• 제목/요약/키워드: $O(^1D)+H_2{\rightarrow}\

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Tracer Study Using $H_2O^{18}$ on the Oxidation of Vanadium (III) by Molecular Oxygen (산소에 의한 바나듐 (III) 이온의 산화반응에 대한 $O^{18}$ 동위원소 연구)

  • Kim, Myeong Ja;Choe, Dong Sik
    • Journal of the Korean Chemical Society
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    • v.18 no.4
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    • pp.259-266
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    • 1974
  • Isotopic experiments using $H_2O^{18}$ on the oxidation of V(III) in acid perchlorate by molecular oxygen were performed in the range pH 1.0 to 3.0. At pH < 2, where a rate equation of the form TEX>$ -\frac{d[V(III)]}{dt}=k_1\frac{[O_2][V(III)]}{[H^+]}$ is adequate, the tracer study clearly indicated that all the product vanadyl ion's ($VO^{2+}$) oxygen originated from the molecular oxygen. At pH > ~2, where a different rate expression of the form $-\frac{d[V(III)]}{dt}=K_2\frac{[O_2][V(III)]^2}{[Ht]^2}$is required, the isotopic experiment showed that half the vanadyl oxygen originated from the molecular oxygen. Considering the results of the isotopic study, a mechanism for the V(Ⅲ)-O2 reaction at pH < ~2, may be suggested as follows: The tracer results at pH > ~2 imply that the rate determining step may be $$ V_2(OH)_2^{4+} + O_2 \rightarrow 2VO^{2+} + H_2O_2$$ followed by $$V_2(OH)_2^{4+} + H_2O_2 \rightarrow 2VO^{2+} + 2H_2O$$ after establishing the equilibria V^{3+} + H_2O \leftrightarrow VOH^{2+} + H^+, and 2VOH^{2+}\leftrightarrow V_2(OH)_2^{4+}$$

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Content Analysis and Classification for Polygonati Odorati Rhizoma and Polygonati Rhizoma by Steroidal Saponin (Steroidal Saponin을 이용한 위유, 황정의 분류 및 함량 분석법 개발)

  • Kim, Sun-Gun;Shin, So-Young;Moon, Ye-Ji;Seo, Ji-Yoon;Kim, Ho-Kyoung;Whang, Wan-Kyunn
    • YAKHAK HOEJI
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    • v.54 no.6
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    • pp.441-448
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    • 2010
  • In present study, classification and quality control of Genus Polygonatum were developed using the isolated from Polygonati Odorati Rhizoma and Polygonati Rhizoma. 3 components were isolated from Butanol fractions of Polygonati Rhizoma, and 2 components were isolated from Hexane and Butanol fractions of Polygonati Odorati Rhizoma. All the components were obtained using silica gel and ODS column chromatography. The compounds were identified as adenosine, 14-hydroxylfurost-5-ene-3-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}2$)-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}4$)-O-${\beta}$-D-galactopyranosyl-26-O-${\beta}$-D-glucopyranoside, 22-O-methyl-14-hydrocxyfurost-5-ene-3-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}2$)-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}4$)-O-${\beta}$-Dgalactopyranosyl-26-O-${\beta}$-D-glucopyranoside, ${\beta}$-Sitosteryl-3-O-${\beta}$-D-D-glucopyranoside, 14-hydoxylfurost-5-ene-3-O-${\beta}$-Dglucopyranosyl-($1{\rightarrow}2$)-O-[${\beta}$-D-xylopyranosyl-($1{\rightarrow}3$)]-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}4$)-O-${\beta}$-D-galactopyranoside through physicochemical data, spectroscopic methods ($^1H$-NMR, $^{13}C$-NMR, Mass) according references. The quality control of genus Polygonatum were conducted using HPLC quantitative analysis of 14-hydroxylfurost-5-ene-3-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}2$)-O-${\beta}$-D-glucopyranosyl-($1{\beta}4$)-O-${\beta}$-D-galactopyranosyl-26-O-${\beta}$-D-glucopyranoside, 14-hydoxylfurost-5-ene-3-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}2$)-O-[${\beta}$-D-xylopyranosyl-($1{\rightarrow}3$)]-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}4$)-O-${\beta}$-D-galactopyranoside in 30 samples collected throughout Korea and China. This method provided a tool for standardization of mix or misusing the commercial Odorati Rhizoma and Polygonati Rhizoma. As a result, contained quantity of 14-hydroxylfurost-5-ene-3-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}2$)-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}4$)-O-${\beta}$-D-galactopyranosyl-26-O-${\beta}$-D-glucopyranoside was measured $0.008{\pm}0.006%$ and 14-hydoxylfurost-5-ene-3-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}2$)-O-[${\beta}$-D-xylopyranosyl-(13)]-O-${\beta}$-D-glucopyranosyl-($1{\rightarrow}4$)-O-${\beta}$-Dgalactopyranoside was measured $0.026{\pm}0.012%$.

