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Chemical compound
Strontium azide is an inorganic chemical compound with the formula Sr(N3)2. It is composed of the strontium cation (Sr2+) and the azide anions (N−3).
Strontium_azide
Chemical compound
solution, such as barium chloride or strontium chloride to respectively produce barium azide and strontium azide, which are also relatively sensitive
Sodium_azide
Chemical compound
barium azide. Ba(N3)2 + Li2SO4 → 2 LiN3 + BaSO4 Pringle, G. E.; Noakes, D. E. (February 1968). "The crystal structures of lithium, sodium and strontium azides"
Lithium_azide
Americium(III) iodide – AmI3 Americium dioxide – AmO2 Ammonia – NH3 Ammonium azide – [NH4]N3 Ammonium bicarbonate – [NH4]HCO3 Ammonium bisulfate – [NH4]HSO4
List_of_inorganic_compounds
Chemical element with atomic number 7 (N)
names of many nitrogen compounds, such as hydrazine and compounds of the azide ion. Finally, it led to the name "pnictogens" for the group headed by nitrogen
Nitrogen
Chart describing whether ionic compounds dissolve or precipitate
ClO− 4 Oxide O2− Hydroxide OH− Sulfide S2− Sulfate SO2− 4 Nitrate NO− 3 Azide N− 3 Phosphate PO3− 4 Carbonate CO2− 3 Cyanide CN− Thiocyanate SCN− Acetate
Solubility_chart
Variation of solubility of assorted substances
188 138 100 88 Ammonium acetate NH4C2H3O2 102 143 204 311 533 Ammonium azide NH4N3 16 25.3 37.1 Ammonium benzoate NH4C7H5O2 19.6 21.3 83 Ammonium bicarbonate
Solubility_table
Chemical compound
Barium chromate reacts with barium hydroxide in the presence of sodium azide to form barium chromate(V). The reaction releases oxygen and water. 4 BaCrO4
Barium_chromate
Particle, atom or molecule with a net electrical charge
Nitride N3− Phosphide P3− other Carbide C22− Hydride H− Polyatomic anions Azide N3− Peroxide O22− Triiodide I3− Oxoanions (Polyatomic ions) Carbonate CO32−
Ion
persulfate UN 1506 5.1 Strontium chlorate UN 1507 5.1 Strontium nitrate UN 1508 5.1 Strontium perchlorate UN 1509 5.1 Strontium peroxide UN 1510 5.1 Tetranitromethane
List of UN numbers 1501 to 1600
List_of_UN_numbers_1501_to_1600
Reactive material used to create a vacuum in a system
which is folded into a long, narrow trough, filled with a mixture of barium azide and powdered glass, and then folded into the closed ring shape. The getter
Getter
Vehicle safety device
Nakamura, Hidetsugu; Hara, Yasutake (2000). "The Strontium Complex Nitrates of Carbohydrazide as a Non-Azide Gas Generator for Safer Driving-the Thermal Behavior
Airbag
Organic compounds containing a metal bound to a triple-bonded carbon
acetylide complex. The copper-catalyzed Click reaction of terminal alkynes and azides proceeds via copper(I) acetylide intermediates. Acetylides are sometimes
Acetylide
Chemical element with atomic number 53 (I)
known, such as cyanogen iodide (ICN), iodine thiocyanate (ISCN), and iodine azide (IN3). Iodine monofluoride (IF) is unstable at room temperature and disproportionates
Iodine
using a flux of molten sodium. Nitrogen may be introduced by using sodium azide. Alkaline earth elements increase the solubility of nitrogen in molten sodium
Nitridogermanate
Chemical element with atomic number 47 (Ag)
dangerously explosive silver compounds are silver azide, AgN3, formed by reaction of silver nitrate with sodium azide, and silver acetylide, Ag2C2, formed when
Silver
Compound of nitrogen with a formal oxidation state of –3
nitride (Be3N2), magnesium nitride (Mg3N2), calcium nitride (Ca3N2), and strontium nitride (Sr3N2). The nitrides of electropositive metals (including Li
Nitride
AgIO4 silver periodate AgMnO4 silver permanganate 7783–98–4 AgN3 silver azide 13863–88–2 AgNO3 silver nitrate 7761–88–8 AgO silver monoxide 1301–96–8
Glossary_of_chemical_formulae
silver iodate 7783–97–3 AgMnO4 silver permanganate 7783–98–4 AgN3 silver azide 13863–88–2 AgNO3 silver nitrate 7761–88–8 AgO silver(I,III) oxide 1301–96–8
List of CAS numbers by chemical compound
List_of_CAS_numbers_by_chemical_compound
Chemical element with atomic number 17 (Cl)
chlorine thiocyanate (ClSCN, unlike its oxygen counterpart), and chlorine azide (ClN3). Chlorine monofluoride (ClF) is extremely thermally stable, and is
