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Index of chemical compounds with the same name
Einsteinium fluoride may refer to: Einsteinium(III) fluoride (einsteinium trifluoride), EsF3 Einsteinium(IV) fluoride (einsteinium tetrafluoride), EsF4
Einsteinium_fluoride
Chemical element with atomic number 99 (Es)
Einsteinium is a synthetic chemical element; it has symbol Es and atomic number 99 and is a member of the actinide series and the seventh transuranium
Einsteinium
Chemical compound
Einsteinium fluoride is a binary inorganic chemical compound of einsteinium and fluorine with the chemical formula EsF3. Einsteinium fluoride can be precipitated
Einsteinium_trifluoride
Chemical compound
Einsteinium hexafluoride is a binary inorganic chemical compound of einsteinium and fluorine with the chemical formula EsF6. This is a hypothetical compound—its
Einsteinium_hexafluoride
Chemical compounds
Einsteinium halides are known for the oxidation states +2 and +3. The most stable state is +3 for all halides from fluoride to iodide. Einsteinium(III)
Einsteinium_compounds
Chemical compound
Einsteinium tetrafluoride is a binary inorganic chemical compound of einsteinium and fluorine with the chemical formula EsF4. The compound was observed
Einsteinium_tetrafluoride
Chemical element with atomic number 101 (Md)
by bombarding einsteinium with alpha particles, the method still used today. Using commonly-available microgram quantities of einsteinium-253, over a million
Mendelevium
Index of chemical compounds with the same name
organosulfur compound with the formula Et2NSF3 Dysprosium trifluoride, DyF3 Einsteinium trifluoride, EsF3 Europium trifluoride, EuF3 Erbium trifluoride, ErF3
Trifluoride
Chemical element with atomic number 9 (F)
such as atorvastatin and fluoxetine contain C−F bonds. The fluoride ion from dissolved fluoride salts inhibits dental cavities and so finds use in toothpaste
Fluorine
Dy2Ti2O7 Einsteinium(III) bromide – EsBr3 Einsteinium(III) carbonate – Es2(CO3)3 Einsteinium(III) chloride – EsCl3 Einsteinium(III) fluoride – EsF3 Einsteinium(III)
List_of_inorganic_compounds
Chemical compound
Californium(III) fluoride is a binary inorganic compound of californium and fluorine with the formula CfF 3 Californium(III) fluoride is a yellow-green
Californium(III)_fluoride
Any chemical compound having at least one fluorine atom
it forms binary compounds, named fluorides, with all said elements except argon. All of the elements up to einsteinium, element 99, have been checked except
Fluorine_compounds
Chemical compound
Berkelium(III) fluoride is a binary inorganic compound of berkelium and fluorine with the chemical formula BkF 3. The compound can be prepared by treating
Berkelium(III)_fluoride
Chemical element with atomic number 98 (Cf)
been produced in amounts large enough to see with the naked eye (after einsteinium). It was named after the university and the U.S. state of California
Californium
Chemical compound
G.; Nave, S. E. (1 May 1990). "Magnetic susceptibility of californium fluorides". Physical Review B. 41 (13): 9045–9048. doi:10.1103/physrevb.41.9045
Californium_tetrafluoride
Radius of an atomic ion in crystals
1107/S0567739476001551. R. G. Haire, R. D. Baybarz: "Identification and Analysis of Einsteinium Sesquioxide by Electron Diffraction", in: Journal of Inorganic and Nuclear
Ionic_radius
Index of chemical compounds with the same name
colorless gas Dinitrogen tetrafluoride, N2F4 (Tetrafluorohydrazine) Einsteinium tetrafluoride, EsF4 Germanium tetrafluoride, GeF4 Hafnium tetrafluoride
Tetrafluoride
Chemical element with atomic number 118 (Og)
stable oxidation states +2 and +4 have been predicted to exist in the fluorides OgF 2 and OgF 4. The +6 state would be less stable due to the strong binding
Oganesson
Chemical element with atomic number 47 (Ag)
silver(II) fluoride is often used to synthesise hydrofluorocarbons. In stark contrast to this, all four silver(I) halides are known. The fluoride, chloride
Silver
Chemical element with atomic number 95 (Am)
Irradiation of 241Am by 12C or 22Ne ions yields the isotopes 247Es (einsteinium) or 260Db (dubnium), respectively. Furthermore, the element berkelium
Americium
