• 제목/요약/키워드: 18-crown-6

검색결과 256건 처리시간 0.125초

Synthesis of Ferrocenyl and Diphenyl Substituted Bispyridino-18-Crown-6 Ether for Chiral Recognition

  • Jo, Sun-Jin;Jin, Young-Eup;Kim, Jae-Hong;Suh, Hong-Suk
    • Bulletin of the Korean Chemical Society
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    • 제28권11호
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    • pp.2015-2019
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    • 2007
  • The article reports the synthesis of a novel bispyridino-18-crown-6 ether, 7-{[(5S,15S)-5,15-diphenyl- 3,6,14,17-tetraoxa-23,24-diazatricyclo[17.3.1.18,12]tetracosa-1(23),8(24),9,11,19,21-hexaen-10-yl]oxy}heptylferrocenamide 6, bearing the C2-symmetric diphenyl substituents as chiral barriers and the ferrocenyl groups serving as an electrochemical sensor, and its electrochemical study with D- and L-AlaOMe·HCl as the guest by cyclovoltametry.

Comparison of liquid chromatographic enantiomer resolution of racemic amino compounds on chiral stationary phases of crown ether type

  • Lee, Won-Jae;Baek, Chae-Sun;Kim, Ji-Yeon
    • 대한약학회:학술대회논문집
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    • 대한약학회 2003년도 Proceedings of the Convention of the Pharmaceutical Society of Korea Vol.1
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    • pp.285.1-285.1
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    • 2003
  • ChiroSil RCA(+) and SCA(-) HPLC chiral stationary phases (CSPs) developed by covalently bonding (+)- and (-)-(18-crown-6)-2,3,11,12-tetracarboxylic acid (18-C-6-T A) to silica gel were employed for enantioresolution of racemic amino compounds, respectively. Also, these 18-C-6-TA covalently bonded CSPs were compared to a commercially available Crownpak CR CSP prepared by coating chiral crown ether as a chiral selector on ODS column. (omitted)

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Theoretical Studies on Selectivity of Dibenzo-18-Crown-6-Ether for Alkaline Earth Divalent Cations

  • Heo, Ji-Young
    • Bulletin of the Korean Chemical Society
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    • 제33권8호
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    • pp.2669-2674
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    • 2012
  • Crown ether is one of well-known host molecules and able to selectively sequester metal cation. We employed M06-2X density functional theory with IEFPCM and SMD continuum solvation models to study selectivity of dibenzo-18-crown-6-ether (DB18C6) for alkaline earth dications, $Ba^{2+}$, $Sr^{2+}$, $Ca^{2+}$, and $Mg^{2+}$ in the gas phase and in aqueous solution. $Mg^{2+}$ showed predominantly strong binding affinity in the gas phase because of strong polarization of CO bonds by cation. In aqueous solution, binding free energy differences became smaller among these dications. However, $Mg^{2+}$ had the best binding, being incompatible with experimental observations in aqueous solution. The enthalpies of the dication exchange reaction between DB18C6 and water cluster molecules were computed as another estimation of selectivity in aqueous solution. These results also demonstrated that $Mg^{2+}$ bound to DB18C6 better than $Ba^{2+}$. We speculated that the species determining selectivity in water could be 2:1 complexes of two DB18C6s and one dication.

1-Aza-18-Crown-6를 이용한 우라늄(VI) 이온 흡착제 수지 합성 (Resin Synthesis of Adsorbent Uranium(VI) Ion using 1-Aza-18-Crown-6)

  • 김선화;김해진
    • 환경위생공학
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    • 제21권4호
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    • pp.49-60
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    • 2006
  • The ion exchange resins have been synthesized from chlormethyl styrene - 1,4 - divinylbenzene(DVB) with 1%, 2%, 4% and 8%-crosslinking and 1-aza-18-crown-6 macrocyclic ligand by copolymerization method. Content of chlorine in styrene-DVB copolymer was decreased as crosslink increased and it is because as crosslink increased 1%, 2%, 4% and 8% DVB content increased and crosslink density increased and cavity was reduced. Functional group of resin almost disappeared as C-C1 peak around $700cm^{-1}$ was substituted with 1-aza-18-C-6 macrocyclic ligand and new peak of C-N around $1020cm^{-1}$ appeared, so it was confirmed that styrene-DVB copolymer and ligand were compounded. As crosslink increased in the analysis of element contents, it resulted in the reduction of nitrogen content and it is because as crosslink increased, it led to the reduction of chlorine content in the process of substitution reaction and it affected macrocyclic ligand substituted. Thermo analysis curve of functional synthetic resin decomposed three part of 1-aza-18-C-6, styrene, and DVB. Form of functional synthetic resin showed distortion of its particles as macrocyclic ligand was introduced to styrene-DVB copolymer and hydrogen of ligand caused substitution with chlorine element of styrene molecule.

