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Nitrides antimony nitride

Antimony Nitride. SbN, mw 135.76, N 10.32%, org cryst, mp 550—750° (decomps exply), bp 750° (subl, decomps). Prepd by heating Sb to a dull redness in a current of N2. Decomps explosively when heated or upon addition of cold w Refs 1) Gmelin, Syst Nr 18, Teil B (1927), 391-2 2) Mellor 8 (1928), 124... [Pg.282]

An electrical discharge through a mixt of N2 and Sb vapors results in the formation of antimony nitride, SbN, which when heated decomp with a mild expln (Ref 2). The nitride prepn and props are also discussed in Refs 6,7,8 9. SbN is extremely sensitive to moisture and decomp on being heated to 550° (Refs 6 10) [Also see Refs 1 4 for unsuccessful efforts to isolate Sb(N0J Refs l)T.Curtius A.Darapski, JPrakt Chem 62, 419(1900) JCS 78II, 475(1900)... [Pg.522]

Additives used in finai products Fillers aluminum nitride, barium titanate, aluminum nitride, antimony trioxide, aramide fiber, attapulgite, carbon fiber, carbon nanofiber, carbon nanotubes, clay, glass fiber, graphite, molybdenum sulfide, montmorillonite, PTFE, silica, smectite, titanium oxide whisker Plasticizers diethylene glycol dibenzoate, dimethyl phthalate, triallyl phthalate, diethynyldi-phenyl methane, phenylethynyidiphenyl methane, 4-hydroxy-benzophenone Antistatics antimony-containing tin oxide, carbon black, carbon, nanotubes, indium oxide microspheres, polythiophene Release polyethylen wax, PTFE, silicone oil, zirconium chelate ... [Pg.435]

Boron nitride is one of the most outstanding corrosion-resistant materials. It is inert to gasoline, benzene, alcohol, acetone, chlorinated hydrocarbons and other organic solvents. It is not wetted by molten aluminum, copper, cadmium, iron, antimony, bismuth, silicon, germanium, nor by many molten salts and glasses. It is used extensively as crucible material, particularly for molten metals, glasses and ceramic processing. [Pg.442]

Amminebarium bis(nitrophenylide), 3518 Amminepentahydroxyplatinum, 4571 Ammonium nitridoosmate, 4523 Antimony(III) nitride, 4729... [Pg.231]

For example, during oxidation, enhanced diffusion of phosphorus, boron, and arsenic are observed, as well as retarded diffusion of antimony. However, if direct nitridization of the silicon surface occurs, then the inverse effects are observed, that is, enhanced antimony diffusion and retarded phosphorus diffusion. Also, oxidation-enhanced diffusion is significantly affected by doping. As either p- or n-type doping concentration increases above nh oxidation-enhanced diffusion diminishes. If chlorine is introduced into the oxidizing ambient, oxidation-enhanced diffusion is likewise diminished. [Pg.293]

Diffusion in the Presence of Excess Point Defects. Oxidation-Enhanced Diffusion. Oxidation generally enhances the diffusion of group III and group V elements except for antimony (Figure 13). Oxidation-enhanced diffusion is generally observed by depositing a silicon nitride mask on the silicon surface that will prohibit oxidation in the regions that it covers. [Pg.294]

Amminebarium bis(nitrophenylide), 3512 Amminepentahydroxyplatinum, 4566 Ammonium nitridoosmate, 4518 Antimony (III) nitride, 4724 Barium nitride, 0219 Barium nitridoosmate, 0213 Barium V-perchlorylbenzylamide, 3642 Barium perchlorylamide, 0203... [Pg.2423]


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See also in sourсe #XX -- [ Pg.8 , Pg.99 ]




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Antimony nitride

Antimony nitride

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