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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
Index of chemical compounds with the same name
of caesium are known. Caesium oxide may refer to: Caesium suboxides (Cs7O, Cs4O, and Cs11O3) Caesium monoxide (Cs2O, the most common oxide) Caesium peroxide
Caesium_oxide
Chemical compound
decomposition of caesium superoxide: 2 CsO2 → Cs2O2 + O2 Upon heating until 650 °C, the compound will decompose to caesium monoxide and atomic oxygen:
Caesium_peroxide
Chemical element with atomic number 55 (Cs)
Caesium (IUPAC spelling; also spelled cesium in American English) is a chemical element; it has symbol Cs and atomic number 55. It is a soft, silvery-golden
Caesium
Chemical compound
Caesium ozonide is an oxygen-rich chemical compound of caesium, with the chemical formula CsO3. It consists of caesium cations Cs+ and ozonide anions O−3
Caesium_ozonide
sulfate – CsHSO4 Caesium iodide – CsI Caesium monoxide – Cs2O Caesium nitrate – CsNO3 Caesium ozonide – CsO3 Caesium perchlorate – CsClO4 Caesium peroxide –
List_of_inorganic_compounds
Chemical compound
caesium salt of oxalic acid. It consists of caesium cations Cs+ and oxalate anions C2O2−4. Caesium oxalate can be prepared by passing carbon monoxide
Caesium_oxalate
Chemical compound
carbon monoxide. Cs2C2O4 → Cs2CO3 + CO It can also be synthesized by reacting caesium hydroxide with carbon dioxide. 2 CsOH + CO2 → Cs2CO3 + H2O Caesium carbonate
Caesium_carbonate
Salt or ester of formic acid
CH3CH2(HCOO) sodium formate, Na(HCOO) potassium formate, K(HCOO) caesium formate, Cs(HCOO); see Caesium: Petroleum exploration methyl formate, CH3(HCOO) methyl
Formate
Chemical compound
K2CO2 (potassium carbonite), Rb2CO2 (rubidium carbonite) and Cs2CO2 (caesium carbonite), have been observed at 15 K. The disodium salt has not been
Carbonite_(ion)
Hexarubidium monoxide (Rb6O) Nonarubidium dioxide (Rb9O2) Tricaesium monoxide (Cs3O) is a dark green solid. Tetracaesium monoxide (Cs4O) Heptacaesium monoxide (Cs7O)
List_of_alkali_metal_oxides
Chemical compound
Caesium sesquioxide is a chemical compound with the formula Cs2O3 or more accurately Cs4O6. It is an oxide of caesium containing oxygen in different oxidation
Caesium_sesquioxide
Crystallographic system where the unit cell is in the shape of a cube
rock salt structure, though a few have the caesium chloride structure instead. Many transition metal monoxides also have the rock salt structure (TiO, VO
Cubic_crystal_system
Chemical compound
reduction of carbon monoxide. Potassium acetylenediolate (K2C2O2) was first obtained by Liebig in 1834, from the reaction of carbon monoxide with metallic potassium;
Acetylenediol
Colourless non-flammable greenhouse gas
Nitrous oxide (dinitrogen oxide or dinitrogen monoxide), commonly known as laughing gas or nitrous, among others, is a chemical compound, an oxide of nitrogen
Nitrous_oxide
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
Chemical element with atomic number 37 (Rb)
whitish-grey solid in the alkali metal group, similar to potassium and caesium. Rubidium is the first alkali metal in the group to have a density higher
Rubidium
Chemical compound
slowly with water, forming lithium hydroxide: Li 2O + H 2O → 2LiOH Lithium monoxide anion Lithium peroxide Lithium cobalt oxide Lithium-oxide memristor Pradyot
Lithium_oxide
Chemical compound
it being consumed in the reaction rather than acting as a catalyst. A caesium silver permanganate with the formula Cs3Ag[MnO4]4 has been characterized
Silver_permanganate
Chemical compound
Chlorosyl trifluoride was originally made at Rocketdyne by treating dichlorine monoxide with fluorine. Other substances that could react with fluorine to make
Chlorosyl_trifluoride
Chemical compound
Sodium polonide Other cations Lithium oxide Potassium oxide Rubidium oxide Caesium oxide Related sodium oxides Sodium peroxide Sodium superoxide Sodium ozonide
Sodium_oxide
Chemical compound
