Silicium

Silicon Struktur
7440-21-3
CAS-Nr.
7440-21-3
Bezeichnung:
Silicium
Englisch Name:
Silicon
Synonyma:
silicium;SILICON METAL;Silica powder;silicon,powder;Silicon nanopowder;SILICON METAL POWDER;polycrystalline silicon;Silicon, powder, 99.9%;Silicon Monocrystalline;monocrystalline silicon
CBNumber:
CB4720557
Summenformel:
H4Si
Molgewicht:
32.12
MOL-Datei:
7440-21-3.mol

Silicium Eigenschaften

Schmelzpunkt:
1410 °C(lit.)
Siedepunkt:
2355 °C(lit.)
Dichte
2.33 g/mL at 25 °C(lit.)
storage temp. 
Flammables area
Löslichkeit
insoluble in H2O, acid solutions; soluble in alkaline solutions
Aggregatzustand
powder
Wichte
2.42
Farbe
White
PH
13.5 (H2O, 20°C)
Geruch (Odor)
Odorless
Wasserlöslichkeit
INSOLUBLE
Sensitive 
Air Sensitive
Crystal Structure
Cubic, Diamond Structure - Space Group Fd3m
Merck 
13,8565
Dielectric constant
2.4(Ambient)
Expositionsgrenzwerte
ACGIH: TWA 2.5 mg/m3
NIOSH: IDLH 250 mg/m3; TWA 2.5 mg/m3
Stabilität:
Stable. Fine powder is highly flammable. Incompatible with oxidizing agents, bases, carbonates, alkali metals, lead and aluminium oxides, halogens, carbides, formic acid.
InChIKey
BLRPTPMANUNPDV-UHFFFAOYSA-N
CAS Datenbank
7440-21-3(CAS DataBase Reference)
NIST chemische Informationen
Silicon(7440-21-3)
EPA chemische Informationen
Silicon (7440-21-3)
Sicherheit
  • Risiko- und Sicherheitserklärung
  • Gefahreninformationscode (GHS)
Kennzeichnung gefährlicher T,F
R-Sätze: 11
S-Sätze: 26-36/37-45-7/9-33-16-36
RIDADR  UN 2922 8/PG 2
WGK Germany  2
RTECS-Nr. VW0400000
Selbstentzündungstemperatur 780°C
TSCA  Yes
HS Code  3822 00 00
HazardClass  4.1
PackingGroup  III
Giftige Stoffe Daten 7440-21-3(Hazardous Substances Data)
Bildanzeige (GHS) GHS hazard pictograms
Alarmwort Warnung
Gefahrenhinweise
Code Gefahrenhinweise Gefahrenklasse Abteilung Alarmwort Symbol P-Code
H228 Entzündbarer Feststoff. Entzündbare Feststoffe Kategorie 1 Achtung
Warnung
GHS hazard pictogramssrc="/GHS02.jpg" width="20" height="20" /> P210, P240,P241, P280, P370+P378
Sicherheit
P210 Von Hitze, heißen Oberflächen, Funken, offenen Flammen und anderen Zündquellenarten fernhalten. Nicht rauchen.
P240 Behälter und zu befüllende Anlage erden.
P241 Explosionsgeschützte [elektrische/Lüftungs-/ Beleuchtungs-/...] Geräte verwenden.
P280 Schutzhandschuhe/Schutzkleidung/Augenschutz tragen.
P370+P378 Bei Brand: zum Löschen verwenden.

Silicium Chemische Eigenschaften,Einsatz,Produktion Methoden

ERSCHEINUNGSBILD

STAHLGRAUE KRISTALLEODER SCHWARZES BIS BRAUNES AMORPHES PULVER.

PHYSIKALISCHE GEFAHREN

Staubexplosion der pulverisierten oder granulierten Substanz in Gemischen mit Luft möglich. Die trockene Substanz kann durch Verwirbeln, Druckluft, Fließen usw. elektrostatisch aufgeladen werden.