F-block chemical elements
solid fluoride and dioxide. The stability of Bk4+ in aqueous solution is close to that of Ce4+. Only valence 3 was observed for californium, einsteinium and
Actinide
Chemical element with atomic number 17 (Cl)
formation of an unreactive layer of metal fluoride. Its reaction with hydrazine to form hydrogen fluoride, nitrogen, and chlorine gases was used in experimental
Chlorine
Chemical element with atomic number 112 (Cn)
non-existent. Copernicium(II) fluoride, CnF2, should be more unstable than the analogous mercury compound, mercury(II) fluoride (HgF2), and may even decompose
Copernicium
been isolated and characterized. Californium Compounds of berkelium Einsteinium compounds Krebs, Robert (2006). The History and Use of our Earth's Chemical
Californium_compounds
24645–86–1 EsF3 einsteinium(III) fluoride 99644–27–6 EsI2 einsteinium(II) iodide 70292–44–3 EsI3 einsteinium(III) iodide 99644–28–7 Es2O3 einsteinium(III) oxide
List of CAS numbers by chemical compound
List_of_CAS_numbers_by_chemical_compound
Chemical element with atomic number 7 (N)
readily produced by the electrolysis of molten ammonium fluoride dissolved in anhydrous hydrogen fluoride. Like carbon tetrafluoride, it is not at all reactive
Nitrogen
Group of chemical elements
react with metals, they produce a wide range of salts, including calcium fluoride, sodium chloride (common table salt), silver bromide, and potassium iodide
Halogen
Chemical element with atomic number 93 (Np)
neptunium oxides with anhydrous hydrogen fluoride at various temperatures. Neptunium also forms a wide variety of fluoride compounds with various elements. Some
Neptunium
Chemical element with atomic number 97 (Bk)
quantities of californium, milligram quantities of berkelium-249 and einsteinium, and picogram quantities of fermium. In total, just over one gram of
Berkelium
Chemical compound
hexafluoride Names IUPAC name Curium hexafluoride Other names Curium(VI) fluoride Identifiers CAS Number 105857-30-5 3D model (JSmol) Interactive image InChI
Curium_hexafluoride
Harmful effects of certain metals
Protactinium Uranium Neptunium Plutonium Americium Curium Berkelium Californium Einsteinium Fermium Mendelevium Nobelium Lawrencium Rutherfordium Dubnium Seaborgium
Metal_toxicity
Chemical element with atomic number 50 (Sn)
in Li-ion batteries. Tin(II) fluoride is added to some dental care products as stannous fluoride (SnF2). Tin(II) fluoride can be mixed with calcium abrasives
Tin
Chemical element with atomic number 54 (Xe)
presence of NaF yields high-purity XeF 4. The xenon fluorides behave as both fluoride acceptors and fluoride donors, forming salts that contain such cations
Xenon
Chemical element with atomic number 36 (Kr)
each of which resonates and amplifies a single spectral line. Krypton fluoride also makes a useful laser medium. From 1960 to 1983, the official definition
Krypton
Chemical element with atomic number 53 (I)
of the noble gases, nearly all elements on the periodic table up to einsteinium (EsI3 is known) are known to form binary compounds with iodine. Until
Iodine
Chemical element with atomic number 91 (Pa)
about 600 °C, and protactinium(IV) fluoride is obtained from the oxide and a mixture of hydrogen and hydrogen fluoride at 600 °C; a large excess of hydrogen
Protactinium
Chemical element with atomic number 65 (Tb)
the advent of ion exchange techniques. Terbium is used to dope calcium fluoride, calcium tungstate and strontium molybdate in solid-state devices, and
Terbium
Group 15 elements of the periodic table with valency 5
antimony(V) oxide, and their fluorides, phosphorus(V) fluoride, arsenic(V) fluoride, antimony(V) fluoride. They also form related fluoride-anions, hexafluorophosphate
Pnictogen
Chemical element with atomic number 67 (Ho)
dysprosium to its left and erbium to its right, and above the actinide einsteinium. With a boiling point of 3,000 K (2,727 °C; 4,940 °F), holmium is the
Holmium
Chemical compound
Americium hexafluoride Names Other names Americium(VI) fluoride Identifiers CAS Number 90116-77-1 Y 3D model (JSmol) Interactive image InChI InChI=1S/Am
Americium_hexafluoride
Chemical element with atomic number 57 (La)
