• Title/Summary/Keyword: 용매화 구조

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Synthesis and Thermal Properties of PPS/PPSS Copolymer (PPS/PPSS 공중합체의 합성 및 열적 성질)

  • Park, Lee-Soon;Lee, Tae-Hyung;Kwak, Kyu-Dae;Haw, Jung-Rim
    • Applied Chemistry for Engineering
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    • v.9 no.3
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    • pp.440-444
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    • 1998
  • Poly(phenylene sulfide-co-phenylene sulfide sulfone), PPS/PPSS copolymers were synthesized from p-dichlobenzene(DCB), p-dibromobenzene(DBB), p-diiodobenzene(DIB), 4-chlorophenyl sulfone(CPS) and sodium sulfide as comonomers under high temperature and pressure utilizing N-methyl-2-pyrrolidinone(NMP) as solvent. The yield of PPS/PPSS copolymer shoed maximum at $190^{\circ}C$ with [DBB]/[CPS] and [DIB]/[CPS] comonomer pair, while [DCB]/[CPS] pair exhibited maximum yield at $230^{\circ}C$. The change of yield is in the order of I>Br>Cl as leaving groups were in accordance with nucleophilic aromatic substitution reaction mechanism suggested for the synthesis of PPS type polymers. The molecular weight of PPS/PPSS copolymer was the highest($M_w=8,330g/mol$) with [DBB]/[CPS] comonomers in which [CPS] was 10 mole%. The PPS/PPSS copolymer made with 10 mole% of [CPS] showed about $15^{\circ}C$ higher $T_g$ and $15^{\circ}C$ lower $T_m$ than those of PPS homopolymer, which may be useful from the processing and thermal property point of view. The PPS/PPSS copolymer with 30 mole% of CPS or above did not exhibit Tm. The PPS/PPSS copolymer obtained with comonomer feed ratio of [DBB]/[CPS] = 95/5 mole% under $240^{\circ}C$ showed even higher molecular weight($M_w=10,300g/mole$) than PPS homopolymer made under similar reaction condition, retaining high crystallinity and thermal stability.

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Isolation and Identification of Inhibitory Compound from Crataegi Fructus on ${\alpha}-amylase$ and ${\alpha}-glucosidase$ (산사(Crataegi Fructus) 추출물로부터 ${\alpha}-amylase$${\alpha}-glucosidase$ 저해 물질 분리 및 동정)

  • Kim, Myung-Uk;Cho, Young-Je;Kim, Jeung-Hoan
    • Applied Biological Chemistry
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    • v.50 no.3
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    • pp.204-209
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    • 2007
  • The objective of this research was to evaluate the inhibitory activities of phenolic compounds isolated from Crataegi Fructus on ${\alpha}-amylase$ and ${\alpha}-glucosidase$. The content of total phenolic compounds of water extract from Crataegi Fructus was 22.5 mg/g. The inhibitory activity of the water extract (200 ${\mu}g/ml$) from Crataegi Fructus on ${\alpha}-amylase$ and ${\alpha}-glucosidase$ was determined to be 100% and 82.6%, respectively. Isolation of inhibitory compounds was carried out on Sephadex LH-20 and MCI-gel CHP-20 column chromatography using a gradient elution procedure of increasing MeOH in $H_2O$. The chemical structure of the inhibitory compound against ${\alpha}-amylase$ and ${\alpha}-glucosidase$ was confirmed as chlorogenic acid by spectroscopic analysis of FAB-MS, NMR and IR spectrum.

Development of Biologically Active Compounds from Edible Plant Sources-XIX. Isolation of Inhibitory Compound on LDL-Oxidation from the Aerial Parts of Sajabalssuk (Artemisia princeps PAMPANINI, Sajabalssuk) (식용식물자원으로부터 활성물질의 탐색-XIX. 사자발쑥(Artemisia princeps PAMPANINI, Sajabalssuk)의 전초로부터 저밀도 지질 단백질(LDL) 산화 억제물질의 분리)

