• 제목/요약/키워드: $^1H$ NMR

검색결과 2,514건 처리시간 0.026초

다양한 치환기가 붙은 Styryl 4-Methoxy-1-Naphthyl Ketone의 합성과 치환기 효과에 관한 연구 (Synthesis and Substituent Effects in Substituted Styryl 4-Methoxy-1-Naphthyl Ketones)

  • Thirunarayanan, G.;Ananthakrishna Nadar, P.
    • 대한화학회지
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    • 제50권3호
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    • pp.183-189
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    • 2006
  • 초음파를 이용한 응축 반응을 이용하여 다양한 치환기가 붙은 4-methoxy-1-naphthyl ketone화합물들을 90% 이상의 높은 수율로 합성하였으며, 생성된 화합물물들을 미세 분석법, IR, 1H, 13C NMR 분석법 등을 이용하여 확인하였다. IR 스펙트럼에서 s-cis와 s-trans C=O stretching 모드를 확인하였으며, NMR 데이터로부터 에틸렌의 탄소와 수소에 대한 chemical shift를 확인하였다. 이러한 분광데이터를 이용하여 여러 분자들에 대한 Hammet 치환기 상수 값 들을 얻을 수 있었으며, 이들로부터 가용매 분해반응에 미치는 치환기 효과를 해석할 수 있었다.

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

  • 박세영;최인규;배영수
    • Journal of the Korean Wood Science and Technology
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    • 제41권6호
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    • pp.566-575
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    • 2013
  • 주목열매에서 분리한 과육과 씨를 95% EtOH 용액을 사용하여 각각 1.15 kg과 0.94 kg을 유리 용기에 침지하여 추출하고, 농축된 추출용액을 용매의 극성에 따라 n-hexane, dichloromethane, ethyl acetate 및 수용성으로 순차 분획한 후, 동결건조하였다. 혼합물로부터 순수한 화합물을 분리하기 위하여 ethyl acetate 및 수용성 분획에 대하여 Sephadex-LH 20 칼럼크로마토그래피를 실시하였다. 단리된 화합물들의 구조는 flavan 화합물의 경우 $^1H$-NMR, $^{13}C$-NMR 및 EI-MS 스펙트럼을 측정하였으며, 탄수화물은 보다 정확한 구조를 결정하기 위해 COSY, HSQC와 같은 2-D NMR과 LC/MS 스펙트럼을 이용하여 구조를 결정하였다. 또한 구성당 분석을 위해 acid hydrolysis, permethylation을 실시하여 구성당의 성분과 결합위치를 확인하였다. 위의 실험을 통하여 (+)-catechin (1), (-)-epicatechin (2), (+)-gallocatechin (3), (-)-epigallocatechin(4) 및 ${\beta}$-D-fructofuranose-($2{\rightarrow}4$)-O-${\beta}$-D-glucopyranose($1{\rightarrow}4$)-O-${\alpha}$-D-glucopyranose-($1{\rightarrow}2$)-O-${\beta}$-D-fructofuranose (5)의 구조를 결정하였다.

Synthesis and pH-Dependent Micellization of Sulfonamide-Modified Diblock Copolymer

