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Stock No.
MSDS pdf

Iridium iii Chloride

(IrCl3, Purity: 99.99%)
Iridium iii Chloride
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ProductIridium iii Chloride
Stock NoNS6130-12-000655
Molecular FormulaIrCl3Confirm
Molecular Weight298.58 g/molConfirm
ColorBlack/ Dark GreenConfirm
Density5.30 g/cm³Confirm
Melting Point763 °CConfirm
SolubilityH2O aliphatic hydrocarbons,insoluble(lit.)
Quality ControlEach Lot of was tested successfully
Main Inspect VerifierManager QC
Typical Chemical Analysis
Other Metal90ppm

Expert Reviews

Dr. Bruce Perrault, Ph.D (Georgia Institute of Technology (Georgia Tech), USA)

Iridium iii Chloride: Iridium (III) chloride is the inorganic compound with the formula IrCl3. The anhydrous compound is relatively rare, but the related hydrate is useful for preparing other iridium compounds. The anhydrous salt is a dark green crystalline solid. More commonly encountered is the trihydrate IrCl3. (H2O)3.

Dr. Myron Rubenstein, Ph.D (Polytechnic University of Turin, Italy)

Iridium iii Chloride: Industrially, most iridium complexes are generated from ammonium hexachloroiridate or the related chloroiridic acid (H2IrCl6) as these salts are the most common commercial forms of iridium chlorides. Hydrated iridium(III) chloride is used in the laboratory for the preparation of other iridium compounds such as Vaska's complex, trans-[IrCl(CO)(PPh3)2]. Alkene complexes such as cyclooctadiene iridium chloride dimer and chlorobis(cyclooctene) iridium dimer can also be prepared by heating the trichloride with the appropriate alkene in water/alcohol mixtures.

Dr. Huojin Chan (University of Science and Technology of China, Hefei, Anhui, China)

Iridium iii Chloride: Iridium Chloride por Iridium (III) Chloride is an excellent water soluble crystalline Iridium source for uses compatible with chlorides. Chloride compounds can conduct electricity when fused or dissolved in water. Chloride materials can be decomposed by electrolysis to chlorine gas and the metal. They are formed through various chlorination processes whereby at least one chlorine anion (Cl-) is covalently bonded to the relevant metal or cation. Ultra high purity and proprietary formulations can be prepared. Iridium Chloride is generally immediately available in most volumes. Ultra high purity y compositions improve both optical quality and usefulness as scientific standards.

Dr. Ms. Yi Yen Shi (King Mongkut’s University of Technology Thonburi, Bangkok, Thailand)

Iridium iii Chloride: Nano powders have wide range of applications and different methods are available for production. In the paper the three methods discussed are mainly used in pharmaceutical industries and electronic industries for the production of nano powder. If we compare the two processes (PGSS) and (DELOS) Process there is difference between the shapes of the powder in (PGSS) Powder is spherical and in (DELOS) there are cylindrical and dendrite. The powder produced in (PGSS) is in amorphous form where has in (DELOS) it is crystalline form. In the above methods (PGSS) process is more advantageous than any other process because it is flexible as we can control the size of the powder produced by controlling the amount of super critical fluid used in the process and we can maximize and minimize the yield of the production.

Dr. Hans Roelofs Ph.D  (National Technical University of Athens, Greece)

Iridium iii Chloride: In recent years, much attention has been paid to the synthesis and study of nanoparticles because of wide range of potential applications. Particularly, magnetic nanoparticles can have the special characteristic of exhibiting single-domain magnetism and can be used in magnetic tapes, ferrofluid, magnetic refrigerants, etc, because of their ultra fine size dimensioned with magnetic domain size. Oxide coated iron nanoparticles are non-toxic materials and due to enhanced magnetic properties can be more effective as compare with magnetite nanoparticles for biomedical application.


Iridium iii Chloride

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