  • Bang, Myun-Ho;Song, Myoung-Chong;Han, Min-Woo;Lee, Dae-Young;Jo, Jin-Kyung;Chung, Hae-Gon;Jeong, Tae-Sook;Lee, Kyung-Tae;Choi, Myung-Sook;Baek, Nam-In
    • Applied Biological Chemistry
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    • v.50 no.3
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    • pp.224-227
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    • 2007
  • Sajabalssuk (Artemisia princeps PAMPANINI) was extracted with 80% aqueous MeOH, and the concentrated extract was partitioned with EtOAc, n-BuOH and $H_{2}O$, successively. From the EtOAc fraction, two phenylpropanoids were isolated through the repeated silica gel and ODS column chromatographies. From the results of physico-chemical data including NMR, MS and IR, the chemical structures of the phenylpropanoids were determined as eugenol (1) and (-)-sesamin (2). They were the first to be isolated from Sajabalssuk (Artemisia princeps PAMPANINI, Sajabalssuk). Also, eugenol inhibited LDL-oxidation with the inhibitory activity of 87.8 ${\pm}$ 1.0% at a concentration of 40 ${\mu}g/ml$.

Sterols from the Seed of Cowpea (Vigna sinensis K.) (동부로부터 sterol의 분리 동정)

  • Cui, En-Ji;Park, Hee-Jung;Wu, Qian;Chung, In-Sik;Kim, Ji-Young;Baek, Nam-In
    • Journal of Applied Biological Chemistry
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    • v.53 no.2
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    • pp.77-81
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    • 2010
  • The seed of cowpea (Vigna sinensis K.) was extracted with 80% aqueous methanol (MeOH). And the concentrated extract was partitioned with ethyl acetate (EtOAc), n-butanol (n-BuOH) and $H_2O$, successively. The repeated silica gel and octadecyl silica gel (ODS) column chromatographic separations for the EtOAc and n-BuOH fractions led to isolation of four sterols. And the chemical structures of the compounds were determined as a mixture of stigmasterol and $\beta$-sitosterol with the ratio of 4 to 3 (1), 7-ketositosterol (2), and stigmasterol 3-O-$\beta$D-glucopyranoside (3) from the interpretation of spectroscopic data including nuclear magnetic resonance (NMR) spectrum metric, mass (MS) spectrum metric and infrared (IR) spectroscope. This study reports the first isolation of $\beta$-sitosterol, 7-ketositosterol, and stigmasterol 3-O-$\beta$-D-glucopyranoside from the seed of Vigna sinensis K. In addition, compound 2, 7-ketositosterol, is rarely occurred in natural source including plant.

Anti-cancer Activity of Flavonoids from Aceriphyllum rossii (돌단풍(Aceriphyllum rossii)에서 분리한 플라보노이드의 항암활성)

  • Ahn, Eun-Mi;Han, Jae-Taek;Kwon, Byoung-Mog;Kim, Sung-Hoon;Baek, Nam-In
    • Applied Biological Chemistry
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    • v.51 no.4
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    • pp.309-315
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    • 2008
  • The methanol extract from the aerial parts of Aceriphyllum rossii was fractionated into ethyl acetate, n-BuOH and $H_2O$ layers through solvent fractionation. Repeated silica gel column chromatography of EtOAc and n-BuOH layers afforded five flavonol glycosides. They were identified as astragalin (1), kaempferol 3-O-${\alpha}$-L-rhamnopyranosyl (1${\rightarrow}$6)-${\beta}$-D-glucopyranoside (2), rutin (3), kaempferol 3-O-${\alpha}$-L-rhamnopyranosyl (1${\rightarrow}$4)-${\alpha}$-L-rhamnopyranosyl 1${\rightarrow}$6)-${\beta}$-D-glucopyranoside (4), and quercetin 3-O-${\alpha}$-L-rhamnopyranosyl (1${\rightarrow}$4)-${\alpha}$-L-rhamnopyranosyl (1${\rightarrow}$6)-${\beta}$-D-glucopyranoside (5) on the basis of spectroscopic data. All of them showed an inhibition in farnesyl protein tranferase (FPTase) activity, and rutin (3) inhibited the growth of rat H-ras cell and the cell migration of human umbilical vein endothelial cells (HUVECs).

