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Chemical compound
Lithium iodide, or LiI, is a compound of lithium and iodine. When exposed to air, it becomes yellow in color, due to the oxidation of iodide to iodine
Lithium_iodide
American engineer and inventor (1919–2011)
world's first pacemaker with a lithium anode and a lithium-iodide electrolyte solid-state battery. The lithium-iodide cell manufactured by Greatbatch
Wilson_Greatbatch
Medical device for artificially stimulating heart contractions
world's first pacemaker with a lithium anode and a lithium-iodide electrolyte solid-state battery. Lithium-iodide or lithium anode cells increased the life
Pacemaker
Mood-stabilizing psychiatric medication
Certain lithium compounds, also known as lithium salts, are used as psychiatric medication, primarily for bipolar disorder and for major depressive disorder
Lithium_(medication)
Inventor and entrepreneur
company that manufactured the world's first lithium battery-powered artificial pacemaker. The lithium-iodide cell revolutionized the medical industry and
Anthony_Adducci
Metal–air electrochemical cell
the anode, an electrolyte of lithium bis(trifluoromethyl) sulfonylimide/dimethoxyethane with added water and lithium iodide for use as a "mediator". The
Lithium–air_battery
Non-rechargeable battery using lithium metal as anode
specialized lithium-iodide batteries designed to last 15 or more years. But for other, less critical applications such as in toys, the lithium battery may
Lithium_metal_battery
Method for the manufacture of acetic acid
source of methyl iodide. CH3CO2CH3 + CO → (CH3CO)2O In this process lithium iodide converts methyl acetate to lithium acetate and methyl iodide, which in turn
Monsanto_process
Chemical compound
Lithium chloride is a chemical compound with the formula LiCl. The salt is a typical ionic compound (with certain covalent characteristics), although
Lithium_chloride
Medical equipment company
designed and manufactured the world's first pacemaker with a lithium anode and a lithium-iodide electrolyte solid-state battery. The pacemaker structure is
Cardiac_Pacemakers,_Inc.
– LiOF Lithium iodide – LiI Lithium iron phosphate – FeLiO4P Lithium nitrate – LiNO3 Lithium sulfide – Li2S Lithium sulfite – Li2SO3 Lithium sulfate
List_of_inorganic_compounds
Topics referred to by the same term
Information Institute, a non-profit public service of Cornell Law School Lithium iodide (LiI) Logical Intuitive Introvert, one of the 16 classifications of
LII
Chemical compound
intermediate product by a catalytic reaction between methyl acetate and lithium iodide. Like many organoiodide compounds, iodomethane is typically stored in
Iodomethane
Chemical compound
Sodium iodide (chemical formula NaI) is an ionic compound formed from the chemical reaction of sodium metal and iodine. Under standard conditions, it is
Sodium_iodide
Chemical coupling reaction
reaction is performed in dimethylformamide in the presence of lithium iodide or sodium iodide, the product is almost exclusively the Z-isomer. With stabilized
Wittig_reaction
Chemical compound
Caesium iodide or cesium iodide (chemical formula CsI) is the ionic compound of caesium and iodine. It is often used as the input phosphor of an X-ray
Caesium_iodide
Chemical compound
analysis. Small amounts of lithium bromide LiBr or lithium iodide LiI may be added as mold and crucible release agents. Lithium metaborate dissolves acidic
Lithium_metaborate
Instrument for measuring ionizing radiation
the material Rutherford used to perform his scattering experiment. Lithium iodide (LiI) is used in neutron detectors. The quantum efficiency of a gamma-ray
Scintillation_counter
Chemical compound
bromide and lithium iodide: [Mo6Br8]Br4 + 12 LiI → [Mo6I8]I4 + 12 LiBr It can also be produced by the decomposition of molybdenum(III) iodide in a vacuum
Molybdenum(II)_iodide
Group of highly reactive chemical elements
the higher electronegativity of lithium, some of its compounds have a more covalent character. For example, lithium iodide (LiI) will dissolve in organic