Structure Determination of the Extractives from the Taxus Cuspidata Fruits (주목열매 추출물 구조분석)

  • Park, Se-Yeong;Choi, In-Gyu;Bae, Young-Soo
    • Journal of the Korean Wood Science and Technology
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    • v.41 no.6
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    • pp.566-575
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    • 2013
  • The fruits of Taxus cuspidata were collected, divided into seeds and fruits, and extracted with 95% EtOH. The extracts were evaporated under the reduced vacuum pressure, concentrated, then successively fractionated with a series of n-hexane, dichloromethane, ethyl acetate and water on a separatory funnel to get some freeze dried samples. A portion of the EtOAc (arils:1.65 g, seeds:1.04 g) and $H_2O$ (arils:7 g, seeds:10 g) soluble samples were chromatographed on a Sephadex column using MeOH-$H_2O$ (1:1, 1:3, 1:5, v/v), EtOH-hexane (3:1, v/v) mixture and 100% $H_2O$ as eluting solvents to isolate pure compounds from the fractions. The isolates were developed by cellulose TLC using t-BuOH-HOAc-$H_2O$ (TBA; 3:1:1, v/v/v) and 6% aqueous HOAc. Visualization was done under ultraviolet light and by spraying the vanillin-HCl-EtOH reagent (4.8:12:480, v/v/v). followed by heating. The structures of the isolates were characterized by $^1H$- and $^{13}C$-NMR, DEPT, 2D-NMR, LC/MS and EI-MS spectra. In addition to the NMR and MS spectra, acid hydrolysis and permethylation were used to determine the correct structure of the isolated sugar compound. Their structures were elucidated as (+)-catechin (1), (-)-epicatechin (2), (+)-gallocatechin (3), (-)-epigallocatechin (4) and ${\beta}$-D-fructofuranose-($2{\rightarrow}4$)-O-${\beta}$-D-glucopyranose($1{\rightarrow}4$)-O-${\alpha}$-D-glucopyranose ($1{\rightarrow}2$)-O-${\beta}$-D-fructofuranose (5) on the basis of the above experimental evidences.

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).

Steroidal Saponins from the Rhizomes of Asparagus oligoclonos and their Antibacterial Activity (방울비짜루(Asparagus oligoclonos)로부터 분리한 스테로이드 사포닌의 항균활성)

  • Seong, Jae-Duck;Park, Seung-Yong;Oh, Sei-Ryang;Kwack, Yong-Ho;Kim, Geum-Soog
    • Applied Biological Chemistry
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    • v.43 no.2
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    • pp.136-140
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    • 2000
  • Two steroidal saponins were isolated from MeOH extract of the rhizomes of Asparagus oligoclonos. Using the spectroscopic techniques of $^1H,\;^{13}C$ NMR and 2D NMR, they were identified as $3-O-[{\beta}-D-glucopyranosyl-(1{\rightarrow}2)-{\beta}-D-glucopyranosyl]-(25S)-spirostan-3{\beta}-ol$ and $3-O-{{\beta}-D-glucopyranosyl-(1{\rightarrow}2)-[{\beta}-D-xylopyranosyl-(1{\rightarrow}4)]-{\beta}-D-glucopyranosyl}-(25S)-spirostan-3{\beta}-ol$, respectively. They were first isolated from A. oligoclonos. The in vitro antibacterial activities as well as antibacterial spectrums against 20 bacteria strains were investigated with MIC test. Both saponins inhibited the growth of 10 bacteria strains at the concentration of$100\;{\mu}g/ml$.

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Crystal Molecular Orbital Calculation of the Lanthanum Nickel Oxide by Means of the Micro-Soft Fortran (마이크로-소프트 포트란을 이용한 복합 산화물 결정의 분자 궤도함수 계산)

  • Koo, Hyun-Joo;Lee, Kwang-Soon;Ahn, Woon-Sun
    • Journal of the Korean Chemical Society
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    • v.39 no.9
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    • pp.685-691
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    • 1995
  • EHMACC and EHPC programs written in VAX version to calculate the tight-binding extended Huckel method is converted into the micro-soft fortran available to PC. The band calculation of LaNiO3 unit cell and extended ($2{\times}2{\times}1$) cell with perovskite structure is made by the PC/386 and PC/486. The calculation is also made for the DOS and the COOP. It is supposed that the electronic property of $LaNiO_3$ is semiconductor along to the ${\Gamma}{\rightarrow}H,\;H{\rightarrow}N,\;and\;N{\rightarrow}{\Gamma}(2D)$ direction with band gap about 0u.35 eV, while metal property in ${\Gamma}{\rightarrow}P\;and\;P{\rightarrow}N(3D)$ direction. The oxygen atom property in $LaNiO_3$ is more effectively affected by oxygen atom position than defect of nickel atom.

