• Title/Summary/Keyword: 탄소이온

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Study on Structure of 9-Barbaralyl Cation by 1$^{13}C$ NMR Chemical Shift (탄소-13 핵자기공명 화학적 이동을 이용한 9-바바라릴 양이온의 구조에 관한 연구)

  • Jung-Hyu Shin;Yang-Soo Ahn
    • Journal of the Korean Chemical Society
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    • v.31 no.2
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    • pp.190-196
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    • 1987
  • The structure of 9-barbaralyl cation was examined by Hammett-Brown plot using $^{13}C$ NMR chemical shifts. 9-Aryltricylclo$[3.3.1.0^{2,8}]$]nonan-9-yl cation (5) and 9-aryltricyclo-$[3.3.1.0^{2,8}]$nona-3,6-dien-9-yl cation (6) were prepared from the corresponding carbinols in $FSO_3H-SO_2ClF$ solution at -$120^{\circ}C$, and their chemical shifts of cation centers were measured. The slopes, ${\rho}^{C+}$ values, of the Hammett-Brown plot of (5) and (6) were -5.01 and -7.52, respectively. From these values themselves, it seemed that the double bonds participated in the delocalization of the positive charge. However, comparing ${\rho}^{C+}$ value and ${\rho}^{C_a^+}$ value in 9-barbaralyl cation (6) and those in 8,9-dehydroadamantyl cation (7), we concluded that 9-barbaralyl should be represented by the structure 4 shown in Scheme I.

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항 바이러스성 Carbocyclic nucleoside류의 합성

  • 김희두;최명희
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1994.04a
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    • pp.229-229
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    • 1994
  • 선택성이 높고 뛰어난 약효를 지닌 항 바이러스제의 개발은 신약개발의 중요한 영역중에 하나이다. 현재 AIDS 치료제로 사용되고 AZT를 비롯하여 항virus 효과를 나타내는 약물의 대부분은 구조적으로 nucleoside계에 속하는 화합물로서 수 많은 약리학적 연구 및 합성 화학적 연구가 이루어져 왔다. 특히 합성 화학적 측면에서 이들 화합물의 합성은 크게 두가지로 나누어지는데 그것은 sugar 부위의 변형을 통한 방법과 염기 부위의 변형을 통한 방법에 의해 새로운 항 바이러스제를 개발하는 것이다. 최근의 연구 동향에 있어서 주목할 만한 변화의 하나는 sugar 부위의 구조적 변형을 시도하는데 있어서 종래의 5원환 형태에서 환이 개열된 형태의 acyclic nucleoside에 대한 연구가 이루어져 좋은 효과를 거두고 인다는 사실이다. Acyclovir, Ganciclovir등 의 개발이 그것이다. 본 연구에서는 종래의 acyclic nucleoside가 ribose sugar의 2'번 및 3'번 탄소를 제거한 acyclic ether 형태로 되어있는 것과는 다르게 ether 부위의 산소를 탄소 치환한 carbo-acyclic nucleoside를 합성하고자 하였다. Acyclic nucleoside를 합성하고자 하였다. Acyclic nucleoside의 side chain의 conformation이 항 바이러스 작용을 나타내는데 필수 불가결한 점을 감안할때, carbo-acyclic nucleoside계 화합물은 보다 다양하게 변형될 수 있는 장점을 가지고 있다. 이러한 관점에서 side chain의 2'번 및 3'번 탄소는 side chain의 conformation을 좌우하는 결정적 요인으로 작용할 것으로 판단된다. 따라서 본 연구에서는 이들 탄소를 중심으로한 분자수식을 시도하기로 하고 bioisosterism을 이용하여 3'위치의 수소를 fluoride로 치환한 화합물을 설계하여 합성을 시도하였다.silyl group-5'-무치환 화합물을 tosyl, azido화 한다음 desilylation하여 얻었다. 목적하는(1) 화합물의 diasteromer 인 2',3'-dihydroxy-5'-무치환 유도체(3)는 (4)화합물 합성시 얻은 hemiactal을 key intermediate로 하여 TsNHNH$_2$, NaB(CN)H$_3$ 및 NaOAc로 처리하므로서 얻을수 있었다. 이들 화합물들의 각종 DNA 및 RNA virus에 대한 항 바이러스작용을 검토한 결과 현저한 항 바이러스 작용을 나타내지 않았다.분화유도 활성을 나타내어 항종양제로의 개발에 많은 흥미가 기대된다.기대된다.oxylic acid (compound 10)를 합성하였다.10^{-7}$ M)에 의한 단백인산화에 대하여는 더 미약한 억제-효과를 나타내었다. 이상의 결과는 PDE-1과 항우울약들의 항혈소판작용은 PKC-기질인 41-43 kD와 20 kD의 인산화를 억제함에 기인되는 것으로 사료된다.다. 것으로 사료된다.다.바와 같이 MCl에서 작은 Dv 값을 갖는데, 이것은 CdCl$_{4}$$^{2-}$ 착이온을 형성하거나 ZnCl$_{4}$$^{2-}$ , ZnCl$_{3}$$^{-}$같은 이온과 MgCl$^{+}$, MgCl$_{2}$같은 이온종을 형성하기 때문인것 같다. 한편 어떠한 용리액에서던지 NH$_{4}$$^{+}$의 경우 Dv값이 제일 작았다. 바. 본 연구의 목적중의 하나인 인체유해 중금속이온인 Hg(II), Cd(II)등이 NaCl같은 염화물이 함유된 시료용액에 공해이온으로 존재할 경우 흡착에 의한 제거가 가능하다. 한편 이같은 중금속이온의 흡착실험은 특히 해수중의 금속이온의 회수연구에도