CHEMISCHE GEFAHREN

Reagiert sehr heftig mit Oxidationsmitteln, Halogenen, Metallcarbonaten und Metallacetyliden. Feuergefahr. Reagiert sehr heftig mitMetallhexafluoriden unter Feuer- und Explosionsgefahr. Reagiert beim Erhitzen mit Wasser unter Bildung brennbarer/explosionsfähiger Gase (z.B. Wasserstoff, ICSC-Nr. 0001).

ARBEITSPLATZGRENZWERTE

TLV nicht festgelegt. MAK nicht festgelegt.

AUFNAHMEWEGE

Aufnahme in den Körper durch Inhalation.

INHALATIONSGEFAHREN

Eine belästigende Partikelkonzentration in der Luft kann beim Dispergieren schnell erreicht werden.

WIRKUNGEN BEI KURZZEITEXPOSITION

WIRKUNGEN BEI KURZZEITEXPOSITION:
Kann mechanische Reizungen verursachen auf die Augen und die Atemwege.

LECKAGE

Verschüttetes Material in Behältern sammeln; falls erforderlich durch Anfeuchten Staubentwicklung verhindern.

R-Sätze Betriebsanweisung:

R11:Leichtentzündlich.

S-Sätze Betriebsanweisung:

S26:Bei Berührung mit den Augen sofort gründlich mit Wasser abspülen und Arzt konsultieren.
S36/37:Bei der Arbeit geeignete Schutzhandschuhe und Schutzkleidung tragen.
S45:Bei Unfall oder Unwohlsein sofort Arzt zuziehen (wenn möglich, dieses Etikett vorzeigen).
S7/9:Behälter dicht geschlossen an einem gut gelüfteten Ort aufbewahren.
S33:Maßnahmen gegen elektrostatische Aufladungen treffen.
S16:Von Zündquellen fernhalten - Nicht rauchen.
S36:DE: Bei der Arbeit geeignete Schutzkleidung tragen.

Chemische Eigenschaften

Silicon is a nonmetallic element which is known as silicon metal. Not occur freely in nature, but is found in silicon dioxide (silica) and in various silicates. It is a steel-gray crystalline solid or a black-brown amorphous material.

Physikalische Eigenschaften

Silicon does not occur free in nature, but is found in most rocks, sand, and clay. Siliconis electropositive, so it acts like a metalloid or semiconductor. In some ways silicon resemblesmetals as well as nonmetals. In some special compounds called polymers, silicon will act inconjunction with oxygen. In these special cases it is acting like a nonmetal.
There are two allotropes of silicon. One is a powdery brown amorphous substance bestknown as sand (silicon dioxide). The other allotrope is crystalline with a metallic grayishluster best known as a semiconductor in the electronics industry. Individual crystals of siliconare grown through a method known as the Czochralski process. The crystallized siliconis enhanced by “doping” the crystals (adding some impurities) with other elements such asboron, gallium, germanium, phosphorus, or arsenic, making them particularly useful in themanufacture of solid-state microchips in electronic devices.
The melting point of silicon is 1,420°C, its boiling point is 3,265°C, and its density is2.33 g/cm3.

Isotopes

There are 21 isotopes of silicon, three of which are stable. The isotope Si-28makes up 92.23% of the element’s natural abundance in the Earth’s crust, Si-29 constitutes4.683% of all silicon found in nature, and the natural abundance of Si-30 ismerely 3.087% of the stable silicon isotopes found in the Earth’s crust.

Origin of Name

Silicon was named after the Latin word silex, which means “flint.”

Occurrence

Silicon, in the form of silicon dioxide (SiO2), is the most abundant compound in theEarth’s crust. As an element, silicon is second to oxygen in its concentration on Earth, yet it is only the seventh most abundant in the entire universe. Even so, silicon is used as the standard(Si = 1) to estimate the abundances of all other elements in the universe. For example, hydrogenequals 40,000 times the amount of silicon in the cosmos. Hydrogen is the most abundantof all elements in the universe, and carbon is just three and half times as abundant as siliconin the entire universe. On Earth silicon accounts for 28% of the crust, oxygen makes up 47%of the crust, and much of the rest of the crust is composed of aluminum.
It is believed that silicon is the product of the cosmic nuclear reaction in which alpha particleswere absorbed at a temperature of 109 Kelvin into the nuclei of carbon-12, oxygen-16,and neon-20. Pure elemental silicon is much too reactive to be found free in nature, but it doesform many compounds on Earth, mainly oxides as crystals (quartz, cristobalite, and tridymite)and amorphous minerals (agate, opal, and chalcedony). Elemental silicon is produced byreducing silica (SiO2) in a high-temperature electric furnace, using coke as the reducing agent.It is then refined. Silicon crystals used in electronic devices are “grown” by removing startercrystals from a batch of melted silicon.

