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Chemical compound
Caesium sulfide is an inorganic salt with a chemical formula Cs2S. It is a strong alkali in aqueous solution. In the air, caesium sulfide emits rotten
Caesium_sulfide
Chemical compound
Caesium chloride or cesium chloride is the inorganic compound with the formula CsCl. This colorless salt is an important source of caesium ions in a variety
Caesium_chloride
Chemical compound
Sodium sulfide is a chemical compound with the formula Na2S. More common is its hydrate Na2S·9H2O. Both the anhydrous and the hydrated salts are colorless
Sodium_sulfide
Chemical compound
Caesium monoxide or caesium oxide is a chemical compound with the chemical formula Cs2O. It is the simplest and most common oxide of the caesium. It forms
Caesium_monoxide
Chemical compound
Caesium selenide is an inorganic compound with the chemical formula Cs2Se. It has an inverse fluorite structure, with space group F m 3 ¯ m {\displaystyle
Caesium_selenide
Chemical compound
Potassium sulfide is an inorganic compound with the formula K2S. The colourless solid is rarely encountered, because it reacts readily with water, a reaction
Potassium_sulfide
Compounds of neptunium and sulfur
Neptunium sulfides are compounds of neptunium and sulfur. In these compounds, neptunium has an oxidation state of +3 or +4, and sulfur exists as sulfide or polysulfide
Neptunium_sulfides
caesium chromate 56320–90–2 Cs2MoO4 caesium molybdate 13597–64–3 Cs2O caesium oxide 20281–00–9 Cs2O2 caesium peroxide 12053–70–2 Cs2S caesium sulfide
List of CAS numbers by chemical compound
List_of_CAS_numbers_by_chemical_compound
Chemical compound
Lithium sulfide is the inorganic compound with the formula Li2S. It crystallizes in the antifluorite motif, described as the salt (Li+)2S2−. It forms
Lithium_sulfide
metaniobate CsOH caesium hydroxide 21351–79–1 CsO2 caesium superoxide 12018–61–0 Cs2O2 caesium peroxide Cs2S caesium sulfide 12214–16–3 CsSCN caesium thiocyanate
Glossary_of_chemical_formulae
sulfide – CdS Cadmium telluride – CdTe Caesium bicarbonate – CsHCO3 Caesium bromide – CsBr Caesium carbonate – Cs2CO3 Caesium chloride – CsCl Caesium
List_of_inorganic_compounds
Chemical compound
other alkali metal sulfides. Rubidium sulfide has a cubic crystal similar to lithium sulfide, sodium sulfide and potassium sulfide, known as the anti-fluorite
Rubidium_sulfide
Compounds of plutonium and sulfur
Plutonium sulfides are compounds of plutonium and sulfur, where sulfur exists as sulfide or polysulfide ions and plutonium exists in the trivalent state
Plutonium_sulfides
Crystallographic system where the unit cell is in the shape of a cube
structure is the "interpenetrating primitive cubic" structure, also called a "caesium chloride" or B2 structure. This structure is often confused for a body-centered
Cubic_crystal_system
Group of highly reactive chemical elements
chemical elements lithium (Li), sodium (Na), potassium (K), rubidium (Rb), caesium (Cs), and francium (Fr). Together with hydrogen they constitute group 1
Alkali_metal
by blue light and emitting yellow Thallium, used in sodium iodide and caesium iodide scintillator crystals for detection of gamma radiation and for gamma
Activator_(phosphor)
Chemical element with atomic number 16 (S)
sometimes found in pure, native form, sulfur on Earth usually occurs as sulfide and sulfate minerals. Being abundant in native form, sulfur was known in
Sulfur
Chemical compound
H2O RbHSe + RbOH → Rb2Se + H2O Rubidium selenide is used together with caesium selenide in photovoltaic cells. Jean D'Ans, Ellen Lax: Taschenbuch für
Rubidium_selenide
Chemical element with atomic number 51 (Sb)
grey metal or metalloid, it occurs in nature mainly in the form of the sulfide mineral stibnite (Sb2S3). Antimony compounds have been known since ancient
Antimony
Chemical compound
Caesium sulfate, cesium sulfate, caesium sulphate or cesium sulphate is the inorganic compound and salt with the formula Cs2SO4. It is a white water-soluble
Caesium_sulfate
Change in energy from formation of 1 mole of substance
C2H5OH −174.8 Carbonyl chloride (phosgene) Gas COCl2 −204.9 Caesium Caesium Solid Cs 0 Caesium chloride Solid CsCl −414.4 Chlorine Chlorine Gas Cl2 0 Chromium
Standard Gibbs free energy of formation
Standard_Gibbs_free_energy_of_formation
Metallic elements that are nearly chemically inert
allowing them to exist as single-metallic anions. For example: Cs + Au → CsAu Caesium auride, a yellow crystalline salt with the Au− ion.[citation needed] Platinum
Noble_metal
Row 6 of the periodic table
contains 32 elements, tied for the most with period 7, beginning with caesium and ending with radon. Lead is currently the last stable element; all subsequent
Period_6_element
Tendency of a chemical compound to ignite in open air
storage. White phosphorus Alkali metals, especially potassium, rubidium, caesium, including the alloy NaK Actinides (all of which are pyrophoric metals
Pyrophoricity
This article about a specific sulfide mineral is a stub. You can help Wikipedia by adding missing information.