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CHARGE EXCHANGE EFFECTS IN COLLISIONAL IONIZATION EQUILIBRIUM OF C, N, AND O IONS (탄소, 질소 및 산소의 충돌이온화평형에서의 전하교환 효과)

  • Seon, Kwang-Il
    • Journal of Astronomy and Space Sciences
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    • v.21 no.4
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    • pp.343-350
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    • 2004
  • The charge exchange (or transfer) due to collision with hydrogen has important effects on the physical characteristics of astrophysical plasma. In this paper, collisional ionization equilibrium in the temperature range of ${\sim}1,000--80,000K$ are investigated for C, N, and O ions including the effects of charge exchange. The calculated ionic abundance fractions are compared with those of previous works. The ionic abundance fractions calculated in the paper can be used in understanding the spectroscopic properties of warm interstellar medium. It is also found that the ratio between the degree of ionization of oxygen and that of hydrogen shows big difference with the previously well-known result for the environment where the collisional ionization is not important. This implies that investigations on the collisional ionization in the warm interstellar medium are required.

Determination of Ag(Ⅰ) Ion with a Chemically Modified Carbon Paste Electrode Containing Cinchonidine (Cinchonidine으로 변성된 Carbon Paste 전극을 사용한 은이온의 정량)

  • Kim, Sin Hui;Won, Mi Suk;Sim, Yun Bo
    • Journal of the Korean Chemical Society
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    • v.38 no.10
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    • pp.734-740
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    • 1994
  • Electrochemical determination of Ag(I) ion was carried out by cyclic voltammetry (CV) and differential pulse voltammetry (DPV) with the carbon paste electrode (CPE) containing cinchonidine. The detection limit for Ag(I) ion was shown to be $1.0 {\times}10^{-6}$ M in conventional CV and up to $8.0{\times}10^{-9}$ M (${\pm}$0.6%) using DPV. The optimum analytical condition of Ag(I) ion was determined as follows: pH 7, 20 minutes of deposition time, and 50% (w/w) cinchonidine to carbon powder composition of electrode. The interference effect of various metal ions added to the deposition solution was also studied. The peak current of Ag(I) ion except Hg(II) ion was decreased roughly 25% compare to Ag(I) ion only. When Mn(II) ion was present in sample solution at pH 9, shown a large interference effect.

