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Chemical compound
Tellurium tetraiodide (TeI4) is an inorganic chemical compound. It has a tetrameric structure which is different from the tetrameric solid forms of TeCl4
Tellurium_tetraiodide
Index of chemical compounds with the same name
Rhenium tetraiodide, ReI4 Silicon tetraiodide, SiI4 Tantalum tetraiodide, TaI4 Tellurium tetraiodide, TeI4 Thorium tetraiodide, ThI4 Tin tetraiodide, SnI4
Tetraiodide
Chemical compound
Polonium tetraiodide is a binary inorganic compound of polonium and iodine with the chemical formula PoI 4. The compound forms volatile black crystals
Polonium_tetraiodide
Index of chemical compounds with the same name
Tellurium iodide may refer to: Tellurium monoiodide, TeI Tellurium tetraiodide, TeI4 This set index article lists chemical compounds articles associated
Tellurium_iodide
Chemical compound
subiodides of tellurium, α-TeI, β-TeI, and Te2I, and one tellurium tetraiodide. TeI is a gray solid formed by the solvothermal reaction of tellurium metal and
Tellurium_monoiodide
Chemical compound
Tellurium tetrachloride is the inorganic compound with the empirical formula TeCl4. The compound is volatile, subliming at 200 °C at 0.1 mmHg. Molten
Tellurium_tetrachloride
Any chemical compound containing at least one tellurium atom
Tellurium compounds are compounds containing the element tellurium (Te). Tellurium belongs to the chalcogen (group 16) family of elements on the periodic
Tellurium_compounds
Chemical compound
Tellurium tetrabromide (TeBr4) is an inorganic chemical compound. It has a similar tetrameric structure to TeCl4. It can be made by reacting bromine and
Tellurium_tetrabromide
Tellurium tetrachloride – TeCl4 Tellurium tetrafluoride – TeF4 Tellurium tetraiodide – TeI4 Tellurous acid – H2TeO3 Beryllium telluride – BeTe Bismuth
List_of_inorganic_compounds
Chemical element with atomic number 84 (Po)
isotopes, polonium is a chalcogen and chemically similar to selenium and tellurium, though its metallic character resembles that of its horizontal neighbours
Polonium
10026–07–0 TeF4 tellurium tetrafluoride 15192–26–4 TeF6 tellurium hexafluoride 7783–80–4 TeI tellurium monoiodide 12600–42–9 TeI4 tellurium tetraiodide 7790–48–9
List of CAS numbers by chemical compound
List_of_CAS_numbers_by_chemical_compound
Index of chemical compounds with the same name
tetrabromide, PaBr4 Selenium tetrabromide, SeBr4 Silicon tetrabromide, SiBr4 Tellurium tetrabromide, TeBr4 Thorium tetrabromide, ThBr4 Tin tetrabromide, SnBr4
Tetrabromide
Chemical compound
reaction of bromine and polonium at 200 °C to 250 °C. Like polonium tetraiodide, polonium tetrabromide can also be produced by the reaction of polonium
Polonium_tetrabromide
Chemical compounds containing phosphorus bound to a halogen
trihalide vapour and hydrogen gas. The relatively stable diphosphorus tetraiodide is known to have a trans, bent configuration similar to hydrazine and
Phosphorus_halide
Halogen compounds derived from methane
CCl4 Tetrabromomethane Carbon tetrabromide CBr4 Tetraiodomethane Carbon tetraiodide CI4 Tetrafluoromethane Carbon tetrafluoride, Freon 14 PFC-14 (CFC-14
Halomethane
Periodic table group
and forms a dibromide and a diiodide, although the tetrabromide and tetraiodide of lead are unstable. Lead forms four oxides, a sulfide, a selenide,
Carbon_group
Chemical compound
dichloride and excess chlorine, similar to selenium tetrachloride and tellurium tetrachloride. Polonium tetrachloride is either monoclinic or triclinic
Polonium_tetrachloride
Chemical element with atomic number 22 (Ti)
Mukaiyama aldol condensation. In the van Arkel–de Boer process, titanium tetraiodide (TiI4) is generated in the production of high purity titanium metal.
Titanium
Chemical element with atomic number 53 (I)
metal oxide or other halide by iodine, a volatile metal halide, carbon tetraiodide, or an organic iodide. For example, molybdenum(IV) oxide reacts with
Iodine
Chemical element with atomic number 75 (Re)
minority abundance, a situation found only in two other elements (indium and tellurium). Naturally occurring rhenium is only 37.4 % 185Re, and 62.6 % 187Re,
Rhenium
Chemical element with atomic number 82 (Pb)
temperature, lead tetrabromide is less stable still, and the existence of lead tetraiodide is questionable. Some lead compounds exist in formal oxidation states
Lead
14333–20–1 TeBr2 tellurium(II) bromide 7789–54–0 TeBr4 tellurium(IV) bromide 10031–27–3 TeCl2 tellurium(II) chloride 10025–71–5 TeCl4 tellurium(IV) chloride
Glossary_of_chemical_formulae
Chemical compound
tetrachloride Silicon tetrafluoride Silicon tetraiodide Related compounds Platinum(IV) bromide Tellurium tetrabromide Tetrabromomethane Tin(IV) bromide
Silicon_tetrabromide
Chemical compounds
be very reactive and at high temperatures disproportionate. Thorium tetraiodide (ThI4, yellow, m.p. 556 °C) is prepared by direct reaction of the elements
Thorium_compounds
Group of chemical elements
de Boer were the first to prepare metallic hafnium by passing hafnium tetraiodide vapor over a heated tungsten filament in 1924. The long delay between
Group_4_element
Chemical element with atomic number 90 (Th)
(black) and ThI2 (gold-coloured) can also be prepared by reducing the tetraiodide with thorium metal: they do not contain Th(III) and Th(II), but instead
Thorium
Chemical element with atomic number 32 (Ge)
thiogermanates. Four tetrahalides are known. Under normal conditions germanium tetraiodide (GeI4) is a solid, germanium tetrafluoride (GeF4) a gas and the others
Germanium
List of history of chemical elements
Tungsten". Elements.vanderkrogt.net. Retrieved 12 September 2008. "52 Tellurium". Elements.vanderkrogt.net. Retrieved 12 September 2008. "05 Boron". Elements
Timeline of chemical element discoveries
Timeline_of_chemical_element_discoveries
Chemical element with atomic number 42 (Mo)
stable, molybdenum does not form a stable hexachloride, pentabromide, or tetraiodide. Like chromium and some other transition metals, molybdenum forms quadruple
Molybdenum
Chemical element with atomic number 40 (Zr)
involves the formation and subsequent thermal decomposition of zirconium tetraiodide (ZrI4), and was superseded in 1945 by the much cheaper Kroll process
Zirconium
Chemical element with atomic number 72 (Hf)
de Boer were the first to prepare metallic hafnium by passing hafnium tetraiodide vapor over a heated tungsten filament in 1924. This process for differential
Hafnium
Hydrocarbon compound containing one or more C=C bonds
phosphite ester combined (the Corey-Winter olefination) or diphosphorus tetraiodide will deoxygenate glycols to alkenes. Alkenes can be prepared indirectly
Alkene
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