광학분리를 위한 키랄 크라운 에테르를 이용한 키랄공학의 개발과 응용 (The Development and Application of Chirotechnology Using Chiral Crown Ethers for Enantiomer Separation)

  • 백만정;윤원남;이원재
    • KSBB Journal
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    • 제27권4호
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    • pp.199-206
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    • 2012
  • Chiral crown ethers are synthetic macrocyclic polyethers that bind protonated chiral primary amines with high selectivity and affinity. They have been widely used to separate or distinguish the enantiomers of chiral compounds containing a primary amino moiety by high-performance liquid chromatography, capillary electrophoresis, and NMR spectroscopy. In this paper, two important chiral crown ethers including chiral binaphthyl unit and (18-crown-6)-2,3,11,12-tetracarboxylic acid as chiral selectors are focused. And several chiral resolution techniques and their applications in chirotechnology using these chiral crown ethers with related chiral recognition mechanism studies are reviewed. Especially, it was shown that the commercially available HPLC columns based on (18-crown-6)-2,3,11,12-tetracarboxylic acid have been developed and successfully applied for the resolution of various primary amino compounds including amino acids.

Monte Carlo Simulation Study of Solvent Effect on Selectivity of 18-Crown-6 to between La3+ and Nd3+ Ion

  • Kim, Hag-Sung
    • Bulletin of the Korean Chemical Society
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    • 제24권6호
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    • pp.751-756
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    • 2003
  • We have investigated the solvent effects on Δlog $K_s$ (the difference of stability constant of binding) and the relative free energies of binding of $La^{3+} and Nd^{3+}$ ions to 18-crown-6 by a Monte Carlo simulation of statistical perturbation theory (SPT) in diverse solvents. We compared relative binding Gibbs free energies and the differences in stability constant (Δlog $K_s$) of binding of $La^{3+} and Nd^{3+}$ ions to 18-crown-6 in $CH_3OH$ in this study with the experimental. There is a good agreement between our study and the experimental. We noted that Borns function of the solvents, the electron pair donor properties of the solvent, the radii of host and guest and the differences in solvation dominate the differences in the stability constant (Δlog $K_s$) as well as the relative free energies of binding of TEX>$La^{3+} to Nd^{3+}$ ions to 18-crown-6. The results of this study appear promising for providing the association properties of crown ethers with alkaline earth metals among polar solvents and the less polar or non-polar solvents.

고분자/(18-Crown-6) 복합박막 제조 및 $k^+$ 이온의 전달 특성

  • 심재동;남석태;최성부;김병식
    • 한국막학회:학술대회논문집
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    • 한국막학회 1993년도 추계 총회 및 학술발표회
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    • pp.61-62
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    • 1993
  • 고분자 분리막의 투과성과 선택성을 향상시키기 위하여 IPN막, 고분자/액정 복합막을 다양한 기능을 가진 재료가 개발되고 있다. 본 연구에서는 알칼리메탈이온을 분리하기 위하여 고분자 지지체에 운반체로써 crown ether(macro-cyclic polyether)류를 분산시킨 고분자/운반체 복합박막을 제조하였다. 고분자/운반체 복합박막은 고분자와 운반체의 혼합용액을 수면에 전개시켜 제조하였다. 고분자는 PVC(M.W 60000, Aldrich), PS(M.W 280000, Aldrich)와 CA(M.W 30000, Sigma)를 사용하였고, 운반체로는 crown ether 중 $K^+$이온과 선택성을 가지는 18-Crown-6(Sigma)를 사용, 고분자와 18-Crown-6의 증량분을 달리하는 혼합용액을 제조하였다. 이때 용매는 Tetrahydrofuran를 사용하였다. 수면에 생성된 박막을 다공성 지지막에 적층시킨 후 감압 건조시켜 복합막을 제조하였다. 고분자와 운반체가 혼합되어 있는 용액의 점도와 표면장력을 각각 fluid spectrometer와 tensionmeter를 사용, 용액이 수면위에서 완전한 막을 형성하면서 분산될 수 있는지 조사하였으며, 고분자 지지체에 분산 고정된 운반체의 분산형태와 표면농도를 조사하기 위하여 ESCA를 이용하였다.

