Cas no 21420-35-9 (Cyanamide-13C)

Cyanamide-13C is a stable isotope-labeled variant of cyanamide, where the carbon atom is replaced by the 13C isotope. This compound is primarily utilized as a tracer in metabolic studies and reaction mechanisms, enabling precise tracking of carbon pathways in chemical and biological systems. Its isotopic purity ensures minimal interference in spectroscopic analyses, such as NMR and mass spectrometry, enhancing data accuracy. Cyanamide-13C is also employed in the synthesis of labeled pharmaceuticals and agrochemicals, facilitating research into their distribution and degradation. The compound’s stability and well-defined labeling make it a valuable tool for advanced research in organic chemistry, biochemistry, and environmental science.
Cyanamide-13C structure
Cyanamide-13C structure
Product Name:Cyanamide-13C
CAS No:21420-35-9
MF:CH2N2
MW:43.0326342582703
CID:249734
PubChem ID:45038720
Update Time:2025-11-05

Cyanamide-13C Chemical and Physical Properties

Names and Identifiers

    • Cyanamide-13C (8CI,9CI)
    • Cyanamide-13C
    • aminoformonitrile
    • Cyanamide-13C solution
    • 21420-35-9
    • (~13~C)Cyanamide
    • J-014044
    • DTXSID20661874
    • AKOS030241782
    • Inchi: 1S/CH2N2/c2-1-3/h2H2/i1+1
    • InChI Key: XZMCDFZZKTWFGF-OUBTZVSYSA-N
    • SMILES: N[13C]#N

Computed Properties

  • Exact Mass: 43.02520
  • Monoisotopic Mass: 43.025
  • Isotope Atom Count: 1
  • Hydrogen Bond Donor Count: 1
  • Hydrogen Bond Acceptor Count: 2
  • Heavy Atom Count: 3
  • Rotatable Bond Count: 0
  • Complexity: 29.3
  • Covalently-Bonded Unit Count: 1
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Topological Polar Surface Area: 49.8A^2
  • XLogP3: -0.3

Experimental Properties

  • Density: 1.0±0.1 g/cm3
  • Melting Point: 45-46°C
  • Boiling Point: Not available
  • Flash Point: Not available
  • Refractive Index: 1.397
  • Solubility: DMSO (Slightly), Methanol (Slightly)
  • PSA: 49.81000
  • LogP: 0.12648
  • Vapor Pressure: Not available

Cyanamide-13C Pricemore >>

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Additional information on Cyanamide-13C

Cyanamide-13C (CAS No. 21420-35-9): An Overview of Its Properties, Applications, and Recent Research

Cyanamide-13C (CAS No. 21420-35-9) is a stable isotope-labeled compound that has gained significant attention in various scientific and industrial applications. This compound, also known as 13C-labeled cyanamide, is a derivative of cyanamide where one of the carbon atoms is replaced with the stable isotope 13C. The use of isotopically labeled compounds like Cyanamide-13C is crucial in fields such as biochemistry, pharmaceutical research, and environmental science due to their ability to provide detailed insights into metabolic pathways and reaction mechanisms.

Cyanamide-13C is a white crystalline solid with a molecular formula of C2H2N2. It has a molecular weight of 66.04 g/mol and a melting point of approximately 57°C. The compound is soluble in water and several organic solvents, making it versatile for various experimental setups. The presence of the 13C isotope does not alter the chemical properties of the molecule significantly but provides a distinct advantage in analytical techniques such as nuclear magnetic resonance (NMR) spectroscopy and mass spectrometry (MS).

In biochemistry, Cyanamide-13C is used to study nitrogen fixation processes in plants and microorganisms. Nitrogen fixation is a critical biological process where atmospheric nitrogen (N2) is converted into ammonia (NH3) or other forms that can be utilized by living organisms. By incorporating Cyanamide-13C into these studies, researchers can trace the fate of nitrogen atoms through various metabolic pathways, providing valuable insights into the efficiency and regulation of nitrogen fixation.

In pharmaceutical research, Cyanamide-13C plays a vital role in drug metabolism studies. Drug metabolism involves the biotransformation of drugs into metabolites, which can affect the drug's efficacy and safety. By using Cyanamide-13C-labeled compounds, scientists can track the metabolic pathways of drugs in vitro and in vivo, helping to identify potential metabolic intermediates and byproducts. This information is crucial for optimizing drug design and predicting potential side effects.

Cyanamide-13C also finds applications in environmental science, particularly in the study of soil and water contamination. Environmental pollutants often undergo biodegradation processes where microorganisms break down the contaminants into less harmful substances. By using Cyanamide-13C-labeled compounds, researchers can monitor the biodegradation pathways and assess the effectiveness of remediation strategies.

Recent research has highlighted the potential of Cyanamide-13C in advanced analytical techniques. For instance, a study published in the Journal of Chromatography A demonstrated the use of liquid chromatography-mass spectrometry (LC-MS) to analyze Cyanamide-13C-labeled metabolites in plant tissues. The researchers found that this approach provided high sensitivity and accuracy in detecting low-abundance metabolites, which are often challenging to quantify using conventional methods.

In another study published in Analytical Chemistry, scientists used NMR spectroscopy to investigate the interaction between Cyanamide-13C strong>-labeled compounds and metal ions in aqueous solutions. The results showed that the presence of specific metal ions significantly affected the chemical shift values of the labeled compounds, providing insights into metal-ligand interactions at a molecular level.

The versatility and stability of Cyanamide-13C strong> make it an invaluable tool for researchers across multiple disciplines. Its ability to provide detailed isotopic labeling without altering chemical properties ensures that it remains a preferred choice for advanced analytical techniques and fundamental research studies.

In conclusion, Cyanamide-13C (CAS No. 21420-35-9) strong> continues to be a critical compound in various scientific fields due to its unique properties and applications. As research methodologies advance, the demand for isotopically labeled compounds like Cyanamide-13C strong> is expected to grow, driving further innovations and discoveries.

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