloba have been resolved by high-performace liquid chromatography(HPLC} in the silver-ion and reverse-phase modes. The fatty acids were identified by a combination of capillary gas chromatography and gas-chromatography /mass spectrometry as the methyl and /or picolinyl ester. The main components are $C_{18:2{\omega}6}$(39.0mol%), $C_{18:1{\omega}7}$(asclepic acid 21.5mol%), and $C_{18:1{\omega}9}$(oleic acid, 13.8mol%). Considerable amounts of unusual acid such as $C_{20:3{\Delta}^{5,11,14}$ (5.7mol%), $C_{18:2{\Delta}^{5,9}$(2.8mol%), and $C_{18:3}{\Delta}^{5,9,12}$(1.6mol%), were checked. In addition, an anteiso-branched fatty acid, 14-methylhexadecanoic acid, was also present as a minor component(0.9 mol%). The triacylglycerols were separated into 17 fractions by reverse-phase HPLC, and the fractionation was achieved according to the partition numnber(PN) in which a ${\Delta}^5$-non methylene interrupted double bond($^5$-NMDB) showed different behaviour from a methylene interrupted double bond in a molecule with a given cahinlength. Silver-ion HPLC exhibited excellent resolution in which fractions(23 fractions) were resolved on the basis of the number and configuration of double bonds. In this instance, the strength of interaction of a ${\Delta}^5$-NMDB system with silver ions seemed to be weaker than a methylene interrupted double bond system. The principal triacylglycerol species are as follows ; $(C_{18:2{\omega}6)2}/C_{18:1{\omega}7}$, $C_{18:1{\omega}9}/C_{18:1{\omega}7}/C_{18:2{\omega}6}$, $(C_{18:1{\omega}7)2}/C_{18:2{\omega}6}$, $C_{16:1{\omega}7}/C_{18:1{\omega}9}/C_{20:3}{\Delta}^{5,11,14}$, $C_{16:1{\omega}7}/C_{18:1{\omega}7}/C_{20:3}{\Delta}^{5,11,14}$, $C_{18:1{\omega}9}/C_{18:1{\omega}7}/C_{18:2{\omega}6}$, $C_{18:1{\omega}9}/C_{18:2}{\Delta}^{5,5}/C_{20:3}{\Delta}^{5,11,14}$, $(C_{18:1{\omega}7)2}/C_{18:2{\omega}6}$ and $(C_{18:1{\omega}9)2}/C_{18:2{\omega}6}$, while simple triacylglycerols without $C_{18:2{\omega}6})_3$ were not present. Stereospecific analysis showed that fatty acids with ${\Delta}^5$-NMDB system and saturated chains were predominantly located at the site of sn-3 carbon of glycerol backbones. It is evident that there is asymmetry in the distribution of fatty acids in the TG molecules of Ginkgo nut oils.