The Principles of Chemistry, Volume IIMendeleyev, Dmitry Ivanovich
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The Principles of Chemistry, Volume II
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
[6 tri] The capacity of mercury (Chapter XVI., Note 25 bis) to give
unstable compounds with nitrogen gives rise to the supposition that
similar compounds exist with phosphorus also. Such a compound was
obtained by Granger (1892) by heating mercury with iodide of
phosphorus in a closed tube at 275°-300°. After removing the iodide
of mercury formed, there remain fine rhombic crystals having a
metallic lustre, and composition Hg_{3}P_{2}. This compound is
stable, does not alter at the ordinary temperature and only
decomposes at a red heat; when heated in air it burns with a flame.
Nitric and hydrochloric acids do not act upon it, but it is easily
decomposed by aqua regia. A phosphide of copper, Cu_{2}P_{2}, was
obtained by Granger (1893) by heating a mixture of water, finely
divided copper and red phosphorus in a sealed tube to 130°. The
excess of copper was afterwards washed away by a solution of NH_{3}
in the presence of air.
[7] The metallic compounds of phosphorus possess a great chemical
interest, because they show a transition from metallic alloys (for
instance, of Sb, As) to the sulphides, halogen salts, and oxides,
and on the other hand to the nitrides. Although there are already
many fragmentary data on the subject, the interesting province of
the metallic phosphides cannot yet be regarded as in any way
generalised. The varied applications (phosphor-iron,
phosphor-bronze, &c.), which the phosphides have recently acquired
should give a strong incentive to the complete and detailed study
of this subject, which would, in my opinion, help to the
explanation of chemical relations beginning with alloys (solutions)
and ending with salts and the compounds of hydrogen (hydrides),
because the phosphor-metals, as is proved by direct experiment,
stand in the same relation to phosphuretted hydrogen as the
sulphides do towards sulphuretted hydrogen, or as the metallic
chlorides to hydrochloric acid.
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