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Electrochemical Studies on Ion Recognition of Alkali Metal Cations by 18-crown-6 in Methanol

  • Chi-Woo Lee;Chang-Hyeong Lee;Doo-Soon Shin;Si-Joong Kim
    • Bulletin of the Korean Chemical Society
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    • 제12권5호
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    • pp.487-490
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    • 1991
  • Electrochemical studies of alkali metal cations $(Na^+, K^+, Rb^+, Cs^+)$ were performed in methanolic solutions of 18-crown-6 and tetrabutylammonium salts at dropping mercury electrodes (DME) and thin mercury film electrodes (TMFE). All the cations investigated were reduced reversibly at DME in the absence and presence of 18-crown-6, and in the latter the limiting currents were decreased and the reduction potentials shifted to the negative direction. The reduction potentials of the metal ions (0.2 mM) in the presence of the crown (10 mM) were - 2.14 $(Na^+)$, - 2.26 $(K^+)$, - 2.20 $(Rb^+) and - 2.14 $(Cs^+)$ V vs. SCE, respectively. The measured potentials were rationalized with ion recognition of the cations by the crown. Electroreduction at TMFE were highly irreversible. A new representation method of ion recognition is presented. In aqueous solutions, electroreduction of the alkali metal ions were characterized by adsorption.

置換 Potassium phenoxide와 이루는 18-Crown-6 Complex의 形成常數 (Formation Constants of 18-Crown-6 Complexes with Substituted Potassium Phenoxides)

  • 여수동;김순규;한인숙;박종환
    • 대한화학회지
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    • 제32권1호
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    • pp.53-59
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    • 1988
  • 파라치환된 포타슘 페녹사이드류와 18-crown-6가 이루는 1 : 1 착물 형성상수를 전기 전도도법으로 35${\circ}C$에서 측정하여 용매와 치환기의 변화에 따른 효과를 측정하였다. 18-crown-6와 $K^+$의 착물 형성상수는 $CH_3$OH(DN=19.0) > DMF(26.6) > DMSO(29.8)의 순으로 감소되었다. 이는 전자주게 수가 클수록 $K^+$과 용매와의 상호작용이 커지므로 크라운 에테르와의 착물형성과의 서로 경쟁관계가 되어 $K_f$값이 작아진다고 추정된다. 포타슘 페녹사이드의 치환기가 p-N$O_2$ > H > p-$CH_3$ > p-O$CH_3$의 순으로 $K_f$값이 감소하는 경향을 나타내었다. 이는 전자를 당기는 기는 페녹사이드 음이온이 비편재화되어 안정해지므로 전자를 미는 기에 비해서 $K^+$를 쉽게 내어 놓을 수 있어 18-crown-6와의 착물 형성이 용이하기 때문이라고 생각된다.

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Electronic Photodepletion Spectroscopy of Dibenzo-18-crown-6 with a Potassium Ion

  • Kim, Hwan-Jin;Shin, Won-Jik;Choi, Chang-Min;Lee, Jun-Ho;Kim, Nam-Joon
    • Bulletin of the Korean Chemical Society
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    • 제29권10호
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    • pp.1973-1976
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    • 2008
  • Electronic photodepletion spectrum of dibenzo-18-crown-6 with a potassium ion ($K^+$-DB18C6) was obtained in the gas phase using electrospray ionization and quadrupole ion-trap reflectron time-of-flight mass spectrometry. The spectrum exhibited rather a broad absorption band at 36350 $cm^{-1}$, which was tentatively assigned as the origin of the S1 band. The photodepletion spectrum of $Cs^+$-DB18C6 was also obtained to elaborate the effects of metal cations on electronic and geometric structures of metal cation-DB18C6 complexes. We found that the S1 band of $Cs^+$-DB18C6 was red-shifted by 180 $cm^{-1}$ from that of $K^+$-DB18C6. With the results of quantum theoretical calculations using the density functional theory, we suggested that the red-shift arose mainly from weaker binding of $Cs^+$ to DB18C6 than that of K+, which resulted from a larger size of $Cs^+$ than that of the cavity in DB18C6.