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Allyl N-(2-aminoethyl)carbamate

  CAS No.: 223741-66-0   Cat No.: BADC-01922 4.5  

Allyl N-(2-aminoethyl)carbamate is an amine-containing ADC intermediate suitable for selective functionalization. Its allyl group enables further click or thiol-ene reactions for modular linker design.

Allyl N-(2-aminoethyl)carbamate

Structure of 223741-66-0

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ADC Linker
Molecular Formula
C6H12N2O2
Molecular Weight
144.17

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Synonyms
Allyl (2-aminoethyl)carbamate; Carbamic acid, N-(2-aminoethyl)-, 2-propen-1-yl ester
IUPAC Name
prop-2-enyl N-(2-aminoethyl)carbamate
Density
1.039±0.06 g/cm3
Appearance
Colorless to light yellow Liquid
Boiling Point
248.6±33.0 °C at 760 mmHg

Allyl N-(2-aminoethyl)carbamate is a versatile chemical compound with several applications across different fields. Here are some key applications of Allyl N-(2-aminoethyl)carbamate:

Pharmaceutical Synthesis: Allyl N-(2-aminoethyl)carbamate is used as an intermediate in the synthesis of various pharmaceutical compounds. It can be employed to produce drugs that require carbamate structures, which are essential for their bioactivity. This compound helps in the efficient and targeted synthesis of therapeutically relevant molecules.

Chemical Research: In chemical research, Allyl N-(2-aminoethyl)carbamate serves as a valuable reagent for studying reaction mechanisms and developing new synthetic methodologies. It can act as a precursor in the formation of other functional groups, facilitating diverse chemical transformations. Researchers leverage this compound to explore novel chemical reactions and optimize synthetic routes.

Agricultural Chemicals: Allyl N-(2-aminoethyl)carbamate can be used in the formulation of certain pesticides and herbicides. Its ability to interact with enzymes and disrupt biological pathways makes it a candidate for developing compounds that protect crops from pests and diseases. This contributes to more effective and sustainable agricultural practices.

Materials Science: In materials science, Allyl N-(2-aminoethyl)carbamate is utilized for the modification of polymers and the development of advanced materials. By incorporating this compound into polymer matrices, researchers can create materials with enhanced properties, such as improved thermal stability and mechanical strength. These materials have potential applications in various industries, including electronics and automotive.

The molarity calculator equation

Mass (g) = Concentration (mol/L) × Volume (L) × Molecular Weight (g/mol)

The dilution calculator equation

Concentration (start) × Volume (start) = Concentration (final) × Volume (final)

This equation is commonly abbreviated as: C1V1 = C2V2

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