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Thulium compounds are compounds containing the chemical element thulium (Tm). As with most lanthanides, the chemistry of thulium is dominated by the +3
Thulium_compounds
Chemical element with atomic number 69 (Tm)
oxide, halides and other compounds. In aqueous solution, like compounds of other late lanthanides, soluble thulium compounds form coordination complexes
Thulium
Chemical compound
Thulium(III) oxide is a pale green crystalline compound, with the formula Tm2O3. It was first isolated in 1879, from an impure sample of erbia, by Swedish
Thulium(III)_oxide
Chemical compound
Thulium(III) chloride or thulium trichloride is as an inorganic salt composed of thulium and chlorine with the formula TmCl3. It forms yellow crystals
Thulium(III)_chloride
Chemical compound
Thulium nitride is a binary inorganic compound of thulium and nitrogen with the chemical formula TmN. It can be prepared by reacting thulium amalgam with
Thulium_nitride
Chemical compound
Thulium(III) telluride is an inorganic compound, one of the tellurides of thulium, with the chemical formula Tm2Te3. It is an orthorhombic crystal with
Thulium(III)_telluride
Chemical compound
Thulium monoselenide is a mixed valence compound of selenium and thulium with the chemical formula TmSe. Thulium monoselenide can be prepared by directly
Thulium_monoselenide
Chemical compound
Thulium phosphate is an inorganic compound of thulium and phosphate with the chemical formula TmPO4. Hydrated forms are also known. Hydrated thulium phosphate
Thulium_phosphate
Chemical compound
Thulium(III) sulfate is an inorganic compound of thulium, with the molecular formula Tm2(SO4)3. It has received little scientific attention as its solubility
Thulium(III)_sulfate
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
Thulium(III) selenide is an inorganic compound with the chemical formula Tm2Se3. Thulium(III) selenide can be obtained by the reaction of thulium and
Thulium(III)_selenide
Chemical compound
Thulium arsenate is an inorganic compound of thulium and the arsenate ion, with the formula TmAsO4. It is a sparingly soluble crystalline solid with the
Thulium_arsenate
Chemical compound
Thulium iodate is an inorganic compound with the chemical formula Tm(IO3)3. It can be prepared by the hydrothermal reaction of periodic acid and thulium
Thulium_iodate
Index of chemical compounds with the same name
Thulium chloride may refer to: Thulium(II) chloride (thulium dichloride), TmCl2 Thulium(III) chloride (thulium trichloride), TmCl3 This set index article
Thulium_chloride
Chemical compound
Thulium perchlorate is an inorganic compound of thulium in the +3 oxidation state and the perchlorate ion, with the formula Tm(ClO4)3. It is known in
Thulium_perchlorate
Index of chemical compounds with the same name
Thulium iodide may refer to: Thulium(II) iodide (thulium diiodide), TmI2 Thulium(III) iodide (thulium triiodide), TmI3 This set index article lists chemical
Thulium_iodide
Chemical compound
Thulium(III) nitrate is an inorganic compound, a salt of thulium and nitric acid with the chemical formula Tm(NO3)3. The compound forms dark-green crystals
Thulium(III)_nitrate
Chemical compound
Thulium(III) selenate is an inorganic compound, with the chemical formula Tm2(SeO4)3. It can be obtained by reacting a thulium(III) oxide and selenic acid
Thulium(III)_selenate
Chemical compound
Thulium acetylacetonate is a coordination compound with the formula Tm(C5H7O2)3. This anhydrous acetylacetonate complex is often discussed but unlikely
Thulium_acetylacetonate
Chemical compound
Thulium(III) hydroxide is an inorganic compound with the chemical formula Tm(OH)3. It can be prepared by the addition of ammonia solution to a solution
Thulium(III)_hydroxide
Chemical element with atomic number 74 (W)
number 74. It is a metal found naturally on Earth almost exclusively in compounds with other elements. It was identified as a distinct element in 1781 and
Tungsten
Chemical compound
Thulium(III) bromide is an inorganic compound with the formula TmBr3. From aqueous solutions, it crystallizes as the octahydrate [Tm(H2O)8]Br3. Like other
Thulium(III)_bromide
Chemical element with atomic number 80 (Hg)
