• 제목/요약/키워드: ionic viscosity

검색결과 90건 처리시간 0.02초

Synthesis and Physicochemical Properties of Ionic Liquids: 1-Alkenyl-2,3-dimethylimidazolium Tetrafluoroborates

  • Min, Gwan-Hong;Yim, Tae-Eun;Lee, Hyun-Yeong;Kim, Hyo-Jin;Mun, Jun-Young;Kim, Sang-Mi;Oh, Seung-M.;Kim, Young-Gyu
    • Bulletin of the Korean Chemical Society
    • /
    • 제28권9호
    • /
    • pp.1562-1566
    • /
    • 2007
  • 1-Alkenyl-2,3-dimethylimidazolium tetrafluoroborate ionic liquids having an olefinic substituent were synthesized and characterized. Among them, [AMMIm]BF4 with an allyl group showed lower viscosity, higher ionic conductivity, and a wider electrochemical window compared with its analogue having a saturated alkyl substituent. An EDLC with [AMMIm]BF4 showed better performance than that with [PMMIm]BF4, too.

이미다졸계 이온성 액체의 물성 (Physical and Thermodynamic Properties of Imidazolium Ionic Liquids)

  • 오수연;강정원;박병흥;김기섭
    • Korean Chemical Engineering Research
    • /
    • 제50권4호
    • /
    • pp.708-712
    • /
    • 2012
  • 이온성 액체는 일반적으로 거대 헤테로 고리 양이온과 무기 음이온으로 이루어진 염으로, 상온에서 액체로 존재한다. 따라서 이온성 액체의 물성은 양이온과 음이온의 종류, 알킬기의 수에 영향을 받으므로 그 조합에 의해 이온성 액체 각각의 물성이 달라진다. 또한 비휘발성, 열적 안정성, 넓은 전기 화학적 범위를 가지므로 기존의 유기용매를 대체할 주목할 만한 청정 용매(Green solvent)이다. 본 연구에서는 1-Butyl-3-methylimidazolium bromide ([BMIM][Br]), 1-butyl-3-methylimidazolium Chloride ([BMIM][Cl]), 1-butyl-3-methylimidazolium iodide ([BMIM][I]) 그리고 1-butyl-3-methylimidazolium tetrafluoroborate ([BMIM][$BF_4$])을 합성하였으며, 그 중 [BMIM][Br], [BMIM][I], [BMIM][$BF_4$]의 밀도, 점도, 굴절률, 열용량과 이온전도도를 293.2~323.2 K의 온도범위에서 측정하였다. 밀도와 굴절률은 [BMIM][I]가 세 이온성 액체 중 가장 높았으며, 점성은 [BMIM][Br]가 가장 높았다. 열용량은 [BMIM][Br]보다 [BMIM][$BF_4$]가 높았으며, 이온 전도도는 [BMIM][I]보다 [BMIM][$BF_4$]가 더 높았다.

연소 전 조건에서 음이온이 Sulfite계인 이온성 액체의 CO2 흡수 특성 (Absorption characteristic of carbon dioxide in Ionic Liquids based sulfite anion in the pre-combustion condition)

  • 백근호;장현태;차왕석
    • 한국산학기술학회논문지
    • /
    • 제22권3호
    • /
    • pp.763-769
    • /
    • 2021
  • 본 연구는 지구 온난화 현상의 주원인인 이산화탄소의 제거를 목적으로 최근에 주목 받고 있는 물질인 이온성액체를 실험실 규모로 제조하였다. 음이온이 Sulfite계인 이온성 액체의 이산화탄소 흡수능, 초기흡수속도 그리고 재생성을 조사하기 위하여 기-액 흡수평형장치를 이용하여 연구하였다. 그 결과 음이온이 Sulfite계인 이온성액체 중 높은 흡수능을 갖는 이온성액체는 음이온이 ethyl sulfite인 경우이며, 특히 [beim] ethyl sulfite의 경우 흡수평형압력이 22 bar인 조건에서의 흡수력은 1.1 mol CO2/mol IL로 가장 높은 흡수력을 나타냈다. 재생성 연구에서 음이온이 Sulfite계인 이온성액체는 모두 재생후의 흡수력이 약 7%정도 감소하였으며, 이로부터 재생성이 우수함을 알 수 있다. 점도 감소를 목적으로 두 종류의 희석제를 첨가하였을 때 희석제는 단지 이온성액체의 흡수력을 감소시키는 희석효과로 작용하였으며 희석제 첨가에 따른 흡수력의 증가는 없었다. 흡수실험에 따른 점도변화의 정도를 조사하기 위해 흡수반응 전과 흡수 실험 후 재생한 시료의 점도를 측정하였으며, 실험결과 흡수실험 후 시료의 점도가 흡수실험 전보다 약 8% 정도 감소하는 경향을 보였다. 그러나 흡수제 합성은 1단계에서 이루어지며 사용되는 원료물질 또한 저렴한 장점이 있으며 흡수능에서는 우수한 재생성과 높은 안정성을 가지고 있음을 알 수 있었다.

