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Catalog Number:
29539
CAS Number:
13967-50-5
Dicianoaurato de potasio (I)
Purity:
≥99,5%
Synonym(s):
Cianuro de potasio y oro (I)
Documents
$70.00 /250 mg
Tamaño
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Product Information

Potassium dicyanoaurate(I) is a versatile compound widely utilized in various fields, particularly in the realm of analytical chemistry and materials science. This compound, also known as potassium gold cyanide, serves as a crucial precursor in the synthesis of gold nanoparticles, which are extensively applied in biomedical imaging, drug delivery, and electronic components. Its unique properties allow for the controlled reduction of gold ions, making it an essential reagent in electroplating and the production of high-purity gold coatings.

Researchers appreciate potassium dicyanoaurate(I) for its stability and ease of handling, which facilitate its use in laboratory settings. Its applications extend to the development of sensors and catalysts, where it plays a significant role in enhancing the efficiency of chemical reactions. With its ability to form complexes with various ligands, this compound opens avenues for innovative research and development in nanotechnology and surface chemistry, making it a valuable asset for professionals in these fields.

Synonyms
Cianuro de potasio y oro (I)
CAS Number
13967-50-5
Purity
≥99,5%
Molecular Formula
KAu(CN) 2
Molecular Weight
288.1
MDL Number
MFCD00011414
PubChem ID
159710
Conditions
Tienda en RT
General Information
Synonyms
Cianuro de potasio y oro (I)
CAS Number
13967-50-5
Purity
≥99,5%
Molecular Formula
KAu(CN) 2
Molecular Weight
288.1
MDL Number
MFCD00011414
PubChem ID
159710
Conditions
Tienda en RT
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Potassium dicyanoaurate(I) is widely utilized in research focused on:

  • Gold Nanoparticle Synthesis: This compound serves as a precursor in the production of gold nanoparticles, which are essential in fields like electronics, catalysis, and biomedical applications due to their unique optical and electronic properties.
  • Electrochemistry: It is used in electrochemical studies, particularly in the development of sensors and batteries, where its ability to facilitate electron transfer can enhance performance and efficiency.
  • Analytical Chemistry: This chemical plays a role in analytical techniques such as spectrophotometry, where it helps in the detection and quantification of other substances, making it valuable in quality control processes.
  • Photovoltaic Cells: Researchers utilize it in the fabrication of solar cells, as it can improve the efficiency of light absorption and conversion, contributing to advancements in renewable energy technologies.
  • Biomedical Applications: It is explored for use in drug delivery systems and imaging agents, leveraging its biocompatibility and ability to form stable complexes with various biomolecules.

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