Charakteristisch

The characteristics of silicon in some ways resemble those of the element germanium,which is located just below it in the carbon group.
Flint is the noncrystalline form of silicon and has been known to humans since prehistorictimes. When struck with a sharp blow, flint would flake off sharp-edged chips that were thenused as cutting tools and weapons.
In addition to silica (silicon dioxide SiO2), the crystal form of silicon is found in severalsemiprecious gemstones, including amethyst, opal, agate, and jasper, as well as quartz of varyingcolors. A characteristic of quartz is its piezoelectric effect. This effect occurs when thequartz crystal is compressed, producing a weak electrical charge. Just the opposite occurs whenelectric vibrations are fed to the crystal. These vibrations are then duplicated in the crystal.Quartz crystals are excellent timekeeping devices because of this particular characteristic.

Verwenden

In making silanes and silicones, the Si-C bond being about as strong as a C-C bond. In the manufacture of transistors, silicon diodes and similar semiconductors. For making alloys such as ferrosilicon, silicon bronze, silicon copper. As a reducing agent like aluminum in high tempereture reactions.

Definition

silicon: Symbol Si. A metalloid element belonging to group 14 (formerlyIVB) of the periodic table; a.n.14; r.a.m. 28.086; r.d. 2.33; m.p.1410°C; b.p. 2355°C. Silicon is thesecond most abundant element inthe earth’s crust (25.7% by weight) occurring in various forms of silicon(IV)oxide (e.g. quartz) and in silicateminerals. The element is extractedby reducing the oxide with carbon inan electric furnace and is used extensivelyfor its semiconductor properties.It has a diamond-like crystalstructure; an amorphous form alsoexists. Chemically, silicon is less reactivethan carbon. The element combineswith oxygen at red heat and isalso dissolved by molten alkali. Thereis a large number of organosiliconcompounds (e.g. siloxanes) althoughsilicon does not form the range ofsilicon–hydrogen compounds andderivatives that carbon does (seesilane). The element was identifiedby Antoine Lavoisier in 1787 andfirst isolated in 1823 by J?ns Berzelius.

Reaktionen

Si is a little soluble in water (Solubility: 0.005 g/100 g H2O (298 K)). It reacts strongly with F at room temperature, Cl at 430℃, Br at 500℃, O at 400℃, and N2 at 1000℃ to form compounds of SiF4 , SiCl4 , SiBr4 , SiO2 , SiO, and Si3N4 , respectively.

Allgemeine Beschreibung

A dark brown powder. Insoluble in water and denser than water. Burns readily when exposed to heat or flames, and may be difficult to extinguish. Water may not be effective in extinguishing flames. Used to make computer microchips.

Air & Water Reaktionen

Highly flammable. Insoluble in water. A significant dust explosion hazard.

Reaktivität anzeigen

Silicon is a reducing agent. Ignites in fluorine gas at ordinary temperatures [Mellor 2:11-13 1946-47]. Burns spontaneously in gaseous chlorine. A mixture of silicon, aluminum, and lead oxide explodes when heated [Mellor 7:657 1946-47]. When heated with an alkali carbonate, a vigorous reaction attended by incandescence occurs [Mellor 6:164 1946-47]. Reacts violently with silver fluoride [Mellor 3:389 1946-47]. Reacts with sodium-potassium alloy to form sodium silicide, which is spontaneously flammable in air [Mellor 2 Supp. 2:564 1961].