compounds are always divalent and usually two-coordinate and linear geometry. Unlike organocadmium and organozinc compounds, organomercury compounds do
Mercury_(element)
Chemical compound
Thulium dibromide is an inorganic compound, with the chemical formula of TmBr2. It is a dark green solid that is easy to dissolve, with the SrI2 structure
Thulium_dibromide
Chemical compound
Thulium(III) oxalate is the oxalate of thulium with the chemical formula Tm2(C2O4)3. Its hydrate can be prepared by reacting an aqueous solution of thulium(III)
Thulium(III)_oxalate
Chemical compound
Thulium phosphide is an inorganic compound of thulium and phosphorus with the chemical formula TmP. Reaction of thulium metal with phosphorus: 4 Tm +
Thulium_phosphide
Chemical compound
Thulium(II) chloride is an inorganic compound with the chemical formula TmCl2. Thulium(II) chloride can be produced by reducing thulium(III) chloride
Thulium(II)_chloride
Chemical compound
Thulium(II) fluoride is one of the fluoride salts of the lanthanide metal thulium, with the chemical compound of TmF2. It can react with zirconium tetrafluoride
Thulium(II)_fluoride
Chemical element with atomic number 17 (Cl)
manufacture of organic compounds, and 18% in the manufacture of inorganic chlorine compounds. About 15,000 chlorine compounds are used commercially. The
Chlorine
Chemical compound
Thulium(III) acetate is the acetate salt of thulium, with the chemical formula of Tm(CH3COO)3. It can exist in the tetrahydrate or the anhydrous form
Thulium(III)_acetate
Chemical compounds containing the element ytterbium
Ytterbium compounds are compounds formed by the lanthanide element ytterbium (Yb). Ytterbium commonly occurs in the +3 oxidation state, with the 4f13
Ytterbium_compounds
Chemical element with atomic number 78 (Pt)
probably the most important platinum compound, as it serves as the precursor for many other platinum compounds. By itself, it has various applications
Platinum
Chemical compound
Thullium(III) fluoride is an inorganic compound with the chemical formula TmF3. It can be produced by reacting thulium(III) sulfide and hydrofluoric acid
Thulium(III)_fluoride
Chemical element with atomic number 15 (P)
organic compounds containing the phosphate ion PO3−4 as a functional group. These include DNA, RNA, ATP, and phospholipids, complex compounds fundamental
Phosphorus
Chemical element with atomic number 55 (Cs)
commercial compounds of caesium are caesium chloride and nitrate. Alternatively, caesium metal may be obtained from the purified compounds derived from
Caesium
Chemical element with atomic number 19 (K)
for some ion-binding antibiotics. Potassium forms many binary compounds, i.e., compounds of potassium and one other element. The inventory is so extensive
Potassium
Chemical element with atomic number 51 (Sb)
dissolves in concentrated acid to form oxoantimonyl compounds such as SbOCl and (SbO)2SO4. Compounds in this class generally are described as derivatives
Antimony
Chemical element with atomic number 50 (Sn)
(Sn(C4H9)3H). These compounds release transient tributyl tin radicals, which are rare examples of compounds of tin(III). Organotin compounds, sometimes called
Tin
Index of chemical compounds with the same name
Thulium fluoride may refer to: Thulium(II) fluoride (Thulium difluoride), TmF2 Thulium(III) fluoride (Thulium trifluoride), TmF3 This set index article
Thulium_fluoride
Index of chemical compounds with the same name
Thulium selenide may refer to: Thulium monoselenide, TmSe Thulium(III) selenide, Tm2Se3 This set index article lists chemical compounds articles associated
Thulium_selenide
Chemical element with atomic number 3 (Li)
alkyl halides. Many other lithium compounds are used as reagents to prepare organic compounds. Some popular compounds include lithium aluminium hydride
Lithium
Retired American naval officer and Department of Defense official
Marlan (1964). PhD Thesis: Electronic shielding by closed shells in thulium compounds. CalTech (phd). California Institute of Technology. doi:10.7907/8KMG-FY60
John_Poindexter
Chemical element with atomic number 84 (Po)
at 1250 °C, and that of thulium (TmPo) melts at 2200 °C. PbPo is one of the very few naturally occurring polonium compounds, as polonium alpha decays
Polonium
Chemical element with atomic number 67 (Ho)