cations Hydrogen cyanide Lithium cyanide Sodium cyanide Rubidium cyanide Caesium cyanide Related compounds Acetonitrile Except where otherwise noted, data
Potassium_cyanide
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 compound
Potassium polonide Other cations Lithium oxide Sodium oxide Rubidium oxide Caesium oxide Related potassium oxides Potassium peroxide Potassium superoxide
Potassium_oxide
Source of optical gain in a laser
(Y3Al5O12), yttrium orthovanadate (YVO4), or sapphire (Al2O3); and not often caesium cadmium bromide (CsCdBr3) (solid-state lasers) Glasses, e.g. silicate or
Active_laser_medium
Change in energy from formation of 1 mole of substance
Carbon monoxide Gas CO −137.16 Glucose Solid C6H12O6 −910.56 Ethanol Liquid C2H5OH −174.8 Carbonyl chloride (phosgene) Gas COCl2 −204.9 Caesium Caesium Solid
Standard Gibbs free energy of formation
Standard_Gibbs_free_energy_of_formation
Compounds of neptunium and sulfur
resistivity of 60,000 μΩ⋅cm. It is predicted to undergo a phase transition to a caesium chloride-type structure at 75 GPa, with a 3.7% volume loss from the NaCl-type
Neptunium_sulfides
Chemical element with atomic number 57 (La)
compounds are also known, but they are usually much less stable. Lanthanum monoxide (LaO) produces strong absorption bands in some stellar spectra. Among the
Lanthanum
Material in core during nuclear meltdown
resulting in lower indium releases. Caesium and iodine from the fission products can react to produce volatile caesium iodide, which condenses as an aerosol
Corium_(nuclear_reactor)
Chemical element with atomic number 40 (Zr)
barrier coating, although it is also a common diamond substitute. Zirconium monoxide, ZrO, is also known and S-type stars are recognised by detection of its
Zirconium
Chemical element with atomic number 7 (N)
(N≡N), the second strongest bond in any diatomic molecule after carbon monoxide (CO), dominates nitrogen chemistry. This causes difficulty for both organisms
Nitrogen
Chemical compound that produces coloured flames
of an oxalate, which decomposes to carbon dioxide and carbon monoxide; the carbon monoxide reacts with the magnesium oxide particles to gaseous magnesium
Pyrotechnic_colorant
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
Chemical element with atomic number 46 (Pd)
as 90% of the harmful gases in automobile exhaust (hydrocarbons, carbon monoxide, and nitrogen dioxide) into nontoxic substances (nitrogen, carbon dioxide
Palladium
Harmful effects of certain metals
Rhodium Palladium Silver Cadmium Indium Tin Antimony Tellurium Iodine Xenon Caesium Barium Lanthanum Cerium Praseodymium Neodymium Promethium Samarium Europium
Metal_toxicity
Chemical compound
pyramidal GeCl−3 ion have been characterised, for example With rubidium and caesium chloride compounds, e.g. RbGeCl3 are produced; these have distorted perovskite
Germanium_dichloride
Caustic soda, with formula NaOH
drinking water. Sodium hydroxide has been used for detection of carbon monoxide poisoning, with blood samples of such patients turning to a vermilion color
Sodium_hydroxide
Hazmat labeling system
with water, or will detonate if severely shocked (e.g., ammonium nitrate, caesium, hydrogen peroxide) 4 Readily capable of detonation or explosive decomposition
NFPA_704
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
Chemical compound
(Rb2C2O4) exist at room temperature: one form is monoclinic and isotypic to caesium oxalate (Cs2C2O4), the other is orthorhombic and isotypic to potassium
Rubidium_oxalate
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
1986 nuclear accident in the Soviet Union
of the exclusion zone, causing increased radiation from the release of caesium-137 and strontium-90 from the ground and biomass. The increase in radioactivity
Chernobyl_disaster
Chemical element with atomic number 53 (I)
components (from odd rotational quantum numbers, Jodd) are measurable. Caesium iodide and thallium-doped sodium iodide are used in crystal scintillators
Iodine