Hazard

The dust of silicon oxide (silicate) can burn or explode and is very harmful if inhaled.Continued exposure to silica dust causes silicosis, a form of pneumonia.
The hydrides of silicon (silicon plus hydrogen) are extremely volatile and spontaneouslyburst into flames in air at room temperatures. They must be kept in special vacuum chambers.
Over the past several decades, there has been some concern over the potential hazards andsafety of the cosmetic use of silicone body implants—breast implants, in particular. Severalmanufactures have been sued over the failure of the implants, and the federal government (FDA) withdrew its approval for their use. Congressional hearings with manufacturers in2005 produced new information that has reversed the FDA’s ban on their use—but only withcertain manufacturers of implants. The debate continues.

Health Hazard

Oxides from metallic fires are a severe health hazard. Inhalation or contact with substance or decomposition products may cause severe injury or death. Fire may produce irritating, corrosive and/or toxic gases. Runoff from fire control or dilution water may cause pollution.

Brandgefahr

May react violently or explosively on contact with water. Some are transported in flammable liquids. May be ignited by friction, heat, sparks or flames. Some of these materials will burn with intense heat. Dusts or fumes may form explosive mixtures in air. Containers may explode when heated. May re-ignite after fire is extinguished.

Industrielle Verwendung

Silicon is, after oxygen, the second most abundant element in the earth s crust. It occurs in a range of minerals and sand (SiO2, quartz). Silicon can be extracted from silicates or sand by reducing SiO2 with coke at high temperatures at around 3000°C.Silicon is used in a wide variety of applications. In nature, silicon does not exist as the pure metal and most commonly occurs in silica (including sand) and silicates. Silicon dioxide, also known as silica, is a hard substance with a high melting temperature and clearly very different from carbon dioxide. Molten silica can be used to make glass, an extremely useful material, which is resistant to attack by most chemicals except fluorine, hydrofluoric acid and strong alkalis. Silicon atoms can also be found in the class of compounds called silicones. Pure silicon metal is used in semiconductors, the basis of all electronic devices, and is most well known for its application in solar panels and computer chips.

Sicherheitsprofil

A nuisance dust. Moderately toxic by ingestion. An eye irritant. Does not occur freely in nature, but is found as sdicon dioxide (sdtca) and as various shcates. Elemental Si is flammable when exposed to flame or by chemical reaction with oxidlzers. Violent reactions with alkali carbonates, oxidants, (A1 + PbO), Ca, Cs2C2, Cl2, CoF2, F2, IFs, MnF3, Rb2C2, FNO, AgF, NaK alloy. When heated it will react with water or steam to produce H2; can react with oxidizing materials. See also various silica entries, SILICATES, and POWDERED METALS.

mögliche Exposition

Silicon may be used in the manufacture of silanes, silicon tetrachloride, ferrosilicon, silicones. It is used in purified elemental form in transistors and photovoltaic cells.

Versand/Shipping

UN1346 Silicon powder, amorphous requires, Hazard Class: 4.1; Labels: 4.1-Flammable solid.

Inkompatibilitäten

Dust or powder may form explosive mixture with air. A strong reducing agent. Incompatible with oxidizers (chlorates, nitrates, peroxides, permanganates, perchlorates, chlorine, bromine, fluorine, etc.); contact may cause fires or explosions. Keep away from alkaline materials, strong bases, strong acids, oxoacids, epoxides, calcium, carbonates, chlorine, fluorine, oxidizers, cesium carbide; alkaline carbonates.

Silicium Upstream-Materialien And Downstream Produkte

Upstream-Materialien

Downstream Produkte


Silicium Anbieter Lieferant Produzent Hersteller Vertrieb Händler.

Global( 223)Lieferanten
Firmenname Telefon E-Mail Land Produktkatalog Edge Rate
Henan Tianfu Chemical Co.,Ltd.
+86-0371-55170693 +86-19937530512
info@tianfuchem.com China 21691 55
career henan chemical co
+86-0371-86658258
sales@coreychem.com China 29914 58
Hubei Jusheng Technology Co.,Ltd.
18871490254
linda@hubeijusheng.com CHINA 28180 58
Hebei Jimi Trading Co., Ltd.
+86 319 5273535
bestoneforyou@sina.com CHINA 288 58
Hubei xin bonus chemical co. LTD
86-13657291602
linda@hubeijusheng.com CHINA 22968 58
Chongqing Chemdad Co., Ltd
+86-023-61398051 +8613650506873
sales@chemdad.com China 39916 58
SIMAGCHEM CORP
+86-13806087780
sale@simagchem.com China 17367 58
Hefei TNJ Chemical Industry Co.,Ltd.
0551-65418671
sales@tnjchem.com China 34572 58
Shaanxi Dideu Medichem Co. Ltd
+86-029-89586680 +86-18192503167
1026@dideu.com China 9358 58
Zhuoer Chemical Co., Ltd
02120970332; +8613524231522
sales@zhuoerchem.com China 3015 58