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Luminescent Properties of Rare Earth doped $SrTiO_3:Pr$ Phosphors (희토류를 첨가한 $SrTiO_3:Pr$형광체의 발광특성)

  • Park, Chang-Sub;Lee, Jeng-Un;Lee, Ji-Young;Yu, Il
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2006.06a
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    • pp.483-484
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    • 2006
  • $Eu^{3+}$$Pr^{3+}$이 첨가된 $SrTiO_3$형광체를 고상반응법으로 제조하였다. $SrTiO_3:Pr$형광체는 $^3P_J(J=0,1,2){\rightarrow}^3H_4$에 의한 490nm 부근의 녹색발광과 $^1D_2{\rightarrow}^3H_4$에 의한 618nm 의 적색발광이 동시에 나타났다. $SrTiO_3:Eu$형광체는 $SrTiO_3:Pr$형광체와 달리 $^5D_0{\rightarrow}^7F_1$에 의한 583nm와 $^5D_0{\rightarrow}^7F_2$에 의한 610nm의 적색발광만 각각 관찰되었다. $SrTiO_3$의 모체에서 $Eu^{3+}$는 inversion sysmmetry를 가짐으로써 610nm의 electric dipole transition 보다는 583nm의 magnetic dipole transition이 강하게 일어났다.

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A New Steroidal Glycoside from Allium macrostemon Bunge

  • Kim, Yun Sik;Cha, Joon Min;Kim, Dong Hyun;Lee, Tae Hyun;Lee, Kang Ro
    • Natural Product Sciences
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    • v.24 no.1
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    • pp.54-58
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    • 2018
  • A phytochemical investigation of Allium macrostemon Bunge (Liliaceae) afforded the new pregnane steroidal glycoside, named allimacroside F (1), along with three known glycosides, benzyl-O-${\alpha}-{\text\tiny{L}}$-rhamnopyranosyl-($1{\rightarrow}6$)-${\beta}-{\text\tiny{D}}$-glucopyranoside (2), phenylethyl-O-${\alpha}-{\text\tiny{L}}$-rhamnopyranosyl-($1{\rightarrow}6$)-${\beta}-{\text\tiny{D}}$-glucopyranoside (3), (Z)-3-hexenyl-O-${\alpha}-{\text\tiny{L}}$-rhamnopyranosyl-($1{\rightarrow}6$)-${\beta}-{\text\tiny{D}}$-glucopyranoside (4). The identification and structural elucidation of a new compound (1) was carried out based on spectral data analyses ($^1H-NMR$, $^{13}C-NMR$, $^1H-^1H$ COSY, HSQC, HMBC, and NOESY) and HR-FAB-MS.

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.

ON A GENERALIZED TRIF'S MAPPING IN BANACH MODULES OVER A C*-ALGEBRA

  • Park, Chun-Gil;Rassias Themistocles M.
    • Journal of the Korean Mathematical Society
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    • v.43 no.2
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    • pp.323-356
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    • 2006
  • Let X and Y be vector spaces. It is shown that a mapping $f\;:\;X{\rightarrow}Y$ satisfies the functional equation $$mn_{mn-2}C_{k-2}f(\frac {x_1+...+x_{mn}} {mn})$$ $(\ddagger)\;+mn_{mn-2}C_{k-1}\;\sum\limits_{i=1}^n\;f(\frac {x_{mi-m+1}+...+x_{mi}} {m}) =k\;{\sum\limits_{1{\leq}i_1<... if and only if the mapping $f : X{\rightarrow}Y$ is additive, and we prove the Cauchy-Rassias stability of the functional equation $(\ddagger)$ in Banach modules over a unital $C^*-algebra$. Let A and B be unital $C^*-algebra$ or Lie $JC^*-algebra$. As an application, we show that every almost homomorphism h : $A{\rightarrow}B$ of A into B is a homomorphism when $h(2^d{\mu}y) = h(2^d{\mu})h(y)\;or\;h(2^d{\mu}\;o\;y)=h(2^d{\mu})\;o\;h(y)$ for all unitaries ${\mu}{\in}A,\;all\;y{\in}A$, and d = 0,1,2,..., and that every almost linear almost multiplicative mapping $h:\;A{\rightarrow}B$ is a homomorphism when h(2x)=2h(x) for all $x{\in}A$. Moreover, we prove the Cauchy-Rassias stability of homomorphisms in $C^*-algebras$ or in Lie $JC^*-algebras$, and of Lie $JC^*-algebra$ derivations in Lie $JC^*-algebras$.