nature, holmium occurs together with the other rare-earth metals (like thulium). It is a relatively rare lanthanide, making up 1.4 parts per million of
Holmium
Chemical element with atomic number 5 (B)
The elemental form is not typically used as a precursor to compounds. Instead, boron compounds are produced from borates. When exposed to air, under normal
Boron
Chemical compound
Thulium(III) iodide is an iodide of thulium, with the chemical formula of TmI3. Thulium(III) iodide is used as a component of metal halide lamps. Mercury(II)
Thulium(III)_iodide
Chemical element with atomic number 12 (Mg)
enzymes. Magnesium ions interact with polyphosphate compounds such as ATP, DNA and RNA. Magnesium compounds are used medicinally as common laxatives and antacids
Magnesium
Chemical element with atomic number 49 (In)
sphalerite and other zinc sulfide ores. Indium has no biological role and its compounds are toxic when inhaled or injected into the bloodstream, although they
Indium
Isotope of thulium
Thulium-170 (170Tm or Tm-170) is a radioactive isotope of thulium proposed for use in radiotherapy and in radioisotope thermoelectric generators. Thulium-170
Thulium-170
Chemical element with atomic number 101 (Md)
fermium, to the left of the actinide nobelium, and below the lanthanide thulium. Mendelevium metal has not yet been prepared in bulk quantities, and bulk
Mendelevium
Chemical element with atomic number 25 (Mn)
the oxides can adsorb organic acids and other compounds. The adsorption of the metals and organic compounds can then cause them to be oxidized while the
Manganese
Chemical element with atomic number 26 (Fe)
than Mohr's salt ((NH4)2Fe(SO4)2·6H2O). Iron(II) compounds tend to be oxidized to iron(III) compounds in the air. Iron is one of the elements undoubtedly
Iron
Chemical element with atomic number 36 (Kr)
Until the 1960s no noble gas compounds had been synthesized. Following the first successful synthesis of xenon compounds in 1962, synthesis of krypton
Krypton
Chemical element with atomic number 4 (Be)
reactions. Organometallic beryllium compounds are known to be highly reactive. Examples of known organoberyllium compounds are dineopentylberyllium, beryllocene
Beryllium
Chemical element with atomic number 33 (As)
recognition of the persistent toxicity of arsenic and its compounds. Arsenic containing compounds have been known since ancient times to be poisonous to
Arsenic
Chemical element with atomic number 42 (Mo)
the chromium(III) compounds. The highest oxidation state is seen in molybdenum(VI) oxide (MoO3), whereas the normal sulfur compound is molybdenum disulfide
Molybdenum
Chemical compounds containing erbium
Erbium compounds are compounds containing the chemical element erbium (Er). As with most of the later lanthanides, the chemistry of erbium is dominated
Erbium_compounds
Chemical element with atomic number 79 (Au)
the noble metals, it still forms many diverse compounds. The oxidation state of gold in its compounds ranges from −1 to +5, but Au(I) and Au(III) dominate
Gold
Chemical element with atomic number 70 (Yb)
oxide, halides, and other compounds. In aqueous solution, like compounds of other late lanthanides, soluble ytterbium compounds form complexes with nine
Ytterbium
This is a list of CAS numbers by chemical formulas and chemical compounds, indexed by formula.The CAS number is a unique number applied to a specific
List of CAS numbers by chemical compound
List_of_CAS_numbers_by_chemical_compound
chemical compounds with chemical formulae and CAS numbers, indexed by formula. This complements alternative listing at list of inorganic compounds. Contents
Glossary_of_chemical_formulae
Chemical element with atomic number 76 (Os)
and Na2[Os(CO)4], respectively; these reactive compounds are used to synthesize osmium cluster compounds. Another example of the −1 oxidation state of
Osmium
Chemical element with atomic number 20 (Ca)
involved the trend is reversed. In contrast to organomagnesium compounds, organocalcium compounds are not similarly useful, with one major exception, calcium
Calcium
Chemical element with atomic number 16 (S)
compounds are odoriferous, and the smells of odorized natural gas, skunk scent, bad breath, grapefruit, and garlic are due to organosulfur compounds.
