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Oxidation with Periodate

The carbonyl-reactive group on these crosslinkers is a hydrazide that can form hydrazone bonds with aldehyde residues. To utilize this functional group with carbohydrate-containing molecules, the sugars first must be mildly oxidized to contain aldehyde groups by treatment with sodium periodate. Oxidation with this compound will cleave adjacent carbon-carbon bonds which possess hydroxyl groups, as are abundant in polysaccharide molecules (Chapter 1, Sections 2 and 4.4). [Pg.298]

The reaction of these aldehydes, derived from periodate oxidation, with carbonyl reagents has also been investigated. Studies 147 148 were made on oxidized laminarin, a (1 —> 3)-linked polysaccharide, in which only the terminal residues had been oxidized. The addition of phenylhydrazine acetate detached the remainder of the terminal residue as glyoxal phenyl-osazone. When the aldehydic compounds derived from the periodate oxidation of raffinose and trehalose818a were reacted with p-nitrophenylhydrazine, the authors were surprised to find that one molecule of oxidized raffinose, containing six aldehydic functions, reacts with only three molecules of the reagent, and that the four aldehydic functions of the oxidized trehalose molecule react with only two. The reactions of periodate-oxidized carbo-... [Pg.26]

A 2,3,6-trideoxyhexose, namely, rhodinose (63), was shown to be the neutral sugar component in the antibiotic rhodomycin. 24 The structure was established by periodate oxidation, with isolation of acetaldehyde and... [Pg.195]

A more eflicient and general synthetic procedure is the Masamune reaction of aldehydes with boron enolates of chiral a-silyloxy ketones. A double asymmetric induction generates two new chiral centres with enantioselectivities > 99%. It is again explained by a chair-like six-centre transition state. The repulsive interactions of the bulky cyclohexyl group with the vinylic hydrogen and the boron ligands dictate the approach of the enolate to the aldehyde (S. Masamune, 1981 A). The fi-hydroxy-x-methyl ketones obtained are pure threo products (threo = threose- or threonine-like Fischer formula also termed syn" = planar zig-zag chain with substituents on one side), and the reaction has successfully been applied to macrolide syntheses (S. Masamune, 1981 B). Optically pure threo (= syn") 8-hydroxy-a-methyl carboxylic acids are obtained by desilylation and periodate oxidation (S. Masamune, 1981 A). Chiral 0-((S)-trans-2,5-dimethyl-l-borolanyl) ketene thioketals giving pure erythro (= anti ) diastereomers have also been developed by S. Masamune (1986). [Pg.62]

Another reducing titrant is ferrous ammonium sulfate, Fe(NH4)2(S04)2 6H2O, in which iron is present in the +2 oxidation state. Solutions of Fe + are normally very susceptible to air oxidation, but when prepared in 0.5 M 1T2S04 the solution may remain stable for as long as a month. Periodic restandardization with K2Cr20y is advisable. The titrant can be used in either a direct titration in which the Fe + is oxidized to Fe +, or an excess of the solution can be added and the quantity of Fe + produced determined by a back titration using a standard solution of Ce + or... [Pg.344]

Pellets of such oxides are usually prepared by mixing 5—10 wt % of the oxide with KBr and pressing a pellet that is several mm thick. Although the preparation of such systems is not difficult, often the pellet must be pressed for long periods of time to allow the KBr to fuse around the oxide particulates. Once prepared, in spectra of these pellets can be acquired in standard KBr pellet holders. [Pg.285]

Heterogeneous Catalytic Polymerization. The preparation of polymers of ethylene oxide with molecular weights greater than 100,000 was first reported in 1933. The polymer was produced by placing ethylene oxide in contact with an alkaline-earth oxide for extended periods (61). In the 1950s, the low yield and low polymerization rates of the eady work were improved upon by the use of alkaline-earth carbonates as the catalysts (62). [Pg.342]

Zirconium [7440-67-7] is classified ia subgroup IVB of the periodic table with its sister metallic elements titanium and hafnium. Zirconium forms a very stable oxide. The principal valence state of zirconium is +4, its only stable valence in aqueous solutions. The naturally occurring isotopes are given in Table 1. Zirconium compounds commonly exhibit coordinations of 6, 7, and 8. The aqueous chemistry of zirconium is characterized by the high degree of hydrolysis, the formation of polymeric species, and the multitude of complex ions that can be formed. [Pg.426]

