3H-Purin-6-amine 1-oxide | CAS No. 700-02-7

3H-Purin-6-amine 1-oxide

Basic Information

CAS Number

700-02-7

Molecular Formula

C5H5N5O

Molecular Weight

151.13 g/mol

AD

Basic Physical Properties

Melting Point

302°C (rough estimate)

Boiling Point

273.11°C (rough estimate)

Density

1.4456 (rough estimate)

Refractive Index

1.9000 (estimate)

C1=NC2=C(N1)N=C[N+](=C2N)[O-]

InChI

InChI=1S/C5H5N5O/c6-4-3-5(8-1-7-3)9-2-10(4)11/h1-2H,6H2,(H,7,8,9)

InChIKey

TXTRWVWGYHUIAI-UHFFFAOYSA-N

LogP

0.54980

Complexity

215

Synonyms & References

English

  • 9H-Purin-6-amine,1-oxide
  • 1-hydroxypurin-6-amine
  • ADENINE N(1)-OXIDE MONOHYDRATE, 98
  • ADENINE-N1 -OXIDE
  • 1H-Purin-6-amine,1-oxide
  • 6-amino-1h-purin-1-ol
  • 6-aminopurin-1-ol
  • Adenine N1-oxide
  • Adenine,1-N-oxide
  • Adenine,1-oxide
  • Adenine-N-oxide

Customs Code

2933990090

FAQ

What regulatory guidelines apply to 3H-Purin-6-amine 1-oxide (CAS: 700-02-7)?

3H-Purin-6-amine 1-oxide (CAS: 700-02-7) falls under the scope of the Globally Harmonized System of Classification and Labelling of Chemicals (GHS). In the European Union, it must comply with REACH regulations. For commercial and industrial use, FDA and EPA requirements also apply. Manufacturers and importers must ensure proper documentation, labeling, and handling to meet all regulatory standards.

Are there alternatives to 3H-Purin-6-amine 1-oxide in synthesis (CAS: 700-02-7)?

Yes, there are alternative reagents and compounds that can be used in synthesis. For example, similar purine derivatives like 6-mercaptopurine or 6-methoxypurine can serve as alternatives. The choice of alternative depends on the specific application, such as drug synthesis or research. These alternatives offer similar functionality but with different chemical properties and reactivity.

What is the market or research trend for 3H-Purin-6-amine 1-oxide (CAS: 700-02-7)?

The market for 3H-Purin-6-amine 1-oxide (CAS: 700-02-7) is driven by its applications in drug development, particularly as a precursor in the synthesis of purine-based drugs. Research trends indicate an increasing focus on developing more efficient and environmentally friendly synthesis methods. Additionally, there is growing interest in exploring its biological activities and potential therapeutic applications.

How should waste containing 3H-Purin-6-amine 1-oxide (CAS: 700-02-7) be handled?

Waste containing 3H-Purin-6-amine 1-oxide (CAS: 700-02-7) should be collected in appropriate containers and disposed of through professional waste disposal services. Incineration is a common method for disposal, ensuring complete destruction and minimizing environmental impact. Environmental protection measures include proper containment to prevent leakage and adherence to local regulations for hazardous waste management.

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