7440-21-3(Silicium)Verwandte Suche:


  • PERCHLORATEE
  • Silicon Optical Window, 25.4mm (1.0 in.) dia. x 1mm (0.04 in.) thick, Uncoated, Clear Aperture 85%, Surface Finsh 40/20
  • Silicon standard solution, 1 mg/ml Si in 2% NaOH
  • Silicon plate, 6.35mm (0.25 in.) thick
  • Silicon Optical Window, 25.4mm (1.0 in.) dia. x 2mm (0.08 in.) thick, Uncoated, Clear Aperture 85%, Surface Finsh 40/20
  • Silicon rod, 2.5cm (0.98 in.) dia.
  • Silicon granular, Virgin poly fines
  • Silicon rod, 5.08cm (2.0 in.) dia.
  • Silicon powder, Plasma Synthesized
  • Silicon sputtering target, 50.8mm (2.0 in.) dia. x 6.35mm (0.250 in.) thick
  • Silicon sputtering target, 76.2mm (3.0 in.) dia. x 6.35mm (0.250 in.) thick
  • Silicon rod, 0.828cm (0.326 in.) dia.
  • Silicon sputtering target, 50.8mm (2.0 in.) dia. x 3.18mm (0.125 in.) thick
  • Silicon, -325 mesh
  • Silicon, For analysis APS
  • silicon atom
  • Silicon (3 oxygen levels)
  • Silicon (low oxygen)
  • Silicon chips (99.9999%)
  • silicon coating quality balzers
  • Silicon random pieces (99.5%)
  • Silicon solution 1000 ppm
  • Silicon wafer <100> orientation P-doped
  • Silicon wafer <111> orientation
  • silicon, containing by weight not less than 99.99 % of silicon
  • SiliconchipsNmm
  • SiliconpowderNmesh
  • SiliconrandompiecesNcm
  • Siliconwafer
  • Siliconwaferorientation
  • silicon,momocrystalline
  • PURE SILICON METAL
  • SILICON WAFER, DOPED (N-TYPE), (100) 3 &
  • Silicon, powder, 99.9995% metals basis
  • SILICON COATING QUALITY UMICORE, 1-5 MM
  • SILICON WAFER, DOPED (N-TYPE), (111) 3 &
  • SILICON WAFER, (100), 2 IN. DIAM.
  • 96067 SILICON (LOW OXYGEN)
  • SILICON, LUMP, 98.5%
  • SILICON NANOPOWDER, 98+%
  • SILICON, PIECES, 99.999+%
  • 90960 SILICON (3 OXYGEN LEVELS)
  • SILICON, POWDER, -60 MESH, 99.999%
  • SILICON WAFER, DOPED (P-TYPE), (100), 3&
  • SILICON, POWDER, -325 MESH, 99%
  • SILICON WAFER, (111), DOPED (P-TYPE), 2&
  • SILICON WAFER, (100), 3 IN. DIAM.
  • SILICON 0.02-1.5 MM
  • SILICON, RANDOM PIECES, OPTICAL GRADE
  • SILICON WAFER, (111), 2 IN. DIAM.
  • SILICON POWDER TECHNICAL 97.5%
  • SILICON WAFER, DOPED (P-TYPE), (100), 2&
  • SILICON WAFER, (111), DOPED (P-TYPE), 3&
  • SILICON WAFER, DOPED (N-TYPE), (100), &
  • SILICON WAFER, (111), 3 IN. DIAM.
  • SILICON FINEST POWDER, TECHNICAL
  • Silicon lump, 15cm (5.9in) & down, 99.999+% (metals basis)
  • Silicon rod, polycrystalline, unpolished, 1.6cm (0.6in) dia, 99.9999% (metals basis)
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