Galkhaite
Chemical element with atomic number 47 (Ag)
that contain silver compounds, generally in the form of sulfides such as galena (lead sulfide) or cerussite (lead carbonate). Historically, extraction
Silver
Chemical compounds that cannot be represented by an empirical formula
atoms of different elements with a different charge. Many metal oxides and sulfides have non-stoichiometric examples; for example, stoichiometric iron(II)
Non-stoichiometric_compound
moderately rare sulfide mineral with the chemical formula AgFe2S3. It is one of the natural compounds of the MFe2S3 type, with M being caesium in very rare
Argentopyrite
Chemical element with atomic number 80 (Hg)
as cinnabar (mercuric sulfide). The red pigment vermilion is obtained by grinding natural cinnabar or synthetic mercuric sulfide. Exposure to mercury and
Mercury_(element)
Device that converts x-rays into visible light with greater contrast
efficiency but poor spatial resolution and vice versa. Sodium activated Caesium Iodide is typically used due to its higher conversion efficiency thanks
X-ray_image_intensifier
Chemical element with atomic number 29 (Cu)
BC. Thousands of years later, it was the first metal to be smelted from sulfide ores, c. 5000 BC; the first metal to be cast into a shape in a mold, c
Copper
Class of chemical compounds
aurides, compounds containing the Au− anion. Caesium auride (CsAu), for example, crystallizes in the caesium chloride motif; rubidium, potassium, and tetramethylammonium
Gold_compounds
Chemical compound
complexes such as potassium tris(thiocyanato)mercurate(II) (K[Hg(SCN)3]) and caesium tris(thiocyanato)mercurate(II) (Cs[Hg(SCN)3]). The Hg(SCN)3− ion can also
Mercury(II)_thiocyanate
Chemical element with atomic number 56 (Ba)
(half-life 2.552 minutes) occurs in the decay of the common fission product caesium-137. Alchemists in the early Middle Ages knew about some barium minerals
Barium
Change of enthalpy during the formation of a compound from its elements
−561 Cadmium sulfide Solid CdS −162 Cadmium sulfate Solid CdSO4 −935 Caesium Solid Cs 0 Caesium Gas Cs 76.50 Caesium Liquid Cs 2.09 Caesium(I) ion Gas Cs+
Standard enthalpy of formation
Standard_enthalpy_of_formation
Group of chemical elements
and telluroethers. Some of these, such as dimethyl sulfide, diethyl sulfide, and dipropyl sulfide are commercially available. Selenoethers are in the
Chalcogen
Chemical element with atomic number 83 (Bi)
siblings arsenic and antimony. Elemental bismuth occurs naturally, and its sulfide and oxide forms are important commercial ores. The free element is 86%
Bismuth
Chemical element with atomic number 48 (Cd)
suspected to be arsenic, because of the yellow precipitate with hydrogen sulfide. Additionally Stromeyer discovered that one supplier sold zinc carbonate
Cadmium
Chemical element with atomic number 31 (Ga)
melting point. Gallium is one of the four non-radioactive metals (with caesium, rubidium, and mercury) that are known to be liquid at, or near, normal
Gallium
Chemical element with atomic number 88 (Ra)
the same as those of the heavier alkali metals potassium, rubidium, and caesium. Solid radium compounds are white as radium ions provide no specific coloring
Radium
Chemical element with atomic number 81 (Tl)
not from potassium ores, but as a byproduct from refining of heavy-metal sulfide ores. Approximately 65% of thallium production is used in the electronics
Thallium
Chemical compound
telluride. Potassium telluride is a white powder. Like rubidium telluride and caesium telluride, it can be used as an ultraviolet detector in space. Its crystal
Potassium_telluride
Chemical element with atomic number 79 (Au)
performed as of 2004. Similar effects impart a golden hue to metallic caesium. Common colored gold alloys include the distinctive eighteen-karat rose
Gold
Chemical element with atomic number 78 (Pt)
