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
Free silicon can be obtained in an amorphous or crystalline state.
Amorphous silicon is produced, like aluminium, by decomposing the double
fluoride of sodium and silicon (sodium silicofluoride) by means of
sodium: Na_{2}SiF_{6} + 4Na = 6NaF + Si. By treating the mass thus
obtained with water the sodium fluoride may be extracted and the residue
will consist of brown, powdery silicon. In order to free it from any
silica which might be formed, it is treated with hydrofluoric acid. This
silicon powder is not lustrous; when heated it easily ignites, but does
not completely burn. It fuses when very strongly heated, and has then the
appearance of carbon.[4] Crystalline silicon is obtained in a similar
way, but by substituting an excess of aluminium for the sodium:
3Na_{2}SiF_{6} + 4Al = 6NaF + 4AlF_{3} + 3Si. The part of the aluminium
remaining in the metallic state dissolves the silicon, and the latter
separates from the solution on cooling in a crystalline form. The excess
of aluminium after the fusion is removed by means of hydrochloric and
hydrofluoric acid. The best silicon crystals are obtained from molten
zinc; 15 parts of sodium silicofluoride are mixed with 20 parts of zinc
and 4 parts of sodium, and the mixture is thrown into a strongly heated
crucible, a layer of common salt being used to cover it; when the mass
fuses it is stirred, cooled, treated with hydrochloric acid, and then
washed with nitric acid. Silicon, especially when crystalline, like
graphite and charcoal, does not in any way act on the above-mentioned
acids. It forms black, very brilliant, regular octahedra having a
specific gravity of 2·49; it is a bad conductor of electricity, and does
not burn even in pure oxygen (but it burns in gaseous fluorine). The only
acid which acts on it is a mixture of hydrofluoric and nitric acids; but
caustic alkalis dissolve in it like aluminium, with evolution of
hydrogen, thus showing its acid character. In general silicon strongly
resists the action of reagents, as do also boron and carbon. Crystalline
silicon was obtained in 1855 by Deville, and amorphous silicon in 1826 by
Berzelius.[4 bis]
[4] A similar form of silicon is obtained by fusing SiO_{2} with
magnesium, when an alloy of Si and Mg is also formed (Gattermann).
Warren (1888) by heating magnesium in a stream of SiF_{4} obtained
silicon and its alloy with magnesium. Winkler (1890) found that
Mg_{5}Si_{3} and Mg_{2}Si are formed when SiO_{2} and Mg are heated
together at lower temperatures, whilst at a high temperature Si
only is formed.
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