Cleavage of an alkenoic acid can be carried out with permanganate, a permanganate—periodate mixture, periodate or with nitric acid, dichromate, ozone, or, if the unsaturation is first converted to a dihydroxy compound, lead tetraacetate (71,73). Oxidative ozonolysis is a process for the manufacture of azelaic acid [123-99-9] and pelargonic acid (74). [Pg.86]

A-Chlorosuccinimide 1 N NaOH." With this method, the sulfide is oxidized completely to the sulfone, which is cleaved with hydroxide more readily than the sulfoxide formed by periodate oxidation. It has been reported that oxidation of the sulfide leads to oxidation of adenine and gua-nine." However, see the discussion of the TPTE group below. [Pg.678]

Alicyclic hydroxamic acids undergo several specific oxidative cleavage reactions which may be of diagnostic or preparative value. In the pyrrolidine series compounds of type 66 have been oxidized with sodium hypobromite or with periodates to give y-nitroso acids (113). Ozonolysis gives the corresponding y-nitro acids. The related cyclic aldonitrone.s are also oxidized by periodate to nitroso acids, presumably via the hydroxamic acids.This periodate fission was used in the complex degradation of J -nitrones derived from aconitine. [Pg.227]

Since 1,5-enediones are usually obtained via pyrylium salts, syntheses of the type found in Section B, 2, a have a rather theroetical interest, save for a few special syntheses. There exist several direct syntheses of l,5-enediones, e.g., from j8-chlorovinyl ketones and j8-diketones or j8-keto esters special pathways to 1,5-enediones have also been described, namely, oxidation with lead tetraacetate or with periodic acid of cyclopentene-l,2-diols. ... [Pg.270]

Base-catalyzed nitromethane cyclizadonof the thaldehyde generated by periodate oxidation of 1,3-O-cyclohexyhdene-myo-inositol affords the nitrodiol with l,4/3,3,5-coti iguration This is converted into the ct-marmosidase inhibitor, marmostadn A fEq 3 60 ... [Pg.49]

Periodate Oxidation of C9-Amine (3). C9-Amine hydrochloride (268 mg., 1 mmole) was treated with a solution of sodium periodate (235 mg.,... [Pg.45]


See other pages where Oxidation with Periodate is mentioned: [Pg.413]    [Pg.379]    [Pg.472]    [Pg.18]    [Pg.292]    [Pg.475]    [Pg.128]    [Pg.475]    [Pg.190]    [Pg.359]    [Pg.126]    [Pg.85]    [Pg.162]    [Pg.413]    [Pg.379]    [Pg.472]    [Pg.18]    [Pg.292]    [Pg.475]    [Pg.128]    [Pg.475]    [Pg.190]    [Pg.359]    [Pg.126]    [Pg.85]    [Pg.162]    [Pg.135]    [Pg.328]    [Pg.483]    [Pg.342]    [Pg.36]    [Pg.49]    [Pg.52]    [Pg.419]    [Pg.242]    [Pg.518]    [Pg.503]    [Pg.206]    [Pg.640]    [Pg.1002]    [Pg.1146]    [Pg.1006]    [Pg.911]    [Pg.28]    [Pg.41]   
See also in sourсe #XX -- [ Pg.111 ]

See also in sourсe #XX -- [ Pg.92 , Pg.99 ]




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Enzymes oxidation with periodate

Glucose oxidase oxidation with periodate

Glucose oxidation with periodate

Glycols oxidation with periodate

Lemieux-von Rudloff oxidation with permanganate and periodate

Oxidants periodate

Oxidation with Sodium Periodate and Potassium Permanganate

Oxidation with sodium periodate

Oxidation with sodium periodate-ruthenium trichlorid

Oxidation, enzymic with periodate

Oxidative with sodium periodate

Period 3 oxides

Periodate oxidation

Periodate, acidic, oxidation with

Periodate, acidic, oxidation with Subject

Periodate-Oxidized Antibodies with Amine or Hydrazide Derivatives

Periodic acid, oxidation with

Serine oxidation with periodate

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