Alkali_metal
Chemical compound
Lithium fluoride is an inorganic compound with the chemical formula LiF. It is a colorless solid that transitions to white with decreasing crystal size
Lithium_fluoride
Organic compound with formula (CH3CO)2O
to give the desired anhydride. Rhodium chloride in the presence of lithium iodide is employed as the catalyst. Because acetic anhydride is not stable
Acetic_anhydride
Variation of solubility of assorted substances
7.11 6.03 Lithium hydroxide LiOH 12.7 12.7 12.8 12.9 13.0 13.3 13.8 15.3 17.5 Lithium iodide LiI 151 157 165 171 179 202 435 440 481 Lithium molybdate
Solubility_table
Chemical compound
can be reduced with lithium biphenyl, to give a highly active form of barium metal. Like other soluble salts of barium, barium iodide is toxic. Lide, David
Barium_iodide
Inorganic dianion
740 nm. The magnetic moment is anomalously low. A mixture of lithium iodide and nickel iodide in water or methanol can partition [NiI4]2− ions into a cyclohexane-amine
Tetraiodonickelate(II)
Substance to enhance X-ray imaging
from breastfeeding after CM administration. Contrast agent Contrast CT Lithium iodide § Applications (disused) Organoiodine compound Bae, Kyongtae T. (2010)
Iodinated_contrast
Chemical compound
Lithium bromide (LiBr) is a chemical compound of lithium and bromine. Its extreme hygroscopic character makes LiBr useful as a desiccant in certain air
Lithium_bromide
7789–24–4 LiH lithium hydride 7580–67–8 LiI lithium iodide 10377–51–2 LiI•3H2O lithium iodide trihydrate 7790–22–9 LiN(C3H7)2 lithium diisopropylamide
List of CAS numbers by chemical compound
List_of_CAS_numbers_by_chemical_compound
Crystallographic system where the unit cell is in the shape of a cube
Fluorides Chlorides Bromides Iodides Lithium Lithium hydride Lithium fluoride Lithium chloride Lithium bromide Lithium iodide Sodium Sodium hydride Sodium
Cubic_crystal_system
Branch of electrochemistry
of nanoionics. In 1973, it was reported that ionic conductivity of lithium iodide (LiI) crystals could be increased 50 times by adding to it a fine powder
Solid_state_ionics
Chemical reaction
and iodides. Particularly well-developed is the use of metal–halogen exchange for the preparation of organolithium compounds. Two kinds of lithium–halogen
Metal–halogen_exchange
Lighting system
spike in red wavelengths at 625 nm. Other additives such as lithium iodide (LiI) and sodium iodide (NaI) can be used to modify the output spectra. The technology
Sulfur_lamp
Chemical compound
Thulium(II) iodide is an inorganic compound with the chemical formula TmI2. Thulium(II) iodide can be obtained by reacting thulium(III) iodide and alkali
Thulium(II)_iodide
Chemical compound
Rubidium iodide, more specifically rubidium monoiodide, is a salt of rubidium and iodine, with the chemical formula RbI. It is a white solid with a melting
Rubidium_iodide
Chemical compound
Lithium ozonide is an oxygen rich compound of lithium. It has formula LiO3. It is a red solid. It is an ozonide, meaning it contains the ozonide anion
Lithium_ozonide
Electronics devices with low power consumption
example, consume only a few tens of microamperes of current, allowing lithium-iodide batteries to power the device for up to ten years or more without replacement
Low-power_electronics
Battery with solid electrodes and a solid electrolyte
solid-state batteries offer much higher energy density than the typical lithium-ion or lithium polymer batteries. While solid electrolytes were first discovered
Solid-state_battery
monolithium phosphate LiI lithium iodide 10377–51–2 LiIO lithium hypoiodite LiIO2 lithium iodite LiIO3 lithium iodate 13765–03–2 LiIO4 lithium periodate 21111-84-2
Glossary_of_chemical_formulae
Chemical compound
14C-labeled diazomethane. Another synthesis of cyclobutanone involves lithium iodide catalyzed rearrangement of oxaspiropentane, which is formed by epoxidation
Cyclobutanone
Compound with carbon to copper bonds
