3-(2-Methoxyethoxy)-1-propanamine | CAS No. 54303-31-0

3-(2-Methoxyethoxy)-1-propanamine

Basic Information

CAS Number

54303-31-0

Molecular Formula

C6H15NO2

Molecular Weight

133.19 g/mol

AD

Basic Physical Properties

Boiling Point

79 ºC (12 Torr)

Density

0.925±0.06 g/cm3 (20 ºC 760 Torr),

Flash Point

69.4±27.7 ºC,

Refractive Index

1.42

COCCOCCCN

InChI

InChI=1S/C6H15NO2/c1-8-5-6-9-4-2-3-7/h2-7H2,1H3

InChIKey

PWGVOCGNHYMDLS-UHFFFAOYSA-N

LogP

-0.0017999999999999128

Topological Polar Surface Area

44.480000000000004 Ų

Hydrogen Bond Donor/Acceptor

2 / 3

Complexity

50.3

Safety Information

View Safety Information

Hazard Statement

H315 Causes skin irritation
Skin corrosion/irritation
H319 Causes serious eye irritation
Serious eye damage/eye irritation
H335 May cause respiratory irritation
Specific target organ toxicity, single exposure; Respiratory tract irritation

Synonyms & References

English

  • 1-Propanamine,3-(2-methoxyethoxy)-
  • NS00033036
  • 3-(methoxyethoxy)propylamine
  • CS-0150163
  • 54303-31-0
  • MFCD00014832
  • 3-(2-methoxy-eth-oxy)-1-aminopropane
  • BT-0154
  • 71782-42-8
  • 3-(2-Methoxyethoxy)-1-propylamine
  • 1-Propanamine, 3-(2-methoxyethoxy)-
  • 1-(3-aminopropoxy)-2-methoxyethane
  • FT-0659159
  • 3-2-Methoxyethoxy-1-propanamine
  • A830091
  • potassiumhexafluoroarsenate
  • 3-(2-Methoxyethoxy)propylamine
  • W-111087
  • SCHEMBL1280849
  • 3-(2-methoxyethoxy)propan-1-amine
  • PWGVOCGNHYMDLS-UHFFFAOYSA-N
  • Methoxyethoxypropylamine
  • DTXSID0068941
  • A10954
  • UZ2V9LCN9S
  • 3-(2-methoxyethoxy)-1-propanamine
  • EINECS 259-082-3
  • 3-(2'-methoxy)-ethoxy propylamine
  • EN300-14407
  • AKOS000201112
  • 3-(2-methoxyethoxy)propylamine

MDL Number

MFCD00014832

Customs Code

2922199090

FAQ

What regulatory guidelines apply to 3-(2-Methoxyethoxy)-1-propanamine (CAS: 54303-31-0)?

3-(2-Methoxyethoxy)-1-propanamine (CAS: 54303-31-0) is subject to various regulatory guidelines. In the European Union, it falls under the REACH regulation, requiring manufacturers and importers to register substances above one tonne per year. Globally, it is classified under the United Nations' GHS system, which categorizes it based on its health and environmental hazards. Additionally, the FDA and EPA may have specific requirements related to its import, use, and disposal, particularly in the context of pharmaceuticals and environmental safety.

Are there alternatives to 3-(2-Methoxyethoxy)-1-propanamine (CAS: 54303-31-0) in synthesis?

In the synthesis of compounds similar to 3-(2-Methoxyethoxy)-1-propanamine (CAS: 54303-31-0), there are several alternatives that can be used. Common substitutes include 2-Methoxyethanolamine and other 1-propanamines with different substituents. These alternatives may offer similar functionalities but with varying reactivity and solubility, making them suitable for specific applications depending on the desired properties and synthesis conditions.

What is the market or research trend for 3-(2-Methoxyethoxy)-1-propanamine (CAS: 54303-31-0)?

The market for 3-(2-Methoxyethoxy)-1-propanamine (CAS: 54303-31-0) has shown steady growth, particularly in the pharmaceutical and personal care industries. Research trends indicate increasing interest in its use as a precursor for active pharmaceutical ingredients (APIs) and as a functional group in drug synthesis. Additionally, there is ongoing exploration of its role in developing new materials and chemical intermediates, driven by its unique chemical properties and potential applications in various sectors.

How should waste containing 3-(2-Methoxyethoxy)-1-propanamine (CAS: 54303-31-0) be handled?

Waste containing 3-(2-Methoxyethoxy)-1-propanamine (CAS: 54303-31-0) should be collected and stored in appropriate containers to prevent spills and leaks. Before disposal, it is essential to neutralize any acidic or basic components and ensure it is decontaminated if necessary. For safe disposal, it is recommended to consult a hazardous waste management facility or a chemical waste disposal service. Proper incineration or chemical treatment methods should be employed to ensure compliance with environmental regulations and to minimize environmental impact.

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