Deveolopment of Biologically Active Compounds from Edible Plant Sources-XII. - Flavonol Glycosides from Trigonotis peduncularis Benth and its hACAT1 Inhibitory Activity - (식용식물자원으로부터 활성물질의 탐색-XII. - 꽃마리(Trigonotis peduncularis Benth.)로부터 Flavonol 배당체의 분리 및 hACAT1 저해활성 -)

  • Yang, Hye-Joung;Song, Myoung-Chong;Bang, Myun-Ho;Lee, Jin-Hee;Chung, In-Sik;Lee, Youn-Hyung;Jeong, Tae-Sook;Kwon, Byoung-Mog;Kim, Sung-Hoon;Kim, Dae-Keun;Park, Mi-Hyun;Baek, Nam-In
    • Applied Biological Chemistry
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    • v.48 no.1
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    • pp.98-102
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    • 2005
  • The MeOH extracts obtained from whole plant of Trigonotis peduncularis Benth. were solvent fractionated using EtOAc, n-BuOH and water, successively. The EtOAc and n-BuOH fractions gave four flavonol glycosides through application of silica gel and octadecyl silica gel (ODS) column chromatographies. The chemical structures of the flavonol glycosides were determined by the interpretation of several spectral data including 2D-NMR as $kaempferol-3-O-{\beta}-{D}-glucopyranoside\;(astragalin,\;1),\;kaempferol-3-O-{\alpha}-{L}-rhamnopyranosyl\;(1{\rightarrow}6)-{\beta}-{D}-glucopyranoside\;(nicotiflorin,\;2),\;quercetin-3-O-{\alpha}-{L}-rhamnopyranosyl(1{\rightarrow}6)-{\beta}-{D}-glucopyranoside\;(rutin,\;3),\;quercetin-3-O-{\beta}-{D}-glucopyranoside\;(isoquercitrin,\;4)$. The flavonoids have been first isolated from this plant. Nicotiflorin $(100\;{\mu}g/ml)$ showed $68.3{\pm}1.2%$ of the inhibitory effect on hACAT1(human Acyl CoA: cholesterol transferase 1) activity.

Phytochemical Constituents of Climacium dendroides (곧은 나무이끼(Climacium dendroides)의 식물 화학적 성분연구)

  • Nam, Jung-Hwan;Cho, In-Sook;Kim, Su-Jeong;Nam, Chun-Woo;Seo, Jong-Taek;Yoo, Dong-Lim;Kim, Won-Bae;Ryu, Seung-Yeol;Lee, Eung-Ho;Kim, Min-Young;Yoo, Young-Min;Park, Hee-Juhn;Jung, Hyun-Ju
    • Applied Biological Chemistry
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    • v.51 no.2
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    • pp.136-141
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    • 2008
  • The chromatographic separation of organic solvent extracts of liverwort led to the isolation of six compounds. 2-Chromenone (1), 3, 4-dihydroxy-cinnamic acid (2), 3, 3', 4', 5, 7-pentahydroxy-2-phenylchromen-4-one (3), kaemperol-3-O-${\beta}$-D-glucopyranoside (4), 3-[[3-(3,4-Dihydroxyphenyl)-1-oxo-2-propenyl]oxy]-1, 4, 5-trihydroxycyclohexane carboxylic acid (5) and quercetin-3-O-rutinoside (6) were isolated from the methanolic extracts of the all part of Climacium dendroides. Their structure were established by chemical and spectroscopic methods. All compounds were isolated for the first time from this plant Climacium dendroides.

Preparation of Asymmetric Folyethersulfone Hollow Fiber Membranes for Flue Gas Separation (온실기체 분리용 폴리이서설폰 비대칭 중공사 막의 제조)