experiment at −100 °C, the Gilman reagent Li+[Cu(CH3)2]− (stabilized by lithium iodide) was introduced to cyclohexenone (1) enabling the detection of the copper-alkene
Organocopper_chemistry
Chemical compound
reacting lithium borohydride with iodine. As well as boron triiodide, this reaction also produces lithium iodide, hydrogen and hydrogen iodide: 3LiBH4
Boron_triiodide
Chemical compound
copper(I)iodide. The reagent is CF3Li would seem to be an obvious reagent fo trifluoromethylations. Indeed, it can be generated by lithium-iodide exchange
Trifluoromethylation
Australian company best known for its role in developing the pacemaker
testing samples of a new type of energy source for pacemakers, the lithium cell (lithium battery) being developed by Wilson Greatbatch and in 1972 commenced
Telectronics
Chemical compound
Wurtz. Molecular copper hydride can be formed by reducing copper iodide with lithium aluminium hydride in ether and pyridine: 4 CuI + LiAlH4 → 4 CuH +
Copper_hydride
Chemical compound
Lithium aluminium hydride, commonly abbreviated to LAH, is an inorganic compound with the chemical formula Li[AlH4] or LiAlH4. It is a white solid, discovered
Lithium_aluminium_hydride
Chemical compound
melting at 41 °C, produced by the reaction of lithium iodide and phosphorus pentachloride in methyl iodide, however, this claim is disputed and probably
Phosphorus_pentaiodide
Purposeful modulation of nervous system activity
device's status by telemetry. Also they use a single hermetically sealed lithium iodide (LiI) cell as the battery. The pacemaker circuitry includes sense amplifiers
Neurostimulation
Chemical compound
formula LiWF6. Lithium hexafluorotungstate can be prepared by reacting lithium iodide and tungsten hexafluoride in liquid sulfur dioxide. The compound has
Lithium_hexafluorotungstate
Particle-based form of fire extinction
dispersed in solution can be sodium, potassium or magnesium chlorides, lithium iodide, potassium acetate, sodium hydroxide, potassium ferrocyanide and PCCs
Condensed aerosol fire suppression
Condensed_aerosol_fire_suppression
Chemical compound
(1984). "Iodination of samarium and reaction of samarium triiodide with lithium iodide". Zhurnal Neorganicheskoj Khimii (in Russian). 29 (4): 1069–1072. ISSN 0044-457X
Samarium(III)_iodide
Chemical compound
iodine–lithium exchange is several orders of magnitude faster than the bromine–lithium exchange. For these reasons, aryl, vinyl and primary alkyl iodides are
N-Butyllithium
Type of electrochemical cell
The device incorporated a lithium-ion permeable membrane. A cathode-flow lithium-iodine (Li–I) battery uses the triiodide/iodide (I 3−/I−) redox couple in
Lithium-ion_flow_battery
Chemical compound
Neopentyl alcohol can be converted to neopentyl iodide by treatment with triphenylphosphite/methyl iodide: (CH3)3CCH2OH + [CH3(C6H5O)3P]+I− → (CH3)3CCH2I
Neopentyl_alcohol
Antiseptic solution
with thyroid problems or who are taking lithium. Povidone-iodine is a chemical complex of povidone, hydrogen iodide, and elemental iodine. The recommended
Povidone-iodine
1063/1.1699148. Liang, C. C. (1973). "Conduction Characteristics of the Lithium Iodide-Aluminum Oxide Solid Electrolytes". J. Electrochem. Soc. 120 (10): 1289–1292
Nanoionics
Chemical compound
Lithium tungstate is the inorganic compound with the formula Li2WO4. It is a white solid that is soluble in water. The compound is one of the several
Lithium_tungstate
Chemical compound
dark for several days. Attempts to synthesise PSI3 by the reaction of lithium iodide with thiophosphoryl bromide lead to the mixed thiophosphoryl halides
Thiophosphoryl_iodide
Class of chemical compounds
An iodide nitride is a mixed anion compound containing both iodide (I−) and nitride ions (N3−). Another name is metalloiodonitrides. They are a subclass
Nitride_iodide
Chemical element with atomic number 53 (I)
Ιώδης, meaning 'violet'. Iodine occurs in many oxidation states, including iodide (I−), iodate (IO− 3), and the various periodate anions. As the heaviest
Iodine
Chemical compounds containing C–Li bonds
