Introduction of CAS:1232407-29-2 | 2-Bromo-3-chlorobenzyl alcohol
2-bromo-3-chlorobenzyl alcohol is an organic compound whose chemical structure consists of a bromine atom and a chlorine atom attached to positions 2 and 3 of the benzyl alcohol molecule. This compound may have some uses in the field of organic synthesis, such as:
Synthetic intermediates: 2-bromo-3-chlorobenzyl alcohol may be used as an intermediate in organic synthesis reactions to participate in the synthesis of other organic compounds, such as drugs, dyes, pesticides, etc.
Functional group protection: It may be used as a raw material for functional group protection reagents to protect other reactive groups by reacting with specific functional groups to form protective groups.
Specification of CAS:1232407-29-2 | 2-Bromo-3-chlorobenzyl alcohol
|
ITEMS |
SPECIFICATION |
|
Molecular Formula |
C7H6BrClO |
|
Molecular Weigh |
221.48 |
|
Storage condition |
Inert atmosphere,Room Temperature |
|
Purity |
97% |
Research Application of CAS:1232407-29-2 | 2-Bromo-3-chlorobenzyl alcohol
Enantiomeric Synthesis : A study by Zhang et al. (2014) detailed the synthesis of enantiomerically pure diarylethanes, starting from related chemical compounds. This process is significant for creating optically pure enantiomers with high enantiomeric purities, essential in pharmaceuticals and other applications (Zhang et al., 2014).
Biocatalytic Synthesis : Chen et al. (2021) utilized a water-cyclohexane liquid-liquid system with recombinant E. coli as a whole-cell catalyst for synthesizing S-(4-chlorophenyl)-(pyridin-2-yl) methanol. This method highlights a green, economical, and efficient synthesis pathway (Chen et al., 2021).
Photochemical Decomposition : Eriksson et al. (2004) investigated the photochemical degradation of polybrominated diphenyl ethers (PBDEs) in methanol/water solutions. Understanding the degradation behavior of such compounds is vital for assessing their environmental impact (Eriksson et al., 2004).
Selective Bromination : Shirinian et al. (2012) studied the bromination of 2,3-diarylcyclopent-2-en-1-ones, which is crucial for the synthesis of bromo-substituted cyclopentenones, important in organic synthesis and for preparing various substances (Shirinian et al., 2012).
Influence on Lipid Dynamics : Nguyen et al. (2019) demonstrated that methanol significantly impacts lipid dynamics, especially in biological and synthetic membranes. This study is crucial for understanding how solvents like methanol influence membrane properties (Nguyen et al., 2019).
Antibacterial Properties : Li (2009) synthesized a compound from a methanol solution and examined its antibacterial activity. This study contributes to the development of new antibacterial agents (Li, 2009).



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