05 11 75 rhenium Re 0.08 10 53 iodine I 0.05 10 69 thulium Tm 0.05 7 55 caesium Cs 0.04 7 71 lutetium Lu 0.05 7 90 thorium Th 0.06 6 73 tantalum Ta 0.03
Abundance of the chemical elements
Abundance_of_the_chemical_elements
Chemical element with atomic number 35 (Br)
Br(II) is known to occur in bromine monoxide radical; see Kinetics of the bromine monoxide radical + bromine monoxide radical reaction Greenwood, Norman
Bromine
Brown dwarf in the constellation Ophiuchus
Telescope. The spectrum showed absorption due to water vapor, methane and caesium and the spectrum was similar to Gliese 229B, but with SDSS 1624+00 showing
SDSS_1624+00
Amino acid
(ligands) GlyRTooltip Glycine receptor Agonists: β-Alanine β-ABA (BABA) β-AIBA Caesium D-Alanine D-Serine GABA Glycine Hypotaurine Ivermectin L-Alanine L-Proline
Glycine
Periodic table group
tetrahalides with all the halogens. Carbon also forms many oxides such as carbon monoxide, carbon suboxide, and carbon dioxide. Carbon forms a disulfide an a diselenide
Carbon_group
Change of enthalpy during the formation of a compound from its elements
sulfate Solid CdSO4 −935 Caesium Solid Cs 0 Caesium Gas Cs 76.50 Caesium Liquid Cs 2.09 Caesium(I) ion Gas Cs+ 457.964 Caesium chloride Solid CsCl −443
Standard enthalpy of formation
Standard_enthalpy_of_formation
Ultraviolet imaging spectrometer aboard New Horizons and Rosetta
two inputs to allow this. Alice uses an array of potassium bromide and caesium iodide type of photocathodes. It detects in the extreme and far ultraviolet
Alice_(spacecraft_instrument)
Inhalational anesthesia medication
monoxide through degradation of the anesthetic agent. The CO2 absorbent Baralyme, when dried, is most culpable for the production of carbon monoxide from
Desflurane
Chemical element with atomic number 16 (S)
are observed including the sulfur-rich oxides include sulfur monoxide, disulfur monoxide, disulfur dioxides, and higher oxides containing peroxo groups
Sulfur
caesium perbromate CsBr3 caesium tribromide 14023–00–8 CsCN caesium cyanide 21159–32–0 CsCNO caesium cyanate CsCNO caesium fulminate CsC2H3O2 caesium
Glossary_of_chemical_formulae
Chemical theory about acids and bases
acids are trimethylborane, sulfur dioxide and ferrous Fe2+, cobalt Co2+ caesium Cs+ and lead Pb2+ cations. Borderline bases are: aniline, pyridine, nitrogen
HSAB_theory
Chemical element with atomic number 78 (Pt)
the detailed molecular mechanisms of the catalytic oxidation of carbon monoxide over platinum (catalytic converter). Platinum has six naturally occurring
Platinum
Chemical compound
astatide Other cations Lithium iodide Potassium iodide Rubidium iodide Caesium iodide Francium iodide Except where otherwise noted, data are given for
Sodium_iodide
Chemical element with atomic number 26 (Fe)
turn the carbon into carbon monoxide: 2 C + O2 → 2 CO This reaction raises the temperature to about 2000 °C. The carbon monoxide reduces the iron ore to metallic
Iron
Chemical element with atomic number 45 (Rh)
the chiral drug L-DOPA. When treated with sodium borohydride and carbon monoxide, RhCl(P(C6H5)3)3 converts to the pentacoordinate complex RhH(CO)(P(C6H5)3)3
Rhodium
Chemical element with atomic number 28 (Ni)
Electrocatalytic Interconversions of Carbon Dioxide and Carbon Monoxide by Nickel-Containing Carbon Monoxide Dehydrogenases". In Peter M.H. Kroneck; Martha E. Sosa
Nickel
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 compound
astatide Other cations Sodium fluoride Potassium fluoride Rubidium fluoride Caesium fluoride Related compounds Water Ammonia Except where otherwise noted,
Hydrogen_fluoride
Chemical element with atomic number 42 (Mo)
been reported. The oxidation state 0 and lower are possible with carbon monoxide as ligand, such as in molybdenum hexacarbonyl, Mo(CO)6. Molybdenite—the
Molybdenum
Chemical element with atomic number 6 (C)
state of carbon in inorganic compounds is +4, while +2 is found in carbon monoxide and transition metal carbonyl complexes. The largest sources of inorganic
