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PentaNitride, triphosphorus

Triphenyltin, as skin irritant, 24 829 Triphenyltin hydroxide, 24 817 as eye irritant, 24 829 Triphenymethane soluble dyes, 7 373t Triphosphorus pentanitride, 79 57 Triple bottom line, 72 807 Triple-bond stretching, 74 235 Triple helices, 77 609 Triple-helix formation, 77 528 Triple-jet crystal growth methods,... [Pg.973]

Supposedly impure triphosphorus pentanitride, it ignites in air. See related NITRIDES... [Pg.1895]

Triphenylpyrilium perchlorate, 3833 Triphenylsilyl perchlorate, 3744 Triphenyltin hydroperoxide, 3752 Triphosgene, see Trichloromethyl carbonate, 1039b Triphosphorus pentanitride, 4770 Tripotassium hexafluoroferrate(3-), 4353 Tripropylaluminium, 3209 Tripropylantimony, 3215... [Pg.2153]

Amorphous triphosphorus pentanitride [9-19] is a white powder which is insoluble in water and most organic solvents, and it is not attacked by dilute acids or alkalies. [Pg.143]

When heated in nitrogen, P3N5 decomposes according to (4.177) in hydrogen, phosphorus and ammonia are obtained and in air, the final residue is polymeric (P205) . Triphosphorus pentanitride is decomposed on heating with concentrated nitric acid or by fusion with alkalies. If it is heated with certain metallic nitrides, it produces salt structures with continuous networks of P-N bonds (see below). [Pg.144]

If triphosphorus pentanitride is heated with lithium nitride in a nitrogen atmosphere, two different reactions may take place (4.188,4.189) ... [Pg.145]

Triphosphorus pentanitride, P3N5, reacts with NF3 to give the fluorocyclophosphazenes (NPp2)3 and (NPp2)4 in small amounts [2]. [Pg.224]


See other pages where PentaNitride, triphosphorus is mentioned: [Pg.1810]    [Pg.1811]    [Pg.1894]    [Pg.1810]    [Pg.1811]    [Pg.206]    [Pg.1810]    [Pg.2074]    [Pg.574]    [Pg.265]    [Pg.1810]    [Pg.1811]    [Pg.1894]    [Pg.1810]    [Pg.1811]    [Pg.206]    [Pg.1810]    [Pg.2074]    [Pg.574]    [Pg.265]   
See also in sourсe #XX -- [ Pg.3 ]

See also in sourсe #XX -- [ Pg.574 ]




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