Acid-Base Equilibria and Related Properites of Chitosan

  • Joon-Woo Park;Kyung-Hee Choi;Kwang-hee Koh Park
    • Bulletin of the Korean Chemical Society
    • /
    • 제4권2호
    • /
    • pp.68-72
    • /
    • 1983
  • The $pK_{a}$ of $-NH_{3}^{+}$ group of chitosan in water was 6.2, while that of D-glucosamine-HCl, monomer of chitosan, was found to be 7.8. The difference of $pK_{a}$ values between chitosan and D-glucosamine was attributed to the strong electrostatic interaction between $-NH_{3}^{+}$ groups in chitosan. The apparent binding constant of $Cu^{2+}$ to D-glucosamine was estimated to be $1{\times}10^{4}$. For chitosan, no significant binding of $Cu^{2+}$ to the polymer was observed when pH < 5, but strong cooperative binding was observed near pH 5.1. The mechanism of such cooperativity was proposcd. Chitosan in solution exhibited typical polyelectrolytic behaviors: viscosity increases with increased amount of charged group, and decreases with addition of salt. The concentration dependence of viscosity was measured, and the Huggins parameters and intrinsic viscosity were calculated at various ionic strength. The results were interpreted in terms of molecular properties of the chitosan molecule.

The physico-chemical nature of prepared dextran sulfates

  • Kim, Young-Choong
    • Archives of Pharmacal Research
    • /
    • 제4권1호
    • /
    • pp.33-41
    • /
    • 1981
  • The prepared dextran sulfates were characterized by measuring the reduced viscosisty at five different concentrations to obtain an intrinsic viscosity in both phosphate and tris buffers, pH 7.4, ionic strength of 0.1 Dextran sulfates having 0.81, 1.06 sulfate groups per hexose unit have reduced viscosity value below 40 ml/g whereas dextran sulfates having 1.21, 1.43, 1.69 sulfate groups per hexose unit have reduced viscosity value over 40 ml/g. Dextran sulfate having 1.21 sulfate groups per hexose unit had highest value of reduced viscosity. The reduced viscosity of dextran sulfate in tris buffer was always higher than that in phosphate buffer regardless of the sulfate content of dextran sulfate. The influence of the sulfation of the dextran sulfate. The influence of the sulfation of the dextran sulfate molecule on the dextran sulfate-LDL interaction was studied with three different dextran sulfate molecules. Dextran sulfate molecules having more than one sulfate group per hexose unit. The dextran sulfate having 0.81 sulfate groups per hexose unit showed considerably different precipitation curves in phosphate and tris buffers. This peculiar behavior of dextran sulfate having 0.81 sulfate groups per hexose unit in the two buffer systems was not noticed with dextran sulfate having more than one noticed with dextran sulfate having more than one sulfate group per hexose unit.

  • PDF

DEXTRAN 용액의 유동학적 특성 (Rheological Characterization of Dextran Solution)

  • 김남희;이향애
    • 약학회지
    • /
    • 제32권1호
    • /
    • pp.86-94
    • /
    • 1988
  • Some rheological properties of subfractions for dextran in the molecular weights range from $3{\times}10^4$ to $2{\times}10^6$ was investigated at room temperature. The dependence of the viscosity on concentration, shear rate, pH & ionic strength, temperature and solvent effect was observed. From the experimental data the Mark-Houwink viscosity equation in water at $25^{\circ}C$ was determined for samples having the molecular weight ranging from $3{\times}10^4$ to $2{\times}10^6$ as$[{\eta}]=3.1{\times}10^{-3}\;Mw^{0.39}(in\;dl/g)$. The intrinsic stiffness of the dextran backbone was estimated by evaluating the 'characteristic ratio' $C_{\infty}$, which is below the 0.082. In the concentrated region, the viscosity was decreased with increasing shear rate and was exponentially decreased with raising temperature, the viscosity showed the maximum value at neutral condition. From the experimental data, it was concluded that dextran chain, linked by the ${\alpha}-1$, 6-glucosidic linkage, behaves like a flexible random coil chain in aqueous solution, dextran solutions were pseudoplastic power law fluids among the empirical models of non-Newtonian behavior. Urea was an active reagent which increases the viscosity and swells dextran while pyrididine and glycerol were inactive reagents. Also, it could be estimated that the formation of gel structure is promote to the neutral state, the molecular weight larger than $2{\times}10^5$, when electrolytic concentration is IN and Ureas is use to solvent.