Sulfur
Chemical element with atomic number 24 (Cr)
manufacturers. Because chromium compounds were used in dyes, paints, and leather tanning compounds, these compounds are often found in soil and groundwater
Chromium
Chemical element with atomic number 56 (Ba)
calibrating pH equipment. Barium compounds burn with a green to pale green flame, which is an efficient test to detect a barium compound. The color results from
Barium
Chemical element with atomic number 60 (Nd)
and reacts with water. Its compounds predominantly contain neodymium in the +3 oxidation state, although +2 and +4 compounds are also known. Natural neodymium
Neodymium
dioxide – ThO2 Thorium tetrafluoride – ThF4 Thulium(III) bromide – TmBr3 Thulium(III) chloride – TmCl3 Thulium(III) oxide – Tm2O3 Stannane – SnH4 Tin(II)
List_of_inorganic_compounds
Chemical element with atomic number 23 (V)
depends on pH. Vanadium(II) compounds are reducing agents, and vanadium(V) compounds are oxidizing agents. Vanadium(IV) compounds often exist as vanadyl derivatives
Vanadium
Chemical element with atomic number 77 (Ir)
forms compounds in oxidation states between −3 and +9, but the most common oxidation states are +1, +2, +3, and +4. Well-characterized compounds containing
Iridium
Chemical element with atomic number 37 (Rb)
rubidus, meaning deep red, the color of its emission spectrum. Rubidium's compounds have various chemical and electronic applications. Rubidium metal is easily
Rubidium
Chemical element with atomic number 45 (Rh)
and insoluble compounds, as Rh)". CDC. Retrieved 21 November 2015. "NIOSH Pocket Guide to Chemical Hazards – Rhodium (soluble compounds, as Rh)". CDC
Rhodium
Chemical element with atomic number 32 (Ge)
oxidation state +4 although many +2 compounds are known. Other oxidation states are rare: +3 is found in compounds such as Ge2Cl6, and +3 and +1 are found
Germanium
Chemical element with atomic number 93 (Np)
organoneptunium compounds are the cyclopentadienyl and cyclooctatetraenyl compounds and their derivatives. The trivalent cyclopentadienyl compound Np(C5H5)3·THF
Neptunium
Chemical element with atomic number 66 (Dy)
In 1878, erbium ores were found to contain the oxides of holmium and thulium. French chemist Paul Émile Lecoq de Boisbaudran, while working with holmium
Dysprosium
MRI procedure that measures brain activity by detecting associated changes in blood flow
internal contrast is too difficult to measure, external agents such as thulium compounds are used to enhance the effect. Contrast based on pH depends on changes
Functional magnetic resonance imaging
Functional_magnetic_resonance_imaging
Chemical element with atomic number 14 (Si)
treatments, molding compounds, mold-release agents, mechanical seals, high temperature greases and waxes, and caulking compounds. Silicone is also sometimes
Silicon
Chemical element with atomic number 73 (Ta)
of new Ta compounds. It hydrolyzes readily to an oxychloride. The lower halides TaX4 and TaX3, feature Ta-Ta bonds. Organotantalum compounds include pentamethyltantalum
Tantalum
Chemical element with atomic number 48 (Cd)
Bonding of Metal-rich Compounds. 2. Presence of Dimer (T–T)4– and Isolated T2– Anions in the Polar Intermetallic Cr5B3-Type Compounds AE5T3 (AE = Ca, Sr;
Cadmium
Chemical element with atomic number 81 (Tl)
nuclear cardiac stress tests. Thallium(III) compounds resemble the corresponding aluminium(III) compounds. They are moderately strong oxidizing agents
Thallium
Elements with atomic numbers 57-70
hydrides (non-conducting, transparent salt-like compounds), they form black, pyrophoric, conducting compounds where the metal sub-lattice is face centred
Lanthanide
Index of chemical compounds with the same name
trichloride, TcCl3 Terbium trichloride, TbCl3 Thallium trichloride, TlCl3 Thulium trichloride, TmCl3 Titanium trichloride, TiCl3 Tungsten trichloride, WCl3
Trichloride
British-born American chemist (1880–1928)