Chlorine
"ChemInform Abstract: Spectroscopic and Structural Studies of Difluorophosphoryl Azide F2P(O)N3, Difluorophosphoryl Isocyanate F2P(O)NCO, and Difluorophosphoric
Difluorophosphate
ISSN 0022-0302. Comar, C. L.; Russell, R. S.; Wasserman, R. H. (1957). "Strontium-Calcium Movement from Soil to Man". Science. 126 (3272): 485–492. Bibcode:1957Sci
Robert_Harold_Wasserman
Chemical element with atomic number 55 (Cs)
(734 °F) thermal decomposition of caesium azide CsN 3, which can be produced from aqueous caesium sulfate and barium azide. In vacuum applications, caesium dichromate
Caesium
UN 1687 6.1 Sodium azide UN 1688 6.1 Sodium cacodylate UN 1689 6.1 Sodium cyanide UN 1690 6.1 Sodium fluoride UN 1691 6.1 Strontium arsenite UN 1692 6
List of UN numbers 1601 to 1700
List_of_UN_numbers_1601_to_1700
Chemical element with atomic number 80 (Hg)
explosive used in detonators, but it has largely been replaced by lead azide. Experiments have failed to unequivocally demonstrate any higher oxidation
Mercury_(element)
Chemical element with atomic number 88 (Ra)
lustrous silvery-white metal, even though its lighter congeners calcium, strontium, and barium have a slight yellow tint. Radium's lustrous surface rapidly
Radium
Chemical element with atomic number 35 (Br)
such as cyanogen bromide (BrCN), bromine thiocyanate (BrSCN), and bromine azide (BrN3). The pale-brown bromine monofluoride (BrF) is unstable at room temperature
Bromine
Chemical element with atomic number 11 (Na)
sodium is used mainly for the production of sodium borohydride, sodium azide, indigo, and triphenylphosphine. A once-common use was the making of tetraethyllead
Sodium
Chemical element with atomic number 16 (S)
hemoglobin and certain cytochromes in a manner analogous to cyanide and azide (see below, under precautions). The two principal sulfur oxides are obtained
Sulfur
Chemical element with atomic number 4 (Be)
is a high-melting-point compound which is readily hydrolyzed. Beryllium azide, BeN6 is known and beryllium phosphide, Be3P2 has a similar structure to
Beryllium
Group of highly reactive chemical elements
rubidium or caesium nitride. However, sodium and potassium form colourless azide salts involving the linear N−3 anion; due to the large size of the alkali
Alkali_metal
Any chemical compound having at least one bromine atom
such as cyanogen bromide (BrCN), bromine thiocyanate (BrSCN), and bromine azide (BrN3). The pale-brown bromine monofluoride (BrF) is unstable at room temperature
Bromine_compounds
Class of chemical compounds
metal hydride with ammonium iodide. The nitrogen source could also be an azide or an amide. Headspith, David A.; Francesconi, M. Grazia (October 2009)
Nitride_iodide
Harmful effects of certain metals
gasoline has declined precipitously since the 1970s. Lead (from lead(II) azide or lead styphnate used in firearms) gradually accumulates at firearms training
Metal_toxicity
Munitions submerged in water, their risks, and management
mixed with varnishes and gradually replaced by other products such as lead azide Pb N6, diazodinitrophenol, or nitromannite (powerful explosive with high
Submerged_munitions
625.062.500 – quaternary ammonium compounds MeSH D01.625.100.750 – sodium azide MeSH D01.625.400.100 – cyanides MeSH D01.625.400.100.150 – cyanamide MeSH D01
List_of_MeSH_codes_(D01)
Coordination complexes of transition metals and metal ions with carbon monoxide ligands
ESI-MS: LnM(CO) + RO− → [LnM−C(=O)OR]− Some metal carbonyls react with azide to give isocyanato complexes with release of nitrogen. By adjusting the
Metal_carbonyl
Soviet chemist and academician
into the molecule. The reaction of β-substituted vinyl ketones with an azide ion made it possible to study the stereochemistry and propose a mechanism
Alexander_Nesmeyanov
Chemical element with atomic number 93 (Np)
states are known: the inorganic ligands involved are the halides, iodate, azide, nitride, nitrate, thiocyanate, sulfate, carbonate, chromate, and phosphate
Neptunium
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