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Gold(III) chloride

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CAS:13453-07-1
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Gold(III) chloride manufacturers

  • Gold(III) chloride
  • Gold(III) chloride pictures
  • $0.00 / 25KG
  • 2023-09-06
  • CAS:13453-07-1
  • Min. Order: 1KG
  • Purity: 99%
  • Supply Ability: 500000kg
  • Gold(III) chloride
  • Gold(III) chloride pictures
  • $199.00 / 1KG
  • 2023-08-16
  • CAS:13453-07-1
  • Min. Order: 1KG
  • Purity: >99%
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  • Gold chloride
  • Gold  chloride pictures
  • $1850.00 / 1g
  • 2023-08-01
  • CAS:13453-07-1
  • Min. Order: 1g
  • Purity: 99.99%
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Gold(III) chloride Basic information
Product Name:Gold(III) chloride
Synonyms:auricchloride;aurictrichloride;goldchloride(aucl3);HYDROGEN TETRACHLOROAURATE (III);GOLD TRICHLORIDE ACID BROWN;GOLD TRICHLORIDE ACID YELLOW;GOLD ATOMIC SPECTROSCOPY STANDARD;GOLD CHLORIDE (ACID YELLOW)
CAS:13453-07-1
MF:AuCl3
MW:303.33
EINECS:236-623-1
Product Categories:Gold Salts;GoldCatalysis and Inorganic Chemistry;GoldMetal and Ceramic Science;Catalysis and Inorganic Chemistry;Chemical Synthesis;Crystal Grade Inorganics;Gold Catalysis;Salts;Inorganics;Au;chemical reaction,pharm,electronic,materials;metal halide;Gold CatalystsMetal and Ceramic Science
Mol File:13453-07-1.mol
Gold(III) chloride Structure
Gold(III) chloride Chemical Properties
Melting point 254°C
Boiling point 265 °C
density 3.9 g/mL at 25 °C
storage temp. Keep in dark place,Inert atmosphere,Room temperature
solubility DMSO (Sparingly), Methanol (Very Slightly)
form Crystalline Powder, Crystals or Chunks
color yellow
Water Solubility soluble
Sensitive Hygroscopic
Merck 14,4521
Solubility Product Constant (Ksp)pKsp: 24.5
CAS DataBase Reference13453-07-1(CAS DataBase Reference)
EPA Substance Registry SystemGold chloride (AuCl3) (13453-07-1)
Safety Information
Hazard Codes C,Xi
Risk Statements 36/37/38
Safety Statements 26-36/37/39-45-37/39-36
RIDADR UN 3260 8/PG 3
WGK Germany 3
RTECS MD5420000
3-8-10
TSCA Yes
HazardClass 8
PackingGroup III
HS Code 28433000
MSDS Information
ProviderLanguage
Gold(III) chloride English
SigmaAldrich English
Gold(III) chloride Usage And Synthesis
Chemical Propertiesorange-red to dark red crystals
Physical propertiesRed monoclinic crystals; deliquesces; density 4.7 g/cm3; sublimes at 180°C (760 torr); highly soluble in water; soluble in alcohol and ether; slightly soluble in liquid ammonia.
UsesIt is important to note that the Cl2 used here must be hot chlorine gas.
UsesPhotography, gold plating, special inks, medicine, ceramics (enamels, gilding, and painting porcelain), glass (gilding, ruby glass), manufacture of finely divided gold and purple of Cassius.
UsesGold(III) chloride is used in colloidal gold solutions, in photography and as a print toning agent(gold toning), starting solution to form other gold compounds and a precursor for preparation of ultra pure gold metal. It is used in electroplating and electroless plating as an anode in an electric cell. Gold(III) chloride acts as a gold catalyst and cell body stains for bright field and dark field microscopy.
DefinitionA compound prepared by dissolving gold in aqua regia. The bright yellow crystals (chloroauric acid) produced on evaporation are heated to form dark red crystals of gold(III) chloride. The chloride decomposes easily (at 175°C) to give gold(I) chloride and chlorine; at higher temperatures it decomposes to give gold and chlorine. Gold(III) chloride is used in photography. It exists as a dimer, Au2Cl6.
PreparationGold(III) chloride may be produced by the combination of metallic gold with chlorine gas at elevated temperatures:
2Au + 3Cl2 → 2AuCl3
It may be prepared in the laboratory by the reaction of iodine monochloride with metallic gold:
2Au + 6ICl → 2AuCl3 + 3I2
The compound should be stored tightly closed and protected from light.
ReactionsWhen heated at 254ºC, gold(III) chloride decomposes to gold(I) chloride and chlorine.
Passing hydrogen sulfide into an ether solution of the compound yields gold(III) sulfide, Au2S3.
A similar reaction occurs when alcoholic solutions of gold(III) chloride and hydrogen selenide are mixed, producing gold(III) selenide, Au2Se3, a black amorphous solid.
Gold(III) chloride may be reduced readily to metallic gold by common reducing agents. Thus, reduction with stannous chloride in dilute aqueous medium yields colloidal gold in which the atom carries a negative charge. “Cassius purple” is produced from the oxidation of tin to form H2Sn(OH)6, which protects colloidal gold from coagulation, imparting ruby red color to the solution.
Gold(III) chloride reacts with ammonia forming a gold(III)-nitrogen derivative, an explosive product, known as, “fulminate of gold”. Reaction with Grignard reagent, RMgX in ether yields dialkyl gold(III) chloride, R2AuCl3, which may be converted readily to other dialkyl gold(III) complexes by replacement of the chloride anion by a donor ligand.
General DescriptionThe structure of gold chloride is monoclinic in nature. It sublimes at elevated temperatures.
Safety ProfileExperimental reproductive effects. Human mutation data reported. Reaction with ammonia or ammonium salts yields fulminating gold, a heat-, friction-, and impact-sensitive explosive similar to mercury and silver fulminates. See also GOLD COMPOUNDS and CHLORIDES. When heated to decomposition it emits toxic fumes of Cl-.
Gold(III) chloride Preparation Products And Raw materials
Raw materialsDiethyl ether-->GOLD
Preparation ProductsAuranofin-->Gallium-->gold-->HYDROGEN TETRABROMOAURATE (III) HYDRATE (99.9%-AU)
Tag:Gold(III) chloride(13453-07-1) Related Product Information
Choline chloride Ammonium chloride Trichlorine nitride Potassium chloride Calcium chloride Sodium chloride Polyvinyl chloride Thionyl chloride GOLD CHLORIDE Methylene Chloride LITHIUM TETRACHLOROAURATE(III) CHLOROAURIC ACID HYDRATE SODIUM TETRACHLOROAURATE(III) HYDRATE Hydrogen tetrachloroaurate(III) trihydrate POTASSIUM GOLD CHLORIDE GOLD CHLORIDE SODIUM SALT, DIHYDRATE Ammonium tetrachloroaurate GOLD CHLORIDE ACID