+ 4 NO2 + 4 H2O As a soft acid, the Pt2+ ion has a great affinity for sulfide and sulfur ligands. Numerous DMSO complexes have been reported and care
Platinum
Chemical compound with formula Na2SO4
detergents and in the Kraft process of paper pulping for making highly alkaline sulfides. Anhydrous sodium sulfate, known as the rare mineral thénardite, used as
Sodium_sulfate
Lithium hydroxide, solid UN 2681 8 Caesium hydroxide solution UN 2682 8 Caesium hydroxide UN 2683 8 Ammonium sulfide solution UN 2684 3 Diethylaminopropylamine
List of UN numbers 2601 to 2700
List_of_UN_numbers_2601_to_2700
Brown dwarf or exoplanet with atmospheric methane
true for the hotter lower atmosphere. It also showed absorption due to caesium (Cs), but absorption features commonly found in M-dwarfs (CaH, FeH, TiO
T_dwarf
Chemical addition of an –SH and –C≡CH molecule
thiol (−SH) and an alkyne (−C≡CH). The reaction product is an alkenyl sulfide (−CH=CH−S−). The reaction was first reported in 1949 with thioacetic acid
Thiol-yne_reaction
Property of ions and molecules
Diethyl ether 838 Dimethyl sulfide 839 Iron pentacarbonyl 845 Ammonia 854 Methylphosphine 854 Hydrazine 856 Diethyl sulfide 858 1,6-Dicarba-closo-hexaborane(6)
Proton_affinity
Production of an image when X-rays strike a fluorescent screen
minimizing the radiation dose to the patient. Modern fluoroscopes use caesium iodide (CsI) screens and produce noise-limited images, ensuring that the
Fluoroscopy
Chemical compound
cations Hydrogen cyanide Lithium cyanide Sodium cyanide Rubidium cyanide Caesium cyanide Related compounds Acetonitrile Except where otherwise noted, data
Potassium_cyanide
Tabular arrangement of the chemical elements
The sixth row of the table likewise starts with two s-block elements: caesium and barium. After this, the first f-block elements (coloured green below)
Periodic_table
Any chemical compound having at least one radon atom in its structure
and significantly higher than the stability of the hydrate of hydrogen sulfide (H 2S). Because of its cost[citation needed] and radioactivity, experimental
Radon_compounds
Chemical element with atomic number 50 (Sn)
unknown.[citation needed] Sulfides of tin exist in both the +2 and +4 oxidation states: tin(II) sulfide and tin(IV) sulfide (mosaic gold). Stannane (SnH
Tin
Chemical element with atomic number 22 (Ti)
is a "hard cation", the sulfides of titanium are unstable and tend to hydrolyze to the oxide with release of hydrogen sulfide. Titanium nitride (TiN)
Titanium
Class of elements
350 cm−1 (28 μm), whereas zinc selenide is opaque by 21.5 μm, and zinc sulfide optics are generally only usable to 650 cm−1 (15 μm). The monohalides,
Thallium_halides
Chemical production of a pharmaceutical drug
allylic bromination with NBS and the amide group is cleaved with ethanol and caesium carbonate accompanied by elimination of bromide to the diene ethyl ester
Oseltamivir_total_synthesis
Chemical element with atomic number 18 (Ar)
onto frozen argon containing a small amount of hydrogen fluoride with caesium iodide. This discovery caused the recognition that argon could form weakly
Argon
Chemical element with atomic number 30 (Zn)
similar size. The most common zinc ore is sphalerite (zinc blende), a zinc sulfide mineral. The largest concentration of economically feasible lodes in descending
Zinc
Compounds that contain the element astatine (At)
as well, such as plating onto a cathode, and coprecipitating with metal sulfides in hydrochloric acid. It forms complexes with EDTA, a metal chelating agent
Astatine_compounds
Chemical element with atomic number 7 (N)
dioxide, to hyponitrous acid with tin(II), and to ammonia with hydrogen sulfide. Salts of hydrazinium N 2H+ 5 react with nitrous acid to produce azides
Nitrogen
Chemical element with atomic number 28 (Ni)
earth's crust exists as oxides, economically more important nickel ores are sulfides, especially pentlandite. Major production sites include Sulawesi, Indonesia
Nickel