Lanthanum fluoride is used in phosphor lamp coatings. Mixed with europium fluoride, it is also applied in the crystal membrane of fluoride ion-selective
Lanthanum
Chemical element with atomic number 21 (Sc)
Thoennessen, M. (2011). "Discovery of scandium, titanium, mercury, and einsteinium isotopes". Atomic Data and Nuclear Data Tables. 97 (2): 134–151. arXiv:1003
Scandium
Chemical element with atomic number 66 (Dy)
ions can then react with either fluorine or chlorine to form dysprosium fluoride, DyF3, or dysprosium chloride, DyCl3. These compounds can be reduced using
Dysprosium
Chemical element with atomic number 14 (Si)
complex silicate units with cooling, and the introduction of hydroxide and fluoride anions in addition to oxides. Many metals may substitute for silicon. After
Silicon
Chemical element with atomic number 59 (Pr)
a mixture of sodium fluoride and praseodymium(III) fluoride with fluorine gas, producing Na2PrF6, following which sodium fluoride is removed from the
Praseodymium
Chemical element with atomic number 96 (Cm)
thermonuclear weapon, Ivy Mike (1 November 1952, Enewetak Atoll), besides einsteinium, fermium, plutonium and americium also revealed isotopes of berkelium
Curium
Group of chemical elements
that include beryllium have a covalent bond. Even the compound beryllium fluoride, which is the most ionic beryllium compound, has a low melting point and
Alkaline_earth_metal
Chemical element with atomic number 55 (Cs)
Caesium fluoride (CsF) is a hygroscopic white solid that is widely used in organofluorine chemistry as a source of fluoride anions. Caesium fluoride has the
Caesium
Chemical element with atomic number 19 (K)
some use as a base. All of the halides salts are well known: potassium fluoride (KF), potassium chloride (KCl), and potassium bromide (KF), potassium iodide
Potassium
Chemical element with atomic number 39 (Y)
yttria, a six-coordinate white solid. Yttrium forms a water-insoluble fluoride, hydroxide, and oxalate, but its bromide, chloride, iodide, nitrate and
Yttrium
Chemical element with atomic number 3 (Li)
Lithium fluoride, when highly enriched in the lithium-7 isotope, forms the basic constituent of the fluoride salt mixture LiF-BeF2 used in liquid fluoride nuclear
Lithium
Related chemical elements of the periodic table
of the Ingrowth of Berkelium-249 and Californium-249 Into Halides of Einsteinium-253". Inorganic Chemistry. 20 (11): 3979–3983. doi:10.1021/ic50225a076
Boron_group
150 – californium MeSH D01.268.033.175 – curium MeSH D01.268.033.250 – einsteinium MeSH D01.268.033.275 – fermium MeSH D01.268.033.500 – lawrencium MeSH D01
List_of_MeSH_codes_(D01)
Chemical element with atomic number 29 (Cu)
chloride, bromide, and iodide are known, but copper(I) fluoride remains elusive. Cupric fluoride, chloride, and bromide are also well characterized. Attempts
Copper
Chemical element with atomic number 35 (Br)
solutions by fluorine gas. Excess bromate and fluoride are precipitated as silver bromate and calcium fluoride, and the perbromic acid solution may be purified
Bromine
Chemical element with atomic number 13 (Al)
complex fluorides such as cryolite, Na3AlF6. AlF3 melts at 1,290 °C (2,354 °F) and is made by reaction of aluminium oxide with hydrogen fluoride gas at
Aluminium
Chemical element with atomic number 68 (Er)
infrared-absorbing glass. Erbium(III) fluoride is a pinkish powder that can be produced by reacting erbium(III) nitrate and ammonium fluoride. It can be used to make
Erbium
Chemical element with atomic number 86 (Rn)
bromine pentafluoride, and either sodium fluoride or nickel fluoride was claimed to produce a higher fluoride as well which hydrolysed to form RnO 3. While
Radon
Chemical element with atomic number 4 (Be)
then converted into beryllium fluoride or beryllium chloride. To form the fluoride, aqueous ammonium hydrogen fluoride is added to beryllium hydroxide
Beryllium
Chemical element with atomic number 15 (P)
colourless gas and the molecules have a trigonal bipyramidal geometry. With fluoride, it forms PF−6, an anion that is isoelectronic with SF6. PCl5 is a colourless
Phosphorus
Tabular arrangement of the chemical elements
