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139361-84-5 ,Decanoyl-N-hydroxyethylglucamide,HEGA-10

139361-84-5 ,Decanoyl-N-hydroxyethylglucamide,HEGA-10,
Cas:139361-84-5
C18H37NO7 / 379.49

Decanoyl-N-hydroxyethylglucamide,HEGA-10

N-癸酰-N-(2-羟基乙基)葡萄糖胺,

N-((2-Hydroxyethyl)glycyl)decanamide, also known as HEGDA, is a synthetic compound used extensively in scientific experiments due to its diverse properties. This paper aims to provide a comprehensive overview of HEGDA, including its definition, physical and chemical properties, synthesis and characterization, analytical methods, biological properties, toxicity and safety in scientific experiments, applications in scientific experiments, current state of research, potential implications in various fields of research and industry, limitations and future directions.

Definition and Background:

N-((2-Hydroxyethyl)glycyl)decanamide is a synthetic compound made up of an amide group, decanoic acid, glycine, and 2-hydroxyethyl. N-((2-Hydroxyethyl)glycyl)decanamide is used as an intermediate in organic synthesis and in the manufacture of resins and elastomers. It has been studied for its potential use as a material for controlled drug release.

Synthesis and Characterization:

N-((2-Hydroxyethyl)glycyl)decanamide can be synthesized through the reaction of decanoic acid with glycine and 2-hydroxyethylamine. The resulting product is then purified through recrystallization. N-((2-Hydroxyethyl)glycyl)decanamide can be characterized using various analytical techniques, including NMR spectroscopy, IR spectroscopy, and mass spectrometry.

Analytical Methods:

NMR spectroscopy can be used to determine the structure and composition of N-((2-Hydroxyethyl)glycyl)decanamide. IR spectroscopy can be used to analyze the functional groups present in N-((2-Hydroxyethyl)glycyl)decanamide. Mass spectrometry can be used to measure the mass and molecular weight of N-((2-Hydroxyethyl)glycyl)decanamide.

Biological Properties:

N-((2-Hydroxyethyl)glycyl)decanamide has been shown to exhibit anti-inflammatory properties in vitro, and it has also been studied for its potential as a material for controlled drug release. However, further research is needed to fully understand N-((2-Hydroxyethyl)glycyl)decanamide's biological properties.

Toxicity and Safety in Scientific Experiments:

N-((2-Hydroxyethyl)glycyl)decanamide is considered to be low in toxicity, and it has been shown to be safe for use in scientific experiments. However, it is important to handle N-((2-Hydroxyethyl)glycyl)decanamide with care and to follow appropriate safety protocols.

Applications in Scientific Experiments:

N-((2-Hydroxyethyl)glycyl)decanamide is used as an intermediate in organic synthesis and in the manufacture of resins and elastomers. It has also been studied for its potential use as a material for controlled drug release.

Current State of Research:

There is ongoing research into the potential applications of N-((2-Hydroxyethyl)glycyl)decanamide, particularly in the fields of materials science and drug delivery.

Potential Implications in Various Fields of Research and Industry:

N-((2-Hydroxyethyl)glycyl)decanamide has the potential to be used in the development of new materials and in the pharmaceutical industry for controlled drug release.

Limitations and Future Directions:

Further research is needed to fully understand N-((2-Hydroxyethyl)glycyl)decanamide's biological properties and potential applications. Future research could include exploring the use of N-((2-Hydroxyethyl)glycyl)decanamide in biomedical applications and investigating the use of N-((2-Hydroxyethyl)glycyl)decanamide in the development of new materials with unique properties.

CAS Number139361-84-5
Product NameN-((2-Hydroxyethyl)glycyl)decanamide
IUPAC NameN-[2-(2-hydroxyethylamino)acetyl]decanamide
Molecular Formula

C18H37NO7

Molecular Weight379.49 g/mol
InChIInChI=1S/C14H28N2O3/c1-2-3-4-5-6-7-8-9-13(18)16-14(19)12-15-10-11-17/h15,17H,2-12H2,1H3,(H,16,18,19)
InChI KeyMODDGVIIHAOFMU-UHFFFAOYSA-N
SMILESCCCCCCCCCC(=O)NC(=O)CNCCO
Canonical SMILESCCCCCCCCCC(=O)NC(=O)CNCCO


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