Carbon
Chemical compound containing the element cobalt
complex of cobalt halides and triethylphosphine ((C2H5)3P) can absorb nitric monoxide in benzene to form the diamagnetic material Co(NO)X2(P(C2H5)3) In the reaction
Cobalt_compounds
Property of ions and molecules
Lithium hydroxide 1008 Sodium hydroxide 1038 Potassium hydroxide 1100 Caesium hydroxide 1125 Anions Trioxophosphate(1−) 1301 Iodide 1315 Pentacarbonylmanganate(1−)
Proton_affinity
Type of chemical substance
Para-diethynylbenzene dianion (C6H4(C2)2)2− (third strongest superbase) Lithium monoxide anion (LiO−) was considered the strongest superbase before diethynylbenzene
Base_(chemistry)
Chemical element with atomic number 13 (Al)
carbon monoxide; see Sanchez, Ramiro; Arrington, Caleb; Arrington Jr., C. A. (December 1, 1989). "Reaction of trimethylaluminum with carbon monoxide in low-temperature
Aluminium
Inorganic compound (KOH)
supercritical water is used to convert it to the syngas containing carbon monoxide, carbon dioxide, hydrogen and methane. Using pressure swing adsorption
Potassium_hydroxide
Chemical element with atomic number 82 (Pb)
oxidized, forming lead monoxide. Carbon (as coke or coal gas) is added to the molten charge along with fluxing agents. The lead monoxide is thereby reduced
Lead
Chemical compound
and carbon monoxide. It is being proposed as a rocket propellant, because it has better performance than hydrazine. Rubidium and caesium also form salts
Tetranitratoaluminate
Chemical element with atomic number 17 (Cl)
across a multiple bond or by oxidation: for example, it will attack carbon monoxide to form carbonyl chlorofluoride, COFCl. It will react analogously with
Chlorine
Chemical element with atomic number 27 (Co)
Co2S3 (spinel structure), and CoS (nickel arsenide structure). The salt caesium hexafluorocobaltate(IV) (Cs2CoF6) is a rare example of cobalt(IV). The
Cobalt
Star in the constellation Lepus
in its atmosphere, namely water vapor, carbon monoxide and ammonia. Atomic absorption lines of caesium, sodium and potassium are also detected. Gliese
Gliese_229
Chemical element with atomic number 92 (U)
(UO 2) and uranium trioxide (UO 3). Other uranium oxides such as uranium monoxide (UO), diuranium pentoxide (U 2O 5), and uranium peroxide (UO 4·2H 2O) also
Uranium
Chemical element with atomic number 25 (Mn)
of ferrocene (Fe(C5H5)2). When conducted under an atmosphere of carbon monoxide, reduction of Mn(II) salts gives dimanganese decacarbonyl Mn2(CO)10, an
Manganese
Chemical compound
NpF4 and fluorine. NpF6 forms complexes with alkali metal fluorides: with caesium fluoride (CsF) it forms CsNpF6 at 25 °C, and with sodium fluoride it reacts
Neptunium(VI)_fluoride
CsBO2 caesium metaborate 92141–86–1 CsBr caesium bromide 7787–69–1 CsBrO3 caesium bromate 13454–75–6 CsCN caesium cyanide 21159–32–0 CsC2H3O2 caesium acetate
List of CAS numbers by chemical compound
List_of_CAS_numbers_by_chemical_compound
Phenomenon of surface adhesion
confirmed the same model for hydrogen adsorption on magnesia-supported caesium-ruthenium bimetallic catalysts. Trens et al. (2009) have similarly described
Adsorption
Gaseous materials produced for use in industry
(1774), chlorine (1774), methane (1776), hydrogen sulfide (1777), carbon monoxide (1800), hydrogen chloride (1810), acetylene (1836), helium (1868) fluorine
Industrial_gas
Chemical element with atomic number 47 (Ag)
960 °C to 1000 °C in an oxidising environment. The lead oxidises to lead monoxide, then known as litharge, which captures the oxygen from the other metals
Silver
Hypothetical charge of an atom if all its bonds to different atoms were fully ionic
Br(II) is known to occur in bromine monoxide radical; see Kinetics of the bromine monoxide radical + bromine monoxide radical reaction Rb(–1) is known in
Oxidation_state
How nuclear fuel behaves during a reactor accident
during the oxidation, while far smaller fractions of ruthenium (0.5%) and caesium (2.6 × 10−3%) were liberated. In a water-cooled power reactor — or in a