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Desalination Effects of Capacitive Deionization Process Using Activated Carbon Composite Electrodes (활성 탄소 복합 전극을 이용한 Capacitive Deionization 공정의 제염 효과)

  • Lee, Jeong-Won;Kim, Hong-Il;Kim, Han-Joo;Shin, Hyun-Soo;Kim, Jeong-Sik;Jeong, Boong-Ik;Park, Soo-Gil
    • Journal of the Korean Electrochemical Society
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    • v.12 no.3
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    • pp.287-294
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    • 2009
  • Desalination effects of Capacitive deionization(CDI) process using activated carbon $TiO_2$ composite electrode. In this study, we made the activated carbon electrod and activated carbon $TiO_2$ composite electrode, which analysed at cyclic voltammetry and charge-discharge. The results measured for discharge capacitance in cyclic voltammetry were 125 F/g in activated carbon electrode and capacitance of activatd carbon composite electrode was increased about two time, 243 F/g. The $TiO_2$ content of activated carbon composite electrode was 10 wt.%. When it was added wtih TiO2, electric double layer adsorption content was increased, so it was increased 25% in ion removal ratio of activated carbon electrode.

Charge Storage Behavior of the Carbons Derived from Polyvinylidene Chloride-resin and Polyvinylidene Fluoride in Different pH Electrolytes (다른 pH의 전해질에서 polyvinylidene chloride-resin와 polyvinylidene fluoride로부터 합성된 다공성 탄소의 전하 저장 거동)

  • Sang-Eun, Chun
    • Composites Research
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    • v.35 no.6
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    • pp.394-401
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    • 2022
  • Two polymer precursors, polyvinylidene chloride-resin (PVDC-resin) and polyvinylidene fluoride (PVDF), are assembled into the microporous carbon by pyrolysis. Microporous carbon is advantageous as an electrode for supercapacitors that store electric charges through ion adsorption/desorption. The pyrolysis also turns the various heteroatoms of two precursors into functional groups, contributing to the additional charge storage. The analysis of the porous structure and function group during carbonization are important to develop the carbon for energy storage. Here, we analyzed the functional groups of two polymer-derived carbons through X-ray photoelectron spectroscopy. The electrochemical properties of the functional groups were explored in various pH electrolytes. The specific capacitance of two carbons in the acidic electrolyte (1 M H2SO4) was improved compared to that in the neutral electrolyte (0.5 M Na2SO4) due to the faradaic charge/discharge reaction of the quinone functional group. In particular, the carbon electrode derived from PVDC-resin exhibits a lower capacity than the carbon from PVDF due to the small micropores. In the alkaline electrolyte (6 M KOH), the highest specific capacitance and rate capability were obtained among the three electrolytes for both electrodes based on the facile adsorption of the constituent electrolyte ions (K+, OH-).

Graphene Oxide (GO) Layered Structure Ion Exchange Membrane Application for Vanadium Redox Flow Battery (VRB) System Study (산화그라핀 (Graphene Oxide, GO)이 코팅된 양이온 교환막을 용한 바나듐 레독스 흐름 전지 (Vanadium Redox Flow attery, VRB) 시스템에 관한 연구)

  • Lee, Kwan Ju;Chu, Young Hwan
    • Journal of the Korean Electrochemical Society
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    • v.17 no.2
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    • pp.94-102
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    • 2014
  • Cation exchange membrane (Nafion) was modified to reduce the vanadium ion permeation through the membrane and to increase the vanadium redox flow battery (VRB) system performance by coating the graphene oxide (GO) which has nano-plate like morphology. Modified membrane properties were studied by measuring the ion exchange capacity (I.E.C), water uptake and proton conductivity. The thickness of the coated layer on the surface of the Nafion membrane was observed as $0.93{\mu}m$ by SEM. Proton conductivity and vanadium ion permeability of the modified membrane were decreased to 27% and 25% compared to that of the commercial Nafion membrane respectively. VRB single cell performance test was performed to compare the system performance of the VRB applied with commercial Nafion membrane and modified membrane. VRB system applied with modified membrane showed higher coulombic efficiency and energy efficiency than the VRB system applied with the commercial Nafion membrane due to the reduction of the vanadium ion permeation. From these result, we could suggest that the membrane modification by coating the GO on the surface of the Nafion membrane could be one of the promising strategies to reduce the vanadium ion permeation and to increase the VRB system performance effectively.