neptunium (element 93), and plutonium (element 94). No element heavier than einsteinium (element 99) has ever been observed in macroscopic quantities in its
Periodic_table
Theoretical chemical element with atomic number 119 (Uue)
because it would require a target of the next actinide einsteinium. Tens of milligrams of einsteinium would be needed for a reasonable chance of success,
Ununennium
Chemical element with atomic number 71 (Lu)
and acetate form hydrates upon crystallization. The oxide, hydroxide, fluoride, carbonate, phosphate and oxalate are insoluble in water. Lutetium metal
Lutetium
Chemical element with atomic number 63 (Eu)
3 X2 → 2 EuX3 (X = F, Cl, Br, I) This route gives white europium(III) fluoride (EuF3), yellow europium(III) chloride (EuCl3), gray europium(III) bromide
Europium
Theoretical chemical element with atomic number 121 (Ubu)
einsteinium target. This poses severe challenges due to the significant heating and damage of the target due to the high radioactivity of einsteinium-254
Unbiunium
Chemical element with atomic number 41 (Nb)
water and either precipitated by the addition of potassium fluoride to produce a potassium fluoride complex, or precipitated with ammonia as the pentoxide:
Niobium
Chemical element with atomic number 72 (Hf)
separate. The methods first used—fractional crystallization of ammonium fluoride salts or the fractional distillation of the chloride—did not prove suitable
Hafnium
Chemical element with atomic number 89 (Ac)
actinium ions. In the latter method, actinium metal is treated with hydrogen fluoride vapors at 700 °C (1,292 °F) in an all-platinum setup. Treating actinium
Actinium
Chemical element with atomic number 12 (Mg)
Dietary Reference Intakes for Calcium, Phosphorus, Magnesium, Vitamin D, and Fluoride. National Academy Press. 1997. pp. 190–249. MD, Robert H. Shmerling (3
Magnesium
Chemical element with atomic number 79 (Au)
Gold is strongly attacked by fluorine at dull-red heat to form gold(III) fluoride AuF3. Powdered gold reacts with chlorine at 180 °C to form gold(III) chloride
Gold
Chemical element with atomic number 27 (Co)
fluorine to fluoride is so high, +2.87 V, cobalt(III) fluoride is one of the few simple stable cobalt(III) compounds. Cobalt(III) fluoride, which is used
Cobalt
Chemical element with atomic number 74 (W)
react directly with fluorine (F2) at room temperature to form tungsten(VI) fluoride (WF6), a colorless gas. At around 250 °C it will react with chlorine or
Tungsten
Chemical element with atomic number 92 (U)
associated with the generation of highly toxic hydrofluoric acid and uranyl fluoride rather than with uranium itself. Finely divided uranium metal presents
Uranium
Chemical element with atomic number 85 (At)
initially formed fluoride with the walls of the glass container to form a non-volatile product. Thus, although the synthesis of an astatine fluoride is thought
Astatine
List of history of chemical elements
"99 Einsteinium". Elements.vanderkrogt.net. Retrieved 12 September 2008. Haire, R. G.; Baybarz, R. D. (1979). "Studies of einsteinium metal". Journal
Timeline of chemical element discoveries
Timeline_of_chemical_element_discoveries
Chemical element with atomic number 5 (B)
I). The trifluoride is produced by treating borate salts with hydrogen fluoride, while the trichloride is produced by carbothermic reduction of boron oxides
Boron
Group of elements in the periodic table
water and either precipitated by the addition of potassium fluoride to produce a potassium fluoride complex, or precipitated with ammonia as the pentoxide:
Group_5_element
Group of chemical elements
as oxides; the oxides are converted to fluorides during reactions with hydrofluoric acid. The resulting fluorides are reduced with alkaline earth metals
Group_3_element
Chemical element with atomic number 73 (Ta)
Marignac in 1866. This method has been supplanted by solvent extraction from fluoride-containing solutions of tantalum. Tantalum is dark (blue-gray), dense,
Tantalum
Chemical element with atomic number 25 (Mn)
low efficiency or deep red emission. However, several Mn4+ activated fluorides were reported as potential red-emitting phosphors for warm-white LEDs
Manganese