mixed anion compounds. Related compounds include the oxyhydrides, hydride sulfides, and hydride selenides. Salt-like hydride tellurides may be formed by heating
Hydride_telluride
Chemical compound
electron to the ion, forming K+. Other gaseous alkali metals, such as caesium, can also be used to donate electrons. H+ 3 ions can be made in a duoplasmatron
Triatomic_hydrogen
Compounds of iron and aluminium
strength drops off substantially over 600 °C. The alloys also have good sulfide and oxidation resistance, good wear resistance, and lower density than
Iron_aluminide
Potassium compound and alternative to salt
iodide Other cations Lithium chloride Sodium chloride Rubidium chloride Caesium chloride Ammonium chloride Except where otherwise noted, data are given
Potassium_chloride
Caustic soda, with formula NaOH
increase the mud viscosity, and to neutralize any acid gas (such as hydrogen sulfide and carbon dioxide) which may be encountered in the geological formation
Sodium_hydroxide
Chemical compound
oxide Rubidium sulfide Rubidium selenide Rubidium polonide Other cations Lithium telluride Sodium telluride Potassium telluride Caesium telluride Except
Rubidium_telluride
Chemical compound
2014-05-25. Zintl, E.; Harder, A.; Dauth B. (1934). "Gitterstruktur der oxyde, sulfide, selenide und telluride des lithiums, natriums und kaliums". Zeitschrift
Sodium_oxide
Chemical element with atomic number 45 (Rh)
green as a hydrate), and RhO 3 (only stable in the gas phase). A rhodium sulfide, Rh 17S 15, occurs naturally as a rare mineral miassite. Synthetic Rh xS
Rhodium
Chemical compound
ISBN 0-12-352651-5. Zintl, E.; Harder, A.; Dauth B. (1934). "Gitterstruktur der oxide, sulfide, selenide und telluride des lithiums, natriums und kaliums". Zeitschrift
Potassium_oxide
Group 15 elements of the periodic table with valency 5
moscovium. Bismuth(III) forms an oxide, an oxychloride, an oxynitrate, and a sulfide. Moscovium(III) is predicted to behave similarly to bismuth(III). Moscovium
Pnictogen
Chemical element with atomic number 75 (Re)
1994) that the first rhenium mineral was found and described, a rhenium sulfide mineral (ReS2) condensing from a fumarole on Kudriavy volcano, Iturup island
Rhenium
Chemical element with atomic number 15 (P)
phosphorus(III) are almost unknown. Meanwhile, phosphorus forms a wide range of sulfides, where the phosphorus can be in P(V), P(III) or other oxidation states
Phosphorus
Form of metal
It may occur alloyed with gold as electrum. It often occurs with silver sulfide and sulfosalt minerals. Various amalgams of silver and mercury or other
Native_metal
Compact notation for chemical compounds
the ionic formula, as in [B12H12]2−, which is found in compounds such as caesium dodecaborate, Cs2[B12H12]. Parentheses ( ) can be nested inside brackets
Chemical_formula
Inorganic compound
oxide Potassium sulfide Potassium telluride Potassium polonide Other cations Lithium selenide Sodium selenide Rubidium selenide Caesium selenide Related
Potassium_selenide
Variation of solubility of assorted substances
60.8 Cadmium sulfide CdS 1.292×10−12 Cadmium tungstate CdWO4 0.04642 Caesium acetate CsC2H3O2 1010 1345.5 Caesium azide CsN3 307 Caesium bromate CsBrO3
Solubility_table
Chemical element with atomic number 34 (Se)
discovered tellurium (named for the Earth). Selenium is found in metal sulfide ores, where it substitutes for sulfur. Commercially, selenium is produced
Selenium
Chemical compounds
aqueous solution containing berkelium(III) hydroxide, hydrochloric acid and caesium chloride. It has a face-centered cubic structure where Bk(III) ions are
Berkelium_compounds
Chemical element with atomic number 43 (Tc)
products in reprocessing plants aim at cationic species such as caesium (e.g., caesium-137) and strontium (e.g., strontium-90). Hence the pertechnetate
Technetium
Chemical element with atomic number 73 (Ta)