Behavior of nuclear fuel during a reactor accident
Behavior_of_nuclear_fuel_during_a_reactor_accident
Cyclic compound (C2H4O)
solution. Reaction of ethylene oxide with sulfur dioxide in the presence of caesium salts leads to the formation of an 11-membered heterocyclic compound which
Ethylene_oxide
Chemical element with atomic number 22 (Ti)
Petterson. To achieve this they chlorinated titanium oxide in a carbon monoxide atmosphere with chlorine gas before reducing it to titanium metal by the
Titanium
respectively; compare French chlore, iode, fluor. The -um suffix is lost, e.g., caesium becomes xêzi (or caesi), pronounced /sezi/; compare the French césium,
Chemical elements in East Asian languages
Chemical_elements_in_East_Asian_languages
Physical property of chemicals
lilac/violet Calcium Ca brick red Rubidium Rb red-violet Strontium Sr red Caesium Cs light blue Barium Ba green/yellow Copper Cu Blue/Green(Often with
Color_of_chemicals
Chemical element with atomic number 29 (Cu)
compounds. Copper(I) forms a variety of weak complexes with alkenes and carbon monoxide, especially in the presence of amine ligands. Copper(III) is most often
Copper
Chemical element with atomic number 32 (Ge)
germanium are known: germanium dioxide (GeO2, germania) and germanium monoxide, (GeO). The dioxide can be obtained by roasting germanium disulfide (GeS2)
Germanium
Chemical compound
Other cations Sodium hydroxide Potassium hydroxide Rubidium hydroxide Caesium hydroxide Related compounds Lithium oxide Except where otherwise noted
Lithium_hydroxide
Chemical element with atomic number 12 (Mg)
metal anode, and at this interface carbon and oxygen react to form carbon monoxide. When silver is used as the liquid metal anode, there is no reductant carbon
Magnesium
System of detailed crystal structure classification
Space group Description B1 NaCl Fm3m Rock salt structure B2 CsCl Pm3m caesium chloride structure B3 ZnS F43m Zincblende structure B4 ZnS P63mc Wurtzite
Strukturbericht_designation
Chemical element with atomic number 62 (Sm)
oxidation state +3. Compounds of samarium(II) are also known, most notably the monoxide SmO, monochalcogenides SmS, SmSe and SmTe, as well as samarium(II) iodide
Samarium
Chemical element with atomic number 1 (H)
340–2,060 °F]), steam (water vapor) reacts with methane to yield carbon monoxide and H2. CH4 + H2O → CO + 3 H2 Producing one tonne of hydrogen through this
Hydrogen
Chemical element with atomic number 8 (O)
Society. "Carbon Monoxide". Archived from the original on July 25, 2008. Retrieved September 22, 2008. Piantadosi CA (2004). "Carbon monoxide poisoning". Undersea
Oxygen
Chemical element with atomic number 91 (Pa)
to pentoxide by heating in oxygen-containing atmosphere to 1100 °C. The monoxide PaO has only been observed as a thin coating on protactinium metal, but
Protactinium
Chemical element with atomic number 9 (F)
gaseous fluorocarbons, sometimes with explosions. Carbon dioxide and carbon monoxide react at or just above room temperature, whereas paraffins and other organic
Fluorine
Variation of solubility of assorted substances
0.04642 Caesium acetate CsC2H3O2 1010 1345.5 Caesium azide CsN3 307 Caesium bromate CsBrO3 2.10 3.66 4.53 5.3 Caesium bromide CsBr 108 Caesium chlorate
Solubility_table
soda Celadonite Celestine Celsius Central nervous system Cerium Cerussite Caesium Chabasite Chalcedony Chalcogen Chalcopyrite Chalcocite Chalk Charles J
Index_of_chemistry_articles
Chemical element with atomic number 30 (Zn)
electrowinning. Pyrometallurgy reduces zinc oxide with carbon or carbon monoxide at 950 °C (1,740 °F) into the metal, which is distilled as zinc vapor to
Zinc
Chemical compounds
structures: for example, ThS has the sodium chloride structure, but ThTe has the caesium chloride structure, since the Th4+ and Te2− ions are similar in size while
Thorium_compounds
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