that thulium, thought to be a mixture of three substances, was really a single element. James was the first researcher to isolate nearly pure thulium. In
Charles_James_(chemist)
Chemical element with atomic number 71 (Lu)
suggested names for the two new elements: "Ich beantrage für das an das Thulium, beziehungsweise Erbium sich anschließende, in dem vorstehenden Teile dieser
Lutetium
Chemical element with atomic number 40 (Zr)
tin. Zirconium forms a variety of inorganic compounds, such as zirconium dioxide, and organometallic compounds, such as zirconocene dichloride. Five isotopes
Zirconium
Group of highly reactive chemical elements
other organometallic compounds through metal-halogen exchange. Unlike the organolithium compounds, the organometallic compounds of the heavier alkali
Alkali_metal
Chemical element with atomic number 7 (N)
and appears in the English names of some nitrogen compounds such as hydrazine, azides and azo compounds. Elemental nitrogen is usually produced from air
Nitrogen
Chemical element with atomic number 59 (Pr)
aqueous solution, although the +4 oxidation state is known in some solid compounds and, uniquely among the lanthanides, the +5 oxidation state is attainable
Praseodymium
Chemical element with atomic number 46 (Pd)
Palladium compounds exist primarily in the 0 and +2 oxidation state. Other less common states are also recognized. Generally the compounds of palladium
Palladium
Index of chemical compounds with the same name
monophosphate Dysprosium monophosphate Holmium monophosphate Erbium monophosphate Thulium monophosphate Ytterbium monophosphate Lutetium monophosphate Gold monophosphate
Monophosphate
Chemical element with atomic number 41 (Nb)
states from +5 to −1 and −3, the most common compounds have niobium in the +5 state. Characteristically, compounds in oxidation states less than 5+ display
Niobium
Index of chemical compounds with the same name
sesquisulfide, Dy2S3 Holmium sesquisulfide, Ho2S3 Erbium sesquisulfide, Er2S3 Thulium sesquisulfide, Tm2S3 Ytterbium sesquisulfide, Yb2S3 Lutetium sesquisulfide
Sesquisulfide
Index of chemical compounds with the same name
Europium diiodide, EuI2 Gadolinium diiodide, GdI2 Dysprosium diiodide, DyI2 Thulium diiodide, TmI2 Ytterbium diiodide, YbI2 Tungsten diiodide, WI2 Osmium diiodide
Diiodide
Chemical element with atomic number 6 (C)
completely ionic compounds. Organometallic compounds by definition contain at least one carbon-metal covalent bond. A wide range of such compounds exist; major
Carbon
Chemical element with atomic number 35 (Br)
organobromine compounds in the atmosphere to yield free bromine atoms, causing ozone depletion. As a result, some organobromine compounds—such as the pesticide
Bromine
Chemical element with atomic number 98 (Cf)
Californium slowly tarnishes in air at room temperature. Californium compounds are dominated by the +3 oxidation state. The most stable of californium's
Californium
Chemical element with atomic number 57 (La)
them. Some lanthanum(II) compounds are also known, but they are much less stable. Therefore, in officially naming compounds of lanthanum its oxidation
Lanthanum
Chemical element with atomic number 11 (Na)
23Na. The free metal does not occur in nature and must be prepared from compounds. Sodium is the sixth–most abundant element in the Earth's crust and exists
Sodium
Chemical element with atomic number 53 (I)
characterised, such as the wine-red or bright orange compounds of ICl2+ and the dark brown or purplish black compounds of I2Cl+. Apart from these, some pseudohalides
Iodine
Crystallographic system where the unit cell is in the shape of a cube
extremely complicated structure of manganese. Compounds that consist of more than one element (e.g. binary compounds) often have crystal structures based on
Cubic_crystal_system
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THULIUM COMPOUNDS
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THULIUM COMPOUNDS
THULIUM COMPOUNDS
THULIUM COMPOUNDS
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