microelectronic fabrication processes. The best studied chalcogenide is Tantalum sulfide (TaS2), a layered semiconductor, as seen for other transition metal dichalcogenides
Tantalum
Chemical element with atomic number 38 (Sr)
roasted with coal to form the sulfide. The second stage produces a dark-coloured material containing mostly strontium sulfide. This so-called "black ash"
Strontium
Chemical element with atomic number 74 (W)
increasing the lethality of explosives within a small radius. Tungsten(IV) sulfide is a high temperature lubricant and is a component of catalysts for hydrodesulfurization
Tungsten
Chemical compound
Zintl, Eduard; Harder, A.; Dauth, B. (1934). "Gitterstruktur der Oxyde, Sulfide, Selenide und Telluride des Lithiums, Natriums und Kaliums". Zeitschrift
Lithium_oxide
Chemical compound
anions Rubidium sulfide Rubidium selenide Rubidium telluride Rubidium polonide Other cations Lithium oxide Sodium oxide Potassium oxide Caesium oxide Related
Rubidium_oxide
Chemical compound with formula NaCl
astatide Other cations Lithium chloride Potassium chloride Rubidium chloride Caesium chloride Francium chloride Supplementary data page Sodium chloride (data
Sodium_chloride
Chemical element with atomic number 27 (Co)
black cobalt(II) sulfides, CoS2 (pyrite structure), Co2S3 (spinel structure), and CoS (nickel arsenide structure). The salt caesium hexafluorocobaltate(IV)
Cobalt
Chemical element with atomic number 26 (Fe)
igneous rocks also contain the sulfide minerals pyrrhotite and pentlandite. During weathering, iron tends to leach from sulfide deposits as the sulfate and
Iron
Term used in chemistry
[HgI3]− O in TiO2 rutile structure 4 tetrahedral [CoCl4]2− Zn and S in zinc sulfide, Si in silicon dioxide 4 square planar [AgF4]− CuO 5 trigonal bipyramidal
Coordination_geometry
Chemical element with atomic number 13 (Al)
the corresponding nonmetal hydride: for example, aluminium sulfide yields hydrogen sulfide. However, some salts like aluminium carbonate exist in aqueous
Aluminium
Chemical element with atomic number 82 (Pb)
dilute solutions the precipitation of lead(II) sulfide is instead achieved by bubbling hydrogen sulfide through the solution. Lead monoxide exists in two
Lead
General term in chemistry and physics for the set of elements related to iron
cations which have soluble chlorides; and are not precipitated as sulfides by hydrogen sulfide in acidic conditions; are precipitated as hydroxides at around
Iron_group
Chemical compound
tellurate Other cations Lithium sulfate Sodium sulfate Rubidium sulfate Caesium sulfate Related compounds Potassium hydrogen sulfate Potassium sulfite
Potassium_sulfate
Chemical element with atomic number 41 (Nb)
the lanthanum niobate contains lone NbO3− 4 ions. The layered niobium sulfide (NbS2) is also known. Materials can be coated with a thin film of niobium(V)
Niobium
System of detailed crystal structure classification
β-NiS R3m β-Nickel sulfide/Millerite structure B14 FeAs Pnma Westerveldite structure B15 → B27 B16 GeS Pnma Germanium(II) sulfide/Herzenbergite structure
Strukturbericht_designation
City in Krasnoyarsk Krai, Russia
air pollution by particulates, including radioisotopes strontium-90, and caesium-137; the metals nickel, copper, cobalt, and lead; selenium; and by gases
Norilsk
Radius of an atomic ion in crystals
"Ionic radii for Group 1 and Group 2 halide, hydride, fluoride, oxide, sulfide, selenide and telluride crystals". Dalton Transactions. 39 (33): 7786–7791
Ionic_radius
Chemical compound
Zintl, E.; Harder, A.; Dauth, B. (August 1934). "Gitterstruktur der Oxyde, Sulfide, Selenide und Telluride des Lithiums, Natriums und Kaliums" [Crystal structure
Lithium_telluride
abundance in meteoroids is higher. Tellurium and selenium are concentrated as sulfides in the core and have also been depleted by preaccretional sorting in the
Abundance of elements in Earth's crust
Abundance_of_elements_in_Earth's_crust
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