  • Kim Jeong-Hoon;Sohn Woo-Ik;Choi Seung-Hak;Lee Soo-Bok
    • Membrane Journal
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    • v.15 no.2
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    • pp.147-156
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    • 2005
  • It is well-known that polyethersulfone (PES) has high $CO_2$ selectivity over $N_2\;(or\;CH_4)$ and excellent pressure resistance of $CO_2$ plasticization among muy commercialized engineering plastics[1-4]. Asymmetric PES hollow fiber membranes for flue gas separation were developed by dry-wet spinning technique. The dope solution consists of PES, NMP and acetone. Water and water/NMP mixtures are used in outer and inner coagulants, respectively. Gas permeation rate (i.e., permeance) and $CO_2/N_2$ selectivity were measured with pure gas, respectively and the micro-structure of hollow fiber membranes was characterized by scanning electron microscopy. The effects of polymer concentration, ratio of NMP to acetone, length of air gap, evaporation condition and silicone coating were investigated on the $CO_2/N_2$ separation properties of the hollow fibers. Optimized PES hollow fiber membranes exhibited high permeance of $25\~50$ GPU and $CO_2/N_2$ selectivity of $30\~40$ at room temperature and have the apparent skin layer thickness of about $0.1\;{\mu}m$. The developed PES hollow fiber membranes, would be a good candidate suitable for the flue gas separation process.

Electrochemical Properties of PVdF Gel Polymer Electrolyte with Plasticizer for Lithium/sulfur Battery (리튬 유황 전지용 PVdF 겔 고분자 전해질의 가소제에 따른 전기화학적 특성 평가)

  • Ryu, Ho-Suk;Kim, Jong-Seon;Kim, Dong-Ju;Kim, Dong-Yeon;Kim, Ic-Pyo;Ahn, Hyo-Jun;Kim, Ki-Won;Ahn, Jou-Hyeon;Lee, Gun-Hwan
    • Journal of the Korean Electrochemical Society
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    • v.10 no.3
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    • pp.213-218
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    • 2007
  • In order to find out proper PVdF gel polymer electrolyte for Li/S battery, we investigated PVdF gel polymer electrolytes with various glyme type plasticizer such as polyglyme, tetraglyme, triglyme. The organic solvents as triglyme, tetraglyme, polyglyme (Mn = 250, 500) has different chain length of ethylene oxide(EO) in solvent of glyme system. ionic conductivity decreased as increasing chain length of EO in plasticizers. Ionic conductivity of PVdF gel electrolyte with tetraglyme, triglyme, polyglyme (Mn = 250, 500) at room temperature was $5{\times}10^{-4},\;3{\times}10^{-4},\;6{\times}10^{-5},\;3{\times}10^{-5}\;S/cm$, respectively. Li/S cell with PVdF gel polymer electrolyte using tetraglyme plasticizer had low interfacial resistance and the highest initial discharge capacity of 1232 mAh/g of active sulfur, which was about 70% utilization of theoretical value.

Soluble Polyimide Binder for Silicon Electrodes in Lithium Secondary Batteries (리튬이차전지 실리콘 전극용 용해성 폴리이미드 바인더)

  • Song, Danoh;Lee, Seung Hyun;Kim, Kyuman;Ryou, Myung-Hyun;Park, Won Ho;Lee, Yong Min
    • Applied Chemistry for Engineering
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    • v.26 no.6
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    • pp.674-680
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    • 2015
  • A solvent-soluble polyimide (PI) polymeric binder was synthesized by a two-step reaction for silicon (Si) anodes for lithium-ion batteries. Polyamic acid was first prepared through ring opening between two monomers, bicyclo[2,2,2]oct-7-ene-2,3,5,6-tetracarboxylic dianhydride (BCDA) and 4,4-oxydianiline (ODA), followed by condensation reaction. Using the synthesized PI polymeric binder (molecular weight = ~10,945), the coating slurry was then prepared and Si anode was fabricated. For the control system, Si anode based on polyvinylidene fluoride (PVDF, molecular weight = ~350,000) having the same constituent ratio was prepared. During precycling, PI polymeric binder revealed much improved discharge capacity ($2,167mAh\;g^{-1}$) compared to that of using PVDF polymeric binder ($1,740mAh\;g^{-1}$), while the Coulombic efficiency of two systems were similar. PI polymeric binder improved the cycle retention ability during cycles compared to that of using PVDF, which is attributed to an improved adhesion property inside Si anode diminishing the dimensional stress during Si volume changes. The adhesion property of each polymeric binder in Si anode was confirmed by surface and interfacial cutting analysis system (SAICAS) (Si anode based on PI polymeric binder = $0.217kN\;m^{-1}$ and Si anode based on PVDF polymeric binder = $0.185kN\;m^{-1}$).