Silicon
Atomic Number: 14
Atomic Symbol: Si
Atomic Weight: 28.086
Electron Configuration: 1s2 2s2 2p6 3s2 3p2
History
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(L. silex, silicis, flint) Davy in 1800 thought silica to be a compound and not an element; later in 1811, Gay Lussac and Thenard probably prepared impure amorphous silicon by heating potassium with silicon tetrafluoride.
In 1824 Berzelius, generally credited with the discovery, prepared amorphous silicon by the same general method and purified the product by removing the fluosilicates by repeated washings. Deville in 1854 first prepared crystalline silicon, the second allotropic form of the element.
Sources
-------
Silicon is present in the sun and stars and is a principal component of a class of meteorites known as _aerolites._ It is also a component of tektites, a natural glass of uncertain origin.
Silicon makes up 25.7% of the earth's crust, by weight, and is the second most abundant element, being exceeded only by [oxygen](/research/charts/periodic-table-of-elements/oxygen). Silicon is not found free in nature, but occurs chiefly as the oxide and as silicates. Sand, quartz, rock crystal, amethyst, agate, flint, jasper, and opal are some of the forms in which the oxide appears. Granite, hornblende, asbestos, feldspar, clay, mica, etc. are but a few of the numerous silicate minerals.
Silicon is prepared commercially by heating silica and carbon in an electric furnace, using carbon electrodes. Several other methods can be used for preparing the element. Amorphous silicon can be prepared as a brown powder, which can be easily melted or vaporized. The Czochralski process is commonly used to produce single crystals of silicon used for solid-state or semiconductor devices. Hyperpure silicon can be prepared by the thermal decomposition of ultra-pure trichlorosilane in a hydrogen atmosphere, and by a vacuum float zone process.
Uses
----
Silicon is one of man's most useful elements. In the form of sand and clay it is used to make concrete and brick; it is a useful refractory material for high-temperature work, and in the form of silicates it is used in making enamels, pottery, etc. Silica, as sand, is a principal ingredient of glass, one of the most inexpensive of materials with excellent mechanical, optical, thermal, and electrical properties. Glass can be made in a very great variety of shapes, and is used as containers, window glass, insulators, and thousands of other uses. Silicon tetrachloride can be used as iridize glass.
Hyperpure silicon can be doped with boron, gallium, phosphorus, or arsenic to produce silicon for use in transistors, solar cells, rectifiers, and other solid-state devices which are used extensively in the electronics and space-age industries.
Hydrogenated amorphous silicon has shown promise in producing economical cells for converting solar energy into electricity.
Silicon is important to plant and animal life. Diatoms in both fresh and salt water extract Silica from the water to build their cell walls. Silica is present in the ashes of plants and in the human skeleton. Silicon is an important ingredient in steel; silicon carbide is one of the most important abrasives and has been used in lasers to produce coherent light of 4560 A.
Silcones are important products of silicon. They may be prepared by hydrolyzing a silicon organic chloride, such as dimethyl silicon chloride. Hydrolysis and condensation of various substituted chlorosilanes can be used to produce a very great number of polymeric products, or silicones, ranging from liquids to hard, glasslike solids with many useful properties.
Properties
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Crystalline silicon has a metallic luster and grayish color. Silicon is a relatively inert element, but it is attacked by halogens and dilute alkali. Most acids, except hydrofluoric, do not affect it. Elemental silicon transmits more than 95% of all wavelengths of infrared, from 1.3 to 6.y micro-m.
Handling
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Miners, stonecutters, and others engaged in work where siliceous dust is breathed into large quantities often develop a serious lung disease known as silicosis.
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Periodic Table
View a variety of content on the elements, size charts, and general metal knowledge
Select an element to learn more about its properties.
3
Li
Lithium
6.941
4
Be
Beryllium
9.01218
5
B
Boron
10.81
6
C
Carbon
12.011
7
N
Nitrogen
14.00674
8
O
Oxygen
15.9994
9
F
Fluorine
18.99984
10
Ne
Neon
20.179
11
Na
Sodium
22.98977
12
Mg
Magnesium
24.305
13
Al
Aluminum
26.98154
14
Si
Silicon
28.086
15
P
Phosphorus
30.97376
16
S
Sulfur
32.06
17
Cl
Chlorine
35.453
18
Ar
Argon
39.948
19
K
Potassium
39.098
20
Ca
Calcium
40.08
21
Sc
Scandium
44.9559
22
Ti
Titanium
47.9
23
V
Vanadium
50.9414
24
Cr
Chromium
51.996
25
Mn
Manganese
54.938
26
Fe
Iron
55.847
27
Co
Cobalt
58.9332
28
Ni
Nickel
58.7
29
Cu
Copper
63.546
30
Zn
Zinc
65.38
31
Ga
Gallium
69.72
32
Ge
Germanium
72.59
33
As
Arsenic
74.9216
34
Se
Selenium
78.96
35
Br
Bromine
79.904
36
Kr
Krypton
83.8
37
Rb
Rubidium
85.4678
38
Sr
Strontium
87.62
39
Y
Yttrium
88.9059
40
Zr
Zirconium
91.22
41
Nb
Niobium
92.9064
42
Mo
Molybdenum
95.94
43
Tc
Technetium
97
44
Ru
Ruthenium
101.07
45
Rh
Rhodium
102.9055
46
Pd
Palladium
106.4
47
Ag
Silver
107.868
48
Cd
Cadmium
112.4
49
In
Indium
114.829
50
Sn
Tin
118.69
51
Sb
Antimony
121.75
52
Te
Tellurium
127.6
53
I
Iodine
126.9045
54
Xe
Xenon
131.3
55
Cs
Cesium
132.9054
56
Ba
Barium
137.34
57
La
Lanthanum
38.9055
72
Hf
Hafnium
178.49
73
Ta
Tantalum
180.9479
74
W
Tungsten
183.5
75
Re
Rhenium
186.207
76
Os
Osmium
190.2
77
Ir
Iridium
192.22
78
Pt
Platinum
195.09
79
Au
Gold
196.9665
80
Hg
Mercury
200.59
81
Tl
Thallium
204.37
82
Pb
Lead
207.2
83
Bi
Bismuth
208.9804
84
Po
Polonium
209
85
At
Astatine
210
86
Rn
Radon
222
87
Fr
Francium
223
88
Ra
Radium
226.0254
89
Ac
Actinium
227
104
Rf
Rutherfordium
267
105
Db
Dubnium
268
106
Sg
Seaborgium
269
107
Bh
Bohrium
270
108
Hs
Hassium
269
109
Mt
Meitnerium
278
110
Ds
Darmstadtium
281
111
Rg
Roentgenium
282
112
Cn
Copernicium
285
113
Nh
Nihonium
286
114
Fl
Flerovium
289
115
Mc
Moscovium
289
116
Lv
Livermorium
293
117
Ts
Tennessine
294
118
Og
Oganesson
294
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