83075-50-7Relevant academic research and scientific papers
Synthesis of l -Pyranosides by Hydroboration of Hex-5-enopyranosides Revisited
?opatkiewicz, Grzegorz,Mlynarski, Jacek
, p. 7545 - 7556 (2016/09/09)
Extensive study of the diastereoselective synthesis of l-pyranosides utilizing hydroboration of substituted exo-glucals (5-enopyranosides) obtained from d-sugars is presented. On the basis of this study we present the empirical rules describing the reacti
Chiroptical properties of an alternatingly functionalized cellotriose bearing two porphyrin groups
Sakakibara, Keita,Nakatsubo, Fumiaki,French, Alfred D.,Rosenau, Thomas
, p. 7672 - 7674 (2012/09/21)
Right-handedness derived from bisporphyrins attached to a cellotriose backbone at O-6 and O′′-6 positions is revealed for the first time. This cellotriose is proposed as a model of alternatingly functionalized cellulosics, which have promising properties for applications in optoelectronics and molecular receptors owing to the chirality and rigid backbone effects. This journal is
SYNTHESIS OF A PRECURSOR OF 3-O-(2-ACETAMIDO-2-DEOXY-3-O-METHYL-α-D-GALACTOPYRANOSYL)-4-O-(4-O-METHYL-β-D-GLUCOPYRANOSYLURONIC ACID)-L-FUCOSE
Kanie, Osamu,Takeda, Tadahiro,Ogihara, Yukio
, p. 53 - 64 (2007/10/02)
The glycosphingolipids isolated from spermatozoa of a fresh-water bivalve, Hyriopsis schlegelii, have a unique structure containing one or two mannosyl residues, novel linkages including an internal fucopyranosyl residue, as well as terminal xylosyl and 4
SYNTHESIS OF METHYL DERIVATIVES OF URONIC ACIDS. I. SYNTHESIS OF METHYL (METHYL Α-D-GALACTOPYRANOSID)URONATE AND ITS 2-, 3-, AND 4-O-METHYL ETHERS
Grishkovets, V. I.,Zemlyakov, A. E.,Chirva, V. Ya.
, p. 255 - 259 (2007/10/02)
Alternative unidirectional methods for synthesizing methyl (methyl α-D-galactopyranosid)uronate and its mono-O-methyl ethers by the oxidation (with CrO3-H2SO4-acetone) of the corresponding methyl O-benzyl-O-methyl-α-D-galactopyranosides having unsubstituted 6-OH groups to the corresponding methyl O-benzyl-O-methyl-α-D-galactouronic acids followed by esterification with CH2N2 and the catalytic hydrogenolysis of the benzyl groups are proposed.