Any of the fifteen lanthanides plus scandium and yttrium
elements occur in nature in combination with phosphate (monazite), carbonate-fluoride (bastnäsite), and oxygen anions.[citation needed] In their oxides, most
Rare-earth_element
Series of chemical elements
disputed and so far not reproduced independently) synthesis of mercury(IV) fluoride (HgF 4) has been taken by some to reinforce the view that the group 12
Transition_metal
Chemical element with atomic number 115 (Mc)
moscovium some alkali metal character. Calculations predict that moscovium(I) fluoride and chloride would be ionic compounds, with an ionic radius of about 109–114 pm
Moscovium
Chemical element with atomic number 83 (Bi)
3 H2 It reacts with fluorine to form bismuth(V) fluoride at 500 °C (932 °F) or bismuth(III) fluoride at lower temperatures (typically from Bi melts);
Bismuth
Elements with atomic numbers 57-70
iodine. They are all high melting and predominantly ionic in nature. The fluorides are only slightly soluble in water and are not sensitive to air, and this
Lanthanide
Chemical element with atomic number 104 (Rf)
affinity for fluoride ion and the formation of the hexafluororutherfordate ion, whereas hafnium and zirconium ions complex seven or eight fluoride ions at
Rutherfordium
Chemical element with atomic number 87 (Fr)
by using the high vapour pressure of the compound, although francium fluoride would have a higher vapour pressure. Francium nitrate, sulfate, hydroxide
Francium
Chemical element with atomic number 30 (Zn)
chemistry. Ab initio study of zinc(IV), cadmium(IV), and mercury(IV) fluorides". Inorganic Chemistry. 33 (10): 2122–2131. doi:10.1021/ic00088a012. Archived
Zinc
Chemical element with atomic number 18 (Ar)
ultraviolet light onto frozen argon containing a small amount of hydrogen fluoride with caesium iodide. This discovery caused the recognition that argon could
Argon
Chemical element with atomic number 44 (Ru)
water and easily disproportionates to form a mixture of lower ruthenium fluorides, releasing fluorine gas. Ruthenium pentafluoride is a tetrameric dark
Ruthenium
Chemical element with atomic number 81 (Tl)
still the least stable in the whole group. For instance, thallium(III) fluoride, TlF3, has the β-BiF3 structure rather than that of the lighter group 13
Thallium
Chemical element with atomic number 69 (Tm)
compounds. Examples of thulium(II) compounds include the halides (except the fluoride). Some hydrated thulium compounds, such as TmCl3 ·7 H2O and Tm2(C2O4)3
Thulium
Chemical element with atomic number 52 (Te)
David (1983). "Preparations and Reactions of Inorganic Main-Group Oxide-Fluorides". In Harry Julius Emeléus; A. G. Sharpe (eds.). Advances in inorganic
Tellurium
Chemical element with atomic number 37 (Rb)
superoxide RbO2. Rubidium forms salts with halogens, producing rubidium fluoride, rubidium chloride, rubidium bromide, and rubidium iodide. Rubidium in
Rubidium
Group of chemical elements
well-known. Sulfur tetrafluoride is also a well-known sulfur fluoride. Certain selenium fluorides, such as selenium difluoride, have been produced in small
Chalcogen
Chemical element with atomic number 42 (Mo)
depends quite strongly on the halide counterion: although molybdenum(VI) fluoride is stable, molybdenum does not form a stable hexachloride, pentabromide
Molybdenum
Chemical element with atomic number 82 (Pb)
flame. Lead reacts with fluorine at room temperature to form lead(II) fluoride. Its reaction with chlorine is similar but requires heating, as the resulting
Lead
Chemical element with atomic number 10 (Ne)
confirmed. Additionally, theoretical works predict that helium hydride fluoride (HHeF), a neutral compound from HeH+ could be stable under extreme pressure
Neon
Chemical element with atomic number 40 (Zr)
by Berzelius by heating a mixture of potassium and potassium zirconium fluoride in an iron tube. The crystal bar process (also known as the Iodide Process)
Zirconium
Chemical element with atomic number 24 (Cr)
[Cr2O7]2− + H2O Chromium(VI) oxyhalides are known also and include chromyl fluoride (CrO2F2) and chromyl chloride (CrO 2Cl 2). However, despite several erroneous
Chromium
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