Search results for "Carbohydrate synthesis"

showing 3 items of 3 documents

A new method of anomeric protection and activation based on the conversion of glycosyl azides into glycosyl fluorides

1993

Glycosyl azides provide reliable anomeric protection stable to conditions for hydrolytic removal of ester groups, for reductive opening or release of acetalic diol protection, for the introduction of ether-type protection, and for glycosylation processes. The utility of this anomeric protection is further enhanced as glycosyl azides may be converted into glycosyl fluorides, which can be activated for glycosylation reactions. To this end, glycosyl azides have been subjected to 1,3-dipolar cycloaddition with di-tert-butyl acetylenedicarboxylate. On treatment with hydrogen fluoride-pyridine complex the N-glycosyl triazole derivatives directly give glycosyl fluorides.

AzidesMagnetic Resonance Spectroscopyanimal structuresAnomerGlycosylationOptical RotationMolecular Sequence DataCarbohydrate synthesismacromolecular substancesBiochemistryKoenigs–Knorr reactionAnalytical ChemistryFluoridesStructure-Activity Relationshipchemistry.chemical_compoundCarbohydrate ConformationOrganic chemistryGlycosylGlycosidesGlycosyl donorMolecular StructureOrganic ChemistryChemical glycosylationGlycosyl acceptorGeneral Medicinecarbohydrates (lipids)Carbohydrate Sequencechemistrylipids (amino acids peptides and proteins)Carbohydrate Research
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Identifying a marine microalgae with high carbohydrate productivities under stress and potential for efficient flocculation

2018

Microalgal biomass represents a potential third generation feedstock that could be utilised as a source of carbohydrates for fermentative production of a range of platform biochemicals. Identifying microalgal strains with high biomass and carbohydrate productivities while also being amenable to downstream processes is key in improving the feasibility of these processes. Utilising marine microalgae capable of growing in seawater will decrease reliance on freshwater resources and improve the sustainability of production. This study screened several marine microalgae believed to accumulate carbohydrates to find new high performing strains. Four strains had high growth rates and accumulated car…

biologyChemistry020209 energyCarbohydrate synthesisBiomass02 engineering and technology010501 environmental sciencesRaw materialCarbohydratebiology.organism_classificationPhotosynthesis01 natural sciencesChlorellaNutrientProductivity (ecology)0202 electrical engineering electronic engineering information engineeringFood scienceAgronomy and Crop Science0105 earth and related environmental sciencesAlgal Research
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Stereoselective synthesis of oligosaccharides by de novo saccharide welding

2012

carbohydrate synthesisHDA-reaktiode novo saccharide synthesisaldolithetero-Diels –Alderaldolchromiumsynteesihiilihydraatitkromide novo synteesisalen
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