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Zinc hydride phosphate

Zinc hydrides, 931 Zinc naphthalocyanine preparation, 993 Zinc pseudohalides, 981 solid state, 985 Zirconium phosphate ion exchange resins, 720... [Pg.6061]

Write the formulas for the following ionic compounds (a) lithium hydride (b) calcium bromate (c)chromium(II) oxide id) thorium(IV) perchlorate (e) nickel phosphate if) zinc sulfate. [Pg.158]

Write the formula for each of the following compounds (a) aluminum hydride, (b) calcium chloride, (c) lithium oxide, (d) silver nitrate, (e) iron(II) sulfite, (f) aluminum chloride, (g) ammonium carbonate, (h) zinc sulfate, (/) iron(in) oxide, (/) sodium phosphate, k) iron(ni) acetate, (/) ammonium chloride, and (m) copper(I) cyanide. [Pg.99]

Comprehensive Biological Catalysis—a Mechanistic Reference Volume has recently been published. The fiiU contents list (approximate number of references in parentheses) is as follows S-adenosylmethionine-dependent methyltransferases (110) prenyl transfer and the enzymes of terpenoid and steroid biosynthesis (330) glycosyl transfer (800) mechanism of folate-requiring enzymes in one-carbon metabohsm (260) hydride and alkyl group shifts in the reactions of aldehydes and ketones (150) phosphoenolpyruvate as an electrophile carboxyvinyl transfer reactions (140) physical organic chemistry of acyl transfer reactions (220) catalytic mechanisms of the aspartic proteinases (90) the serine proteinases (135) cysteine proteinases (350) zinc proteinases (200) esterases and lipases (160) reactions of carbon at the carbon dioxide level of oxidation (390) transfer of the POj group (230) phosphate diesterases and triesterases (160) ribozymes (70) catalysis of tRNA aminoacylation by class I and class II aminoacyl-tRNA synthetases (220) thio-disulfide exchange of divalent sulfirr (150) and sulfotransferases (50). [Pg.72]

Huorinated etiolates are generally difficult to form. Ishihara and coworkers used fluorovinyl phosphates, which can be prepared from a-fluoro ketones and sodium diethyl phosphite. Reaction of these fluorinated enol phosphates with a reagent prepared from lithium aluminum hydride (LiAIH4> and cop-per(II) bromide, zinc(II) chloride, tin(II) chloride or bromine afforded the enolate (Scheme 34).The reaction of the enol phosphate with the reagents mentioned above suggests that the metal cation of the enolate is an aluminum species, though its actual structure is not known at present. [Pg.115]

Behenyl hydroxyethyl imidazoline 2-Butyl octanoic acid Butyloctanol Cetylarachidol 2-Decyl tetradecanoic acid Dodecylhexadecanol 2-Hexyl decanoic acid Monomagnesium phosphate Octoxynol-4 2-Octyl dodecanoic acid Oleth-5 phosphate Polyethylene glycol Polyethylene, ultrahigh m.w. PPG-3-myreth-3 Sodium oleic sulfate Tallowamine acetate Zinc chloride metal processing agent Titanium hydride metal refining... [Pg.5461]


See other pages where Zinc hydride phosphate is mentioned: [Pg.20]    [Pg.207]    [Pg.508]    [Pg.72]    [Pg.72]    [Pg.1325]    [Pg.139]    [Pg.261]    [Pg.207]    [Pg.508]    [Pg.1327]    [Pg.1327]    [Pg.60]    [Pg.8]    [Pg.469]    [Pg.1325]    [Pg.568]    [Pg.860]    [Pg.977]    [Pg.1048]    [Pg.1056]    [Pg.1060]    [Pg.427]    [Pg.12]    [Pg.8]    [Pg.245]    [Pg.1083]    [Pg.712]    [Pg.361]    [Pg.556]   
See also in sourсe #XX -- [ Pg.1081 ]




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Zinc hydride

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