NMR study of methyl 3,4,6-tri-O-acetyl-2-deoxy-2-(alkylureido)-β-D-glucopyranosides (original) (raw)

Solid-state 13C NMR, X-ray diffraction and structural study of methyl 4-O-methyl β-D-glucopyranosides with all eight possible methyl-substitution patterns

Alfred French

Cellulose

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Rotational population dependences of the hydroxymethyl group in alkyl glucopyranosides: Anomers comparison

jesus vazquez

Chirality, 1997

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Complete assignments of the 1H and 13C chemical shifts and JH,H coupling constants in NMR spectra of d-glucopyranose and all d-glucopyranosyl-d-glucopyranosides

Mattias Roslund, Petri Tähtinen

Carbohydrate Research, 2008

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Synthesis and NMR Study of Some Important Glucopyranosyl Derivatives

Rasha Jwad

Journal of Kerbala University

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CD and 1H NMR Study of the Rotational Population Dependence of the Hydroxymethyl Group in .beta. Glucopyranosides on the Aglycon and Its Absolute Configuration

Ezequiel Morales

Journal of Organic Chemistry, 1995

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X-Ray diffraction and high resolution NMR analysis of methyl ?-glucopyranuronate derivatives

Antoni Konitz

Carbohydrate Research, 2000

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Complete assignments of the 1H and 13C chemical shifts and JH, H coupling constants in NMR spectra of d-glucopyranose and all d-glucopyranosyl-d- …

Mattias Roslund, Petri Tähtinen

Carbohydrate research, 2008

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Synthesis of, and NMR and CD studies on, methyl 4-O-[(R)-and (S)-1-carboxyethyl]-[alpha]--rhamnopyranoside and methyl 6-O-[(R)-and (S)-1-carboxyethyl]-[alpha]-- …

R. Stenutz

Carbohydrate research, 1994

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13 C CP/MAS nuclear magnetic resonance of crystalline methylxylopyranosides

Serge Perez

Canadian Journal of Chemistry, 1985

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Stereochemical study of the CD spectral differences between anomers of alkyl glucopyranosides

jesus vazquez

Tetrahedron: Asymmetry, 1998

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The crystal and molecular structure of 1-naphthyl 2',3',4',6'-tetra-O-acetyl-β-D-glucopyranoside

Marvin Makinen

Acta Crystallographica Section B Structural Crystallography and Crystal Chemistry, 1978

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Proton magnetic resonance spectrum of cellulose triacetate. Temperature effects, the rotational conformation of the 6-acetoxymethyl group, and computer modelling of methyl 4,6-di- O -acetyl-β-glucopyranoside

Vanga Rao, Françoise Sauriol

Canadian Journal of Chemistry-revue Canadienne De Chimie, 1985

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15N and1H NMR study of ureido sugars, derivatives of 2-amino-2-deoxy-β-D-glucopyranosides

Iwona Wawer

Magnetic Resonance in Chemistry, 1998

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Stereochemical analysis of d-glucopyranosyl-sulfoxides via a combined NMR, molecular modeling and X-ray crystallographic approach

Peter Buist, Stephanie Cassel

Tetrahedron: Asymmetry, 1999

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CP MAS NMR study of ureido sugars, derivatives of 2-amino-2-deoxy-β-d-glucopyranose and dipeptides

Iwona Wawer

Solid State Nuclear Magnetic Resonance, 1998

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Structural analysis of methyl α-l-rhamnopyranoside in the solid state

Frank Fronczek

Carbohydrate Research, 1994

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Single-crystal and powder X-ray diffraction and solid-state 13C NMR of p-nitrophenyl glycopyranosides, the derivatives of d-galactose, d-glucose, and d-mannose

Katarzyna Paradowska

Carbohydrate Research, 2009

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Preparation of alkyl α- and β-d-glucopyranosides, thermotropic properties and X-ray analysis

Gerhard Platz

Carbohydrate Research, 1998

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Crystal structure and solid-state 13C NMR analysis of N-o-, N-m- and N-p-nitrophenyl-2,3,4,6-tetra-O-acetyl-β-d-glucopyranosylamines, and their N-acetyl derivatives

Iwona Wawer

Carbohydrate Research, 2006

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Role of hydroxyl group on the mesomorphism of alkyl glycosides: synthesis and thermal behavior of alkyl 6-deoxy-β-d-glucopyranosides

Madan Singh

Chemistry and Physics of Lipids, 2010

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Solid State NMR Studies of the Molecular Motions in the Polycrystalline α-l-Fucopyranose and Methyl α-l-Fucopyranoside

yl wang

The Journal of Physical Chemistry B, 2002

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Crystal structure and molecular mechanics analysis of methyl 6-O-(N-heptylcarbamoyl)-α-d-glucopyranoside (Hecameg)

Daniel Plusquellec, Serge Perez, Søren B Engelsen

Carbohydrate Research, 1994

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Proton magnetic resonance spectrum of cellulose triacetate. Temperature effects, the rotational conformation of the 6-acetoxymethyl group, and computer modelling of methyl 4,6-di-O-acetyl-β-glucopyranoside

Françoise Sauriol

Canadian Journal of Chemistry, 1985

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Proton and carbon-13 NMR studies of methyl-(6-O-L-phenylalanyl)-α-D-glucoside and methyl-(6-O-D-phenylalanyl)-α-D-glucoside by 1H and 13C nmr showed that the LD compound is more flexible than DD and that DD probably assumes a folded conformation

Siu-Leung Lee

Tetrahedron Letters, 1982

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Determination of the configuration of substituted 1,4:3,6-dianhydrohexitols by13C NMR spectroscopy

Pál Miklós Sohár

Organic magnetic resonance, 1978

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Stereospecific synthesis of methyl 2-amino-2-deoxy-(6S)-deuterio-α,β-d-glucopyranoside and methyl 2,6-diamino-2,6-dideoxy-(6R)-deuterio-α,β-d-glucopyranoside: Side chain conformations of the 2-amino-2-deoxy and 2,6-diamino-2,6-dideoxyglucopyranosides

Andrea Vasella

Carbohydrate research, 2017

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Structural analysis of methyl α-l-fucopyranoside by X-ray crystallography, NMR spectroscopy, and molecular mechanics calculations

Doriano Lamba

Carbohydrate Research, 1993

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Conformational Preferences of Ethyl 2,3-Dideoxy-3-[(α-D-glucopyranosyl)methyl]-β-L- and -D-arabino-hexopyranosides

Ladislav Kniežo

Collection of Czechoslovak Chemical Communications, 2005

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Synthesis and Structure of Methyl‐α‐D‐Glucopyranoside Pentyloxymethyl Ethers

JAn Szymanowski

Starch - Stärke, 1984

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