  • Pal Ravindra R.;Kim Min Sang;Lee Doo Sung
    • Macromolecular Research
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    • 제13권6호
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    • pp.467-476
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    • 2005
  • The main objective of this study was to develop and characterize pH-sensitive biodegradable polymeric materials. For pH-sensitivity, we employed three kinds of moieties: 2-amino-3-(lH-imidazol-4-yl)-propionic acid (H), N-[4-( 4,6-dimethyl-pyrimidin-2ylsulfamoyl)-phenyl]succinamic acid (SM), and 2- {3-[ 4-( 4,6-dimethyl-pyrim­idin- 2-ylsulfamoyl)-phenylcarbamoyl]-propionylamino} -3-(3 H - imidazol-4-yl)-propionic acid (SH). The pH -sensitive diblock copolymers were synthesized by ring opening polymerization and coupling reaction from poly(ethylene glycol) (MPEG), $\varepsilon$-caprolactone (CL), D,L-lactide (LA) and pH-sensitive moieties. The pH-sensitive SH molecule was synthesized in a two-step reaction. The first step involved the synthesis of SHM, a methyl ester derivative of SH, by coupling reaction of SM and L-histidine methyl ester dihydrochloride, whereas the second step involved the hydrolysis of the same. The synthesized SM, SHM and SH molecules were characterized by FTIR, $^{1}H$-NMR and $^{13}C$-NMR spectroscopy, whereas diblock copolymers and pH-sensitive diblock copolymer were characterized by $^{1}H$-NMR and GPC analysis. The critical micelle concentrations were determined at various pH conditions by fluorescence technique using pyrene as a probe. The micellization and demicellization studies of pH-sensitive diblock copolymers were also done at different pH conditions. The pH-sensitivity was further established by acid-based titration and DLS analysis.

나문재 추출물의 성분 분석 (Component Analysis of Suaeda asparagoides Extracts)

  • 양희정;박수남
    • 대한화장품학회지
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    • 제34권3호
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    • pp.157-165
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    • 2008
  • 이전 연구에서 저자들은 나문재 추출물의 항산화 작용과 추출물 함유 크림의 유화 안정성에 대한 결과를 보고한 바 있다[1,2]. 본 연구에서는 thin layer chromatography(TLC), high performance liquid chromatography (HPLC)와 liquid chromatography/Electrospray Tandem mass spectrometry (LC/ESI/MS/MS), $^1H$-NMR을 이용하여 나문재 추출물에 대한 성분 분석을 수행하였다. 나문재 추출물 중 ethyl acetate분획의 TLC는 5개의 띠($SA1{\sim}SA5$)로 분리되었다. Ethyl acetate 분획의 당 제거반응 후 얻어진 aglycone 분획에 대한 HPLC 크로마토그램은 2개의 피이크(SAA 2 및 SAA 1)를 나타냈고, 각각 그 용리 순서는 quercetin, kaempferol이었으며 조성비는 quercetin 16.88%, kaempferol 83.12%로 kaempferol의 함량이 큰 것으로 나타났다. 또한 LC/ESI-MS/MS를 통해서 SA 2는 kaempferol-3-O-gluco-side로 SA 3는 quercetin-e-O-glucoside, SA 4는 kaempferol-3-O-rutinoside, SA 5는 quercetin-3-O-rutinoside로 확인되었다. LC/ESI-MS/MS의 스펙트럼에서 SAA 1은 탈양성자화된 aglycone 분획에 상용하는 분자이온 $[M-H]^$-(m/z285) 피이크를 나타냈으며, $^1$v 분석을 실시한 결과 [${\delta}$ 6.19 (1H, d, J=1.8Hz, H-6), ${\delta}$ 6.44 (1H, d, J=1.8Hz, H-8), ${\delta}$ 6.92 (2H, d, J=9.0Hz, H-3',5'), ${\delta}$ 8.04 (2H, d, J=9.0Hz, H-2',6')]에서 피이크들이 나타났다. 따라서 SAA 1은 kaempferol임이 확인되었다. SAA 2는 aglycone 분획에 상응하는 분자이온 $[M-H]^-$ (m/z 301)을 생성하였고, $^1H$-NMR 스펙트럼은 [${\delta}$ 6.20 (1H, d, J=2.0Hz, H-6), ${\delta}$ 6.42 (1H, d, J=2.0Hz, H-8), ${\delta}$ 6.90 (1H, d, J=8.6Hz, H-5'), ${\delta}$ 7.55 (1H, dd, J=8.6, 2.2Hz, H-6'), ${\delta}$ 7.69 (1H, d, J=2.2Hz, H-2')]에서 피이크들을 나타냈고, 따라서 SAA 2는 quercetin으로 확인되었다. 결론적으로, 이미 보고된 나문재 추출물의 항산화 작용 그리고 안정성 실험과 더불어 나문재 추출물의 성분분석은 새로운 기능성 화장품원료로서 응용이 가능함을 시사한다.

