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Fluorine cyanogen

Cyanogen gas, CjN has been found in foe gases of outer space. It can react with fluorine to form carbon tetrafluoride and nitrogen trifluoride. [Pg.70]

Fluorine chlorine bromine ozone cyanogen chloride. [Pg.34]

Upper and lower respiratory Fluorine chlorine bromine ozone cyanogen chloride. ... [Pg.68]

Milligan and Jacox 44 have recently reported an elegant synthesis of CF2 in an argon matrix. Carbon atoms, produced from the photolysis of cyanogen azide, were allowed to react with molecular fluorine, and the presence of CF2 was demonstrated from infrared spectra. Use of radiation effective in photolyzing F2 produced CF3 from the reaction of the CF2 with atomic fluorine. [Pg.12]

Bromine azide, 0256 Chlorine azide, 4030 Cyanogen azide, 0544 Fluorine azide, 4307 Iodine azide, 4621 See metal pnictides... [Pg.182]

Cyanogen chloride Cyclohexane Diethyl ether Dimethyl formaldehyde Dimethyl sulfate Dimethyl sulfide Epichlorohydrin Ethyl acetate Ethyl benzene Ethylene glycol Fluorine... [Pg.151]

Benzotriazole reacts with l-cyano-4-dimethylaminopyridinium bromide to give 1-cyano-benzotriazole (177) (Scheme 29) <88S470>. 1-Cyanobenzotriazole is also prepared in a more convenient way from cyanogen bromide and the sodium salt of benzotriazole in 90% yield under carefully controlled conditions <91RRC573>. Benzotriazole can be chlorinated at the N(l) position by NaOCl <85H(23)2225>. A-Fluorination of benzotriazole with caesium fluoroxysulfate gives 1-fluorobenzotriazole in 25% yield <91T7447>. [Pg.43]

Cyanogen is a highly flammable gas. It forms explosive mixtures with air, LEL 6.6%, UEL 32% by volume. Reactions with oxygen, ozone, fluorine or other strong oxidizing agents can be explosive. Also, it can explode when exposed to spark, flame or heat. [Pg.284]

The trimer of cyanogen chloride, (CNClls reacts with fluorine in the presence of arsenic pentafluoride in chlorofluorocarbon solvent forming the complex [C3N3Cl3F][AsF6]. [Pg.286]

Cyanogen Fluoride or Fluorine Cyanide, FCN, mw 45.02 colorless, very irritant gas forms a wh.pulvurelent mass if cooled strongly. and sublimes at —72° insol in w. Can be prepd by interaction of AgF and cyanogen iodide. [Pg.513]

These ethers are produced bj the substitutioa of hydroxyl in the alcohols by chlorine, bromine, iodine, fluorine, or cyanogen. [Pg.280]

Fluorine derivs (cont d) coppei fluosilicate 6 F131 cyanogen fluoride 6 F131 1,1 -dibromo-2,2-difluoroethane 6 FI 31... [Pg.631]

A gas, the major product of fluorination of cyanogen with silver difluoride was assigned this, mechanistically improbable, structure. Usually decomposing above 150°C, it twice detonated spontaneously at room temperature (initial pressure not stated). [Pg.273]

Bromine azide, 0256 Chlorine azide, 4024 Cyanogen azide, 0541 Fluorine azide, 4301 Iodine azide, 4616 See METAL PNICTTDES... [Pg.2372]

There are many air pollutants, and the composition and level depend on several factors. Air pollutants cause a range of adverse health and environmental effects. These pollutants include ammonia, carbon dioxide, carbon disulfide, carbon monoxide, chlorine, cyanide and cyanide compounds, cyanogen, diborane, fluorine and flourine... [Pg.139]

Moissan attempted to prepare this substance by acting on cyanogen with fluorine. A very violent reaction took place without any deposition of carbon. [Pg.187]


See other pages where Fluorine cyanogen is mentioned: [Pg.70]    [Pg.254]    [Pg.230]    [Pg.147]    [Pg.194]    [Pg.20]    [Pg.516]    [Pg.1]    [Pg.13]    [Pg.318]    [Pg.1575]    [Pg.372]    [Pg.175]    [Pg.516]    [Pg.231]    [Pg.634]    [Pg.399]    [Pg.152]    [Pg.1]    [Pg.13]    [Pg.372]    [Pg.516]    [Pg.355]    [Pg.573]    [Pg.635]    [Pg.6]   
See also in sourсe #XX -- [ Pg.13 ]




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