structure of 2-[(2-Methoxy-benzyl)-methyl-amino]-ethanol

2-[(2-Methoxy-benzyl)-methyl-amino]-ethanol

CAS No.: 100054-98-6
M. Wt: 195.25800
M. Fa: C11H17NO2
InChI Key: IRCVWAUYLSQYCW-UHFFFAOYSA-N

Names and Identifiers of 100054-98-6

CAS Number

100054-98-6

MDL Number

MFCD14646031

IUPAC Name

2-[(2-methoxyphenyl)methyl-methylamino]ethanol

InChI

InChI=1S/C11H17NO2/c1-12(7-8-13)9-10-5-3-4-6-11(10)14-2/h3-6,13H,7-9H2,1-2H3

InChIKey

IRCVWAUYLSQYCW-UHFFFAOYSA-N

Canonical SMILES

COC1=CC=CC=C1CN(C)CCO

UNSPSC Code

12352100

Physical and chemical properties of 100054-98-6

Exact Mass

195.12600

LogP

1.11930

Molecular Formula

C11H17NO2

Molecular Weight

195.25800

PSA

32.70000

Safety Information of 100054-98-6

Pictograms

Signal Word

Warning

Safety Data Sheet

Supports customized editing of SDS information and downloading in PDF documents.

Applications of 100054-98-6

2-[(2-Methoxy-benzyl)-methyl-amino]-ethanol has several notable applications:

  • In Chemistry: It serves as an intermediate in synthesizing various organic compounds.
  • In Biology: The compound is studied for its potential biological activities and interactions with biomolecules.
  • In Industry: It is utilized in producing specialty chemicals and materials, enhancing the efficiency of various chemical processes.

Interaction Studies of 100054-98-6

Studies on the interactions of 2-[(2-Methoxy-benzyl)-methyl-amino]-ethanol with biological targets are crucial for understanding its potential therapeutic effects. Research indicates that this compound may inhibit specific enzymes or interact with receptors that modulate physiological responses. Further investigation into these interactions could lead to new insights into its applications in drug design and development.

Biological Activity of 100054-98-6

Research indicates that 2-[(2-Methoxy-benzyl)-methyl-amino]-ethanol exhibits potential biological activity through its interactions with various molecular targets, including enzymes and receptors. It may act as an enzyme inhibitor, which could be valuable in drug development and therapeutic applications. The mechanisms of action often involve modulation of biochemical pathways that influence cellular functions.

Retrosynthesis analysis of 100054-98-6

  • Route#1

    Cas:109926-15-0
    Cas:100054-98-6