Liquid Chromatography-Solid Phase Extraction-NMR (LC-SPE-NMR) Analysis of Liquid Crystalline Mixtures

  • Park, Gregory Hyung-Jin;Park, Ae-Na;Rho, Kyung-Rae;Shin, Jong-Ho;Kim, Yeong-Jeon;Jo, Sung-Chan;Oh, Weon-Sik
    • 한국자기공명학회논문지
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    • 제15권1호
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    • pp.14-24
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    • 2011
  • We have performed Liquid Chromatography-Solid Phase Extraction-NMR (LC-SPE-NMR) analysis for liquid crystalline mixture and elucidated the structures of selected components by NMR spectra. Combining the results of one-dimensional 1H experiments as well as homonuclear and heteronuclear two-dimensional experiments, we could analyze the molecular structure of the liquid crystal singles whose structure had not been interpretable by mass spectrometry alone.

Freezing Behaviors of Frozen Foods Determined by $^1H$ NMR and DSC

  • Lee, Su-Yong;Moon, Se-Hun;Shim, Jae-Yong;Kim, Yong-Ro
    • Food Science and Biotechnology
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    • 제17권1호
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    • pp.102-105
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    • 2008
  • The freezing patterns of commercial frozen foods were characterized by using proton nuclear magnetic resonance ($^1H$ NMR) relaxometry and differential scanning calorimetry (DSC). The liquid-like components like unfrozen water were investigated as a function of temperature (10 to $-40^{\circ}C$) and then compared with the unfrozen water content measured by DSC. The formation of ice crystals and the reduction of water in the foods during freezing were readily observed as a loss of the NMR signal intensity. The proton NMR relaxation measurement showed that the decreasing pattern of the liquid-like components varied depending on the samples even though they exhibited the same onset temperature of ice formation at around $0^{\circ}C$. When compared with the unfrozen water content obtained by the DSC, the NMR and DSC results could be closely correlated at the temperature above $-20^{\circ}C$. However, the distinct divergence in the values between 2 methods was observed with further decreasing temperatures probably due to the solid glass formation which was not detected by DSC.

The NMR Chemical Shift for 4d$^n$ Systems(Ⅲ). Calculation of the NMR Shift for a 4d$^1$ System in a Strong Crystal Field Enviroment of Tetragonal Symmetry

  • Ahn, Sang-Woon;Park, Eui-Suh;Oh, Se-Woung
    • Bulletin of the Korean Chemical Society
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    • 제5권2호
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    • pp.55-60
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    • 1984
  • The NMR shift arising from the electron angular momentum and electron spin dipolar-nuclear spin angular momentum interactions has been investigated for a $4d^1$system in a strong crystal field environment of tetragonal symmetry. A general formula for NMR shift is used to compute the NMR shifts along the (100), (010), (001), (110) and (111) axes. We find that from the computed results, the NMR shift along the (100) and (010) axes is consistent with each other in a strong crystal field environment of tetragonal symmetry, but the NMR shift along the (001) axis is about triply greater in magnitude than those along the (100) and (010) axes and is opposite in sign to those along (100) and (010) axes. In this work, we express the expansion coefficients $a_1^{(i)}$ and $b_1^{(i)}$ of $A_i$ and $B_i$ in terms of $g_m^{(i)}$ and $h_m^{(i)}$ and two matrices $c_{lm}$ and $d_{lm}$ of radial dependence. The NMR shift is also separated into the contributions of multipolar terms. We find that $1/R^3$ term contributes dominantly to the NMR shift along the (100), (010), (001) and (110) axes while along the (111) axis $1/R^5$ term dominantly contributes. However, the contribtions of the other terms may not be negligible.