organolithium species through lithium halogen exchange. Lithium–halogen exchange is mostly used to convert aryl and alkenyl iodides and bromides with sp2 carbons
Organolithium_reagent
Chemical reaction
secondary or tertiary alkyl chloride, bromide, or iodide: R–X + 2 Li° → RLi + Li+X– In the second step, a lithium dialkylcuprate, also known as a Gilman reagent
Corey–House_synthesis
Hormone antagonist acting upon thyroid hormones
drug in this class is lithium, which inhibits thyroid hormone secretion by inhibiting iodotyrosine coupling, thyroidal iodide uptake, and alteration
Antithyroid_agent
Aromatic compounds containing Halogen atom(s) in place of Hydrogen
reactive aryl chlorides and bromides. Aryl iodides can be prepared by treating diazonium salts with iodide salts. Electron-rich arenes such as anilines
Aryl_halide
Chemical compound
acids. Reaction with lithium iodide generates the mixed thiophosphoryl halides PSBr2I and PSBrI2 but not thiophosphoryl iodide, PSI3. Thiophosphoryl
Thiophosphoryl_bromide
Chemical reaction
and a ketone or aldehyde. Afterwards, the hydrazone is deprotonated by lithium diisopropylamide (LDA) to form an azaenolate, which reacts with alkyl halides
Enders SAMP/RAMP hydrazone-alkylation reaction
Enders_SAMP/RAMP_hydrazone-alkylation_reaction
Class of chemical compounds
discovered by Henry Gilman and coworkers. Lithium dimethylcopper (CH3)2CuLi can be prepared by adding copper(I) iodide to methyllithium in tetrahydrofuran at
Gilman_reagent
Chemical compound
O-methyl, giving methyl psoromate. Finally, exhaustive treatment with lithium iodide in hot hexamethylphosphoramide cleaved the methyl ester, yielding psoromic
Psoromic_acid
Herbicide active ingredient
inhibit photosynthetic phosphorylation. Ioxynil additionally breaks down into iodide ions which inhibit plant growth again. Ioxynil may also inhibit photoreduction
Ioxynil
Chemical compound
addition of lithium iodide in ether, chloride is substituted for iodide, forming red-brown trans-[I(PMe3)4W≡Ge-C6H3-2,6-Trip2]. With lithium dimethylamine
Tetrakis(trimethylphosphine)tungsten(II) trimethylphospinate hydride
Tetrakis(trimethylphosphine)tungsten(II)_trimethylphospinate_hydride
Chemical compound
5-dibromopentane with lithium diphenylphosphide, or diphenylphosphine in presence of caesium hydroxide. It reacts with copper(I) iodide to give a luminescent
1,5-Bis(diphenylphosphino)pentane
1,5-Bis(diphenylphosphino)pentane
Polyatomic anion
solution of lithium carbonate at -30° to -40 °C yields a solution of the Lithium percarbonate, which can liberate iodine from potassium iodide instantaneously
Peroxycarbonate
Inorganic compound (SOCl2)
bromide: SOCl2 + 2 HBr → SOBr2 + 2 HCl Thionyl iodide can likewise be prepared by a reaction with potassium iodide, but is reported to be highly unstable. Thionyl
Thionyl_chloride
Chemical compound
1923 from phenylmagnesium iodide and copper(I) iodide and in 1936 by Henry Gilman by transmetallation of phenylmagnesium iodide with copper(I) chloride
Phenylcopper
Chemical element with atomic number 27 (Co)
cobalt(II) chloride (CoCl2, blue), cobalt(II) bromide (CoBr2, green), cobalt(II) iodide (CoI2, blue-black). These halides also exist in hydrated forms. Whereas
Cobalt
Group of chemical compounds derived from alkanes containing one or more halogens
volatile haloalkanes in theory may have activity as greenhouse gases. Methyl iodide, a naturally occurring substance, however, does not have ozone-depleting
Haloalkane
Chemical group (–CH3) derived from methane
that reacts by the SN2 pathway: CH3OH + H+ → [CH3OH2]+ Similarly, methyl iodide and methyl triflate are viewed as the equivalent of the methyl cation because
Methyl_group
Solid conductor with highly mobile ions
conductor is silver iodide (AgI). Upon heating the solid to 146 °C, this material adopts the alpha-polymorph. In this form, the iodide ions form a rigid
Fast-ion_conductor
Wang, Qing (2016). "A redox flow lithium battery based on the redox targeting reactions between LiFePO4 and iodide". Energy & Environmental Science.