  • PDF

이온성 및 양성 계면 활성제가 변압기유의 화학적 특성 및 유동대전에 미치는 영향 (Influence of Interface Active substances(Ionic and Amphoteric) on Chemical property and Streaming Electrification of Transformer Oil)

  • 김용운;이덕출
    • E2M - 전기 전자와 첨단 소재
    • /
    • 제10권7호
    • /
    • pp.719-726
    • /
    • 1997
  • This research was conducted to analyze the change of surface tension, viscosity, streaming current and conductivity of transformer oil when it were injected with the interface active substances.(anionic:S-111, cationic:S-121, amphoteric:S-131) The changes properties of the surface tension and viscosity of the oil which were injected with the interface active substances were divided into the changes area and the minimum reduction area. The surface tension and viscosity of the oil which were injected with three different kinds of interface active substances showed remarkable change at the point where the concentration of the substance in anionic, in cationic and in amphoteric were 100[ppm], 10[ppm] and 1[ppm] respectively. The streaming current and conductivity of the same sample oil were also changed at the same densities of the surface tension and viscosity. For this factor, it was possibile for us to interpret the mechanism of the streaming current and conductivity. Therefore the interface active substances of the three kinds were injected into the oil within the limit of optimal volume, prevention effects of electrification were showed more excellence than unmixed insulating oil.

  • PDF

The Corrosion Study of Al Current Collector in Phosphonium Ionic Liquid as Solvent for Lithium Ion Battery

  • Cha, Eun-Hee;Mun, Jun-Young;Cho, E.-Rang;Yim, Tae-Eun;Kim, Young-Gyu;Oh, Seung-M.;Lim, Soo-A;Lim, Jea-Wook
    • 전기화학회지
    • /
    • 제14권3호
    • /
    • pp.152-156
    • /
    • 2011
  • A room temperature ionic liquid (RTIL) based on trihexyl (tetradecyl)phosphonium bis(trifluoromethanesulfonyl) imide ([$(C_6H_{13})_3P(C_{14}H_{29)}$] [TFSI];P66614TFSI) was synthesized and analyzed to determine their characteristics and properties. The bis(trifluoromethanesulfonyl)imide (TFSI) anion is widely studied as an ionic liquid (IL) forming anion which imparts many useful properties, notably electrochemical stability. Especially its electrochemical and physical characteristics for solvent of lithium ion battery were investigated in detail. $P_{66614}$ TFSI exhibits fairly low conductivity (0.89 mS $cm^{-1}$) and higher viscosity (298 K: 277 cP; 343 K: 39 cP) than other ionic liquids, but it exhibits a high thermal stability (over $400^{\circ}C$). Especially corrosion behavior on Al current collector was tested at room temperature and further it was confirmed that thermal resistivity for Al corrosion was highly increased in 1.0M LiTFSI/$P_{66614}$-TFSI electrolyte comparing with other RTILs by linear sweep thermometry.

Ionic Liquid Pretreatment of Lignocellulosic Biomass

  • Han, Song-Yi;Park, Chan-Woo;Kwon, Gu-Joong;Kim, Nam-Hun;Kim, Jin-Chul;Lee, Seung-Hwan
    • Journal of Forest and Environmental Science
    • /
    • 제36권2호
    • /
    • pp.69-77
    • /
    • 2020
  • Lignocellulosic biomass has recalcitrant characteristics against chemical and biological conversion due to its structural heterogeneity and complexity. The pretreatment process to overcome these recalcitrant properties is essential, especially for the biochemical conversion of lignocellulosic biomass. In recent years, pretreatment methods using ionic liquids (ILs) and deep eutectic solvents (DESs) as the green solvent has attracted great attention because of their advantages such as easy recovery, chemical stability, temperature stability, nonflammability, low vapor pressure, and wide liquids range. However, there are some limitations such as high viscosity, poor economical feasibility, etc. to be solved for practical use. This paper reviewed the research activities on the pretreatment effect of various ILs including DESs and their co-solvents with organic solvents on the enzymatic saccharification efficiency of lignocellulosic biomass and the nanocellulose preparation from the pretreated products.

Quaternary Ammonium-Based Room Temperature Ionic Liquids as Components of Carbonate Electrolytes for Li-ion Batteries: Electrochemical Performance and Thermal Properties

  • Chernyshov, Denis V.;Shin, Woo Cheol
    • Journal of Electrochemical Science and Technology
    • /
    • 제5권4호
    • /
    • pp.95-104
    • /
    • 2014
  • Electrochemical performance of Li-ion cells with $LiMn_2O_4$ cathodes and graphite anodes with carbonates electrolytes containing quaternary ammonium-based room temperature ionic liquids (ILs) is investigated. Eight different ILs based on tetraalkylammonium, pyrrolidinium or piperidinium cations paired with bis(trifluoromethylsulfonyl)imide or tris(pentafluoroethyl)trifluorophosphate anions are examined in combination with dimethyl carbonate as a main solvent and fluoroethylene carbonate as a solid electrolyte interface forming agent. It is shown that cycling properties of the cells are strongly affected by the content of ILs in the electrolyte mixtures and its increase corresponds to lower discharge capacity retention. Since viscosity and conductivity of ILs are of a great importance for the electrolytes formulation, some kind of combined parameter should be used for the assessment of IL applicability and calculated values of Walden products for neat ILs represent one of the possible options. Besides, positive effect of ILs on reduction of flammability and enhancement of thermal stability of electrolytes in contact with charged electrodes have been demonstrated by means of self-extinguishing time test and differential scanning calorimetry respectively.