Effects of the Type of Exchanged Ions and Carbon Precursors on Methane Adsorption Behavior in Zeolite Templated Carbons Synthesized Using Various Ion-Exchanged Faujasite Zeolites (이온교환된 Faujasite 제올라이트를 이용한 제올라이트 주형 탄소체 합성 시 이온 교환 금속과 탄소 전구체가 메탄 흡착 거동에 미치는 영향)

  • Ki Jun Kim;Churl-hee Cho;Dong-Woo Cho
    • Clean Technology
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    • v.30 no.2
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    • pp.123-133
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    • 2024
  • Zeolite template carbon (ZTC) was synthesized as an adsorbent to remove low-concentration CH4 from the atmosphere. The synthesis of ZTC was performed using CH4 and C2H2 as carbon precursors and their impact on adsorption was investigated. ZTC was also synthesized using Y zeolite ion-exchanged with CaCl2 and LiCl as templates to investigate the effect of using metals in ion exchange. The comparison of the carbon precursors revealed that C2H2 had a higher carbon yield than CH4. The synthesized ZTC exhibited developed micropores due to carbon deposition deep inside the micropores of the zeolite template. The kinetic diameter of C2H2 (0.33 nm) is smaller than that of CH4 (0.38 nm), which allowed for its deposition. The study compared metal precursors used for ion exchange and confirmed that the CaCl2-based ZTC developed more micropores compared to the LiCl-based ZTC. The ion-exchanged Ca inhibited pore blocking by the carbon precursor, allowing it to enter the pores. The ability of synthesized ZTC to adsorb N2 and CH4 at 298 K was investigated. The results showed that CH4 had a higher overall adsorption amount than N2. The sample synthesized using C2H2 and CaY exhibited the highest N2 and CH4 adsorption capacity. However, the sample synthesized with CH4 had the highest CH4/N2 gas uptake ratio, which is a crucial factor in designing an adsorption process. The observed difference was likely caused by the underdevelopment of ultrafine pores that are associated with N2 adsorption. This resulted in a reduction of N2 adsorption, leading to an increase in CH4/N2 separation.

Cancer Treatment Equipment Development Using laser-Driven Ion Acceleration Technology (레이저 이온 가속 기술을 이용한 암 치료 기기 개발)

  • Jung, M.Y.;Joe, W.B.;Park, J.W.;Hwang, H.W.;Yang, S.K.;Song, D.H.;Park, H.J.;Shin, D.H.;Pyo, H.B.;Park, S.J.;Park, S.H.
    • Electronics and Telecommunications Trends
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    • v.28 no.4
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    • pp.23-34
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    • 2013
  • X-선 혹은 감마선 등 종래의 방서선 치료는 양성자 혹은 이온에 의한 치료방법의 등장함에 따라 퇴조할 것으로 보인다. 그 이유는, 양성자 등 전하를 띄는 입자치료기술이 치료 후 후유증이나 암의 재발을 현저히 억제시킬 수 있기 때문이다. 전하를 띄는 입자는 암 조직 전후의 정상 조직에 최소한의 피폭을 주나, X-선이나 감마선과 같은 광자들은 암 조직 전후의 정상세포가 암세포로 변화될 수 있는 정도의 피폭량을 주는 것으로 알려져 있다. 현재 임상 중인 양성자(혹은 극히 일부의 탄소이온 치료기)치료기는 1990년 미국의 로마린다(Loma Linda) 대학에서 최초로 건립된 방식인 사이클로트론 혹은 싱클로트론 가속기와 빔라인 및 겐트리(gantry)로 구성된다. 그 장치의 거대함만큼이나 가격과 유지비 등에서 일반 소형병원에서 운영하기에는 쉽지 않아 보인다. 이에 본고에서는 소형병원에서도 운영할 수 있는 저비용의 레이저 양성자(이온) 가속방식의 등장 배경과 향후 전망을 논하고자 한다.

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