Semi-solid_flow_battery
Chemical element with atomic number 92 (U)
chlorine. All uranium chlorides react with water and air. Bromides and iodides of uranium are formed by direct reaction of, respectively, bromine and
Uranium
Radius of an atomic ion in crystals
LiI. The lithium ions are so much smaller than the iodide ions that the lithium fits into holes within the crystal lattice, allowing the iodide ions to
Ionic_radius
Organic reaction in chemistry
alkyl bromides, whereas using carbon tetraiodide, methyl iodide or iodine gives alkyl iodides. The reaction is credited to and named after Rolf Appel;
Appel_reaction
Chemical compound
("cyclooctene oxide") followed by reactions with lithium diphenylphosphide (LiPPh 2) and with methyl iodide CH 3I. (Similar procedures can give cis,trans
Trans-Cyclooctene
Chemical compound
CuC2H5 + Pb(C2H5)3OAc Methyl copper was obtained from methyl lithium and copper(I) iodide at low temperature. A copper ethyl complex has been characterized
Ethyl_copper
Portable hand-held electric light
duty types, alkaline, and lithium. Secondary, rechargeable types include lead-acid batteries, NiMH, NiCd batteries and lithium-ion batteries. The choice
Flashlight
Chemical compound
explosions. Another way is to react acetylene with phenyl lithium (at −50 °C) to make lithium acetylide, which then reacts with bromine to yield the product
Dibromoacetylene
Ion
ionic structures of tropylium perchlorate (C 7H+ 7ClO− 4) and tropylium iodide (C 7H+ 7I− ) have been confirmed by X-ray crystallography. The bond length
Tropylium_cation
Chemical compound
[HPMe3]X. This reaction is reversible. With strong bases, such as alkyl lithium compounds, a methyl group undergoes deprotonation to give PMe2CH2Li. PMe3
Trimethylphosphine
Chemical compound
stable complexes with many metal halides, e.g. zinc chloride and copper(I) iodide, giving complexes that are soluble in organic solvents. In such complexes
Tetramethylethylenediamine
Chemical reaction
3-anti diol monoesters. The reaction employs a Lewis acid, often samarium iodide, and an aldehyde. It was first described in 1990 by David A. Evans and Amir
Evans–Tishchenko_reaction
Chemical compound
and electrophiles. Alkyl lithium compounds react as follows: Si2Me6 + RLi → RSiMe3 + LiSiMe3 Iodine gives trimethylsilyl iodide. Me3Si−SiMe3 + I2 → 2 SiMe3I
Hexamethyldisilane
Study of compounds with carbon to zinc bonds
Frankland prepared the first organozinc compound, diethylzinc, by heating ethyl iodide in the presence of zinc metal. This reaction produced a volatile colorless
Organozinc_chemistry
Organic reaction
metals, notably samarium(II) iodide, chromium(II) chloride, titanium(II) chloride, cerium(III) halides such as cerium(III) iodide, and titanocene(III) chloride
Reformatsky_reaction
Group of chemical elements
fluoride, sodium chloride (common table salt), silver bromide, and potassium iodide. The group of halogens is the only periodic table group that contains elements
Halogen
Chemicals used to extract metal from ore
extraction), hydrogen peroxide, and iodide/iodine. Lixiviants have also been applied to the recycling of lithium ion batteries. "Lixiviant systems" also
Lixiviant
Chemical species that donates an electron to another species in a redox reaction
Thiosulfates, e.g. Na2S2O3 (mainly in analytical chemistry) Iodides, such as potassium iodide (K I) (mainly in analytical chemistry) Hydrogen peroxide (H
Reducing_agent
Class of chemical compounds
other strong bases like sodium and potassium t-butoxide (tBuONa, tBuOK), lithium, sodium and potassium hexamethyldisilazide (LiHMDS, NaHMDS, KHDMS, where
Wittig_reagents
Unit of concentration for hypochlorite-based bleaches
weight leads to a higher potential bleaching power. In the example of lithium hypochlorite, the molecular weight 58.39, so it only takes 58.39 grams
Percent_active_chlorine
Concentrated solution of salt in water
health, is obtained on a commercial scale from iodide-rich brines. The purification begins by converting iodide to hydroiodic acid, which is then oxidized
Brine
Chemical element with atomic number 91 (Pa)
process, the oxide was chemically converted to a halide (chloride, bromide or iodide) and then reduced in a vacuum with an electrically heated metallic filament:
Protactinium
Chemical compound
the reaction of ascorbic acid with iodate and iodide in acid solution. Electrolyzing the potassium iodide solution produces iodine, which reacts with ascorbic
Chemistry_of_ascorbic_acid
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