Product
Supplier
Encyclopedia
Inquiry
Home > Encyclopedia > Cobalt cyanide (Co(CN)3)

Cobalt cyanide (Co(CN)3)

Cobalt cyanide (Co(CN)3) structure

Cobalt cyanide (Co(CN)3) 

structure
  • CAS No:

    14965-99-2

  • Formula:

    C3CoN3

  • Chemical Name:

    Cobalt cyanide (Co(CN)3)

  • Synonyms:

    Cobalt cyanide (Co(CN)3);Cobalt tricyanide

Cobalt cyanide (Co(CN)3) Basic Attributes

136.9854

136.942

239-039-5

Characteristics

71.4

Cobalt cyanide (Co(CN)3) Use and Manufacturing

Uses

The potential applications of cobalt cyanide span multiple industries, including electrochemistry, catalysis, and materials science. In the field of electrochemistry, the compound has been studied for use in rechargeable batteries, especially in the development of high energy density cathode materials. The REDOX activity of cobalt centers and the ability of cyanide ligands to promote electron transfer make cobalt cyanide a promising candidate for energy storage applications. In the field of catalysis, the properties of cobalt cyanide make it excellent in organic synthesis, especially for those reactions that require the participation of specific metal ions. Its ability to form complexes with other metal ions allows cobalt cyanide to be used as a precursor to help design and build highly efficient catalysts for a variety of chemical transformations, such as carbon-hydrogen bond activation, hydrogen gas activation, and carbon dioxide reduction reactions. In materials science, the potential of cobalt cyanide lies in its selectivity and coordination ability for metal ions, which makes it attractive in the separation and purification of metal ions, as well as in the preparation of novel functional materials. For example, it may be used to prepare high-performance magnetic materials, photoelectric materials, or electrode materials for supercapacitors. In addition, due to its hydrolysis resistance and chemical stability, cobalt cyanide can also be used to develop coatings or films that are stable under extreme environmental conditions. However, although cobalt cyanide shows many potential applications, its use is also accompanied by the potential toxicity of cyanide, which requires strict safety management and handling measures in practical applications. Therefore, future research needs to not only explore how to maximize its chemical advantages, but also focus on strategies to reduce its environmental risks in order to achieve its widespread application under sustainability and environmental protection requirements. In addition, cobalt cyanide has applications in the field of catalysis, where it can be used as a precursor for the synthesis of more complex cobalt-based catalysts. These catalysts can be used for a wide range of chemical transformations, such as hydrogenation, oxidation, and coupling reactions, contributing to the advancement of various industrial processes. In materials science, cobalt cyanide has been explored for potential uses in the manufacture of functional materials, including pigments, sensors, and optics. The compound's unique optical properties, combined with its stability and ability to form complexes, make it a common building block for the development of advanced materials with customized properties. As research and development in the field of inorganic chemistry continues to evolve, the application of cobalt cyanide is likely to expand, meeting the growing demand for innovative solutions in various industries and contributing to the advancement of scientific knowledge.

Cobalt cyanide (Co(CN)3): INACTIVE

Computed Properties

Molecular Weight:136.99
Hydrogen Bond Acceptor Count:6
Exact Mass:136.942416
Monoisotopic Mass:136.942416
Topological Polar Surface Area:71.4
Heavy Atom Count:7
Complexity:53.2
Covalently-Bonded Unit Count:4
Compound Is Canonicalized:Yes

Scan the QR Code to Share

Feedback & Suggestions
Send Message

Thank you for your feedback. If you require further assistance, please contact us by email at info@echemi.com or call us at +86-532-55729510.