1H-NMR and HPLC analysis on the chiral discrimination of β-blockers using (S)-2-tert-butyl-2-methyl-1,3-benzodioxole-4-carboxylic acid

  • Seo, Sang Hun;Mai, Xuan-Lan;Le, Thi-Anh-Tuyet;Kim, Kyeong Ho
    • 분석과학
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    • 제34권1호
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    • pp.9-16
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    • 2021
  • In the group of commonly prescribed β-blocker drugs, one of the enantiomers is generally relatively more active than the others. This study aims to develop a technique for the chiral analysis of select β-blockers based on proton nuclear magnetic resonance (1H-NMR) spectrometry. (S)-2-Tert-butyl-2-methyl-1,3-benzodioxole-4-carboxylic acid ((S)-TBMB) was synthesized and utilized as a chiral derivatizing agent. Pure β-blocker enantiomers were isolated from racemates by semi-preparative liquid chromatography prior to derivatization. The reaction time and concentration of (S)-TBMB were controlled to improve the derivatization procedure. No racemization was found during the analysis. High-performance liquid chromatography (HPLC) analysis was also performed for comparative purposes. High agreement between the NMR and HPLC methods was achieved in the determination of (R)-metoprolol in a standard solution of the (S) isomer.

New Strategy for the Synthesis of 5-Aryl-1H,1'H-spiro[furo[2,3-d]pyrimidine-6,5'-pyrimidine]2,2',4,4',6'(3H,3'H,5H)-pentaones and Their Sulfur Analogues

  • Jalilzadeh, Mohammad;Pesyan, Nader Noroozi
    • Bulletin of the Korean Chemical Society
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    • 제32권9호
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    • pp.3382-3388
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    • 2011
  • Reaction of barbituric acid (BA), 1,3-dimethyl barbituric acid (DMBA) and 2-thiobarbituric acid (TBA) with cyanogen bromide and aldehydes in the presence of L-(+)-tartaric acid afforded a new route for the synthesis of stable heterocyclic 5-aryl-1H,1'H-spiro[furo[2,3-d]pyrimidine-6,5'-pyrimidine]2,2',4,4',6'(3H,3'H,5H)-pentaones which is a dimeric form of barbiturate (uracil and thiouracil derivative). In the reaction of 1,3-diethyl thiobarbituric acid (DETBA) the Knoevenagel condensation and then Michael adducts were obtained under the same condition. Structure elucidation is carried out by $^1H$ NMR, $^{13}C$ NMR, FT-IR and Mass analyses. Mechanism of the formation is discussed.

NMR Signal Assignments of Human Adenylate Kinase 1 (hAK1) and its R138A Mutant (hAK1R138A)

  • Kim, Gilhoon;Chang, Hwanbong;Won, Hoshik
    • 한국자기공명학회논문지
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    • 제20권2호
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    • pp.56-60
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    • 2016
  • Adenylate kinase (AK) enzyme which acts as the catalyst of reversible high energy phosphorylation reaction between ATP and AMP which associate with energetic metabolism and nucleic acid synthesis and signal transmission. This enzyme has three distinct domains: Core, AMP binding domain (AMPbd) and Lid domain (LID). The primary role of AMPbd and LID is associated with conformational changes due to flexibility of two domains. Three dimensional structure of human AK1 has not been confirmed and various mutation experiments have been done to determine the active sites. In this study, AK1R138A which is changed arginine[138] of LID domain with alanine[138] was made and conducted with NMR experiments, backbone dynamics analysis and mo-lecular docking dynamic simulation to find the cause of structural change and substrate binding site. Synthetic human muscle type adenylate kinase 1 (hAK1) and its mutant (AK1R138A) were re-combinded with E. coli and expressed in M9 cell. Expressed proteins were purified and finally gained at 0.520 mM hAK1 and 0.252 mM AK1R138A. Multinuclear multidimensional NMR experiments including HNCA, HN(CO)CA, were conducted for amino acid sequence analysis and signal assignments of $^1H-^{15}N$ HSQC spectrum. Our chemical shift perturbation data is shown LID domain residues and around alanine[138] and per-turbation value(0.22ppm) of valine[179] is consid-ered as inter-communication effect with LID domain and the structural change between hAK1 and AK1R138A.