Shin, Jung-Ah’s team published research in Journal of Organic Chemistry in 2019 | CAS: 3395-91-3

Methyl 3-bromopropanoate(cas: 3395-91-3) belongs to bromides. Most organobromine compounds, like most organohalide compounds, are relatively nonpolar. Bromine is more electronegative than carbon (2.9 vs 2.5). Consequently, the carbon in a carbon–bromine bond is electrophilic, i.e. alkyl bromides are alkylating agents.Computed Properties of C4H7BrO2

In 2019,Journal of Organic Chemistry included an article by Shin, Jung-Ah; Kim, Jiheon; Lee, Hongsoo; Ha, Sura; Lee, Hee-Yoon. Computed Properties of C4H7BrO2. The article was titled 《Cu(OTf)2-Promoted 1,4-Addition of Alkyl Bromides to Dehydroalanine》. The information in the text is summarized as follows:

Zn/Cu(OTf)2 mediated addition of alkyl bromides to dehydroalanine (Dha) derivatives including dipeptides and tripeptides in high yields under aqueous medium was developed. This protocol allows selective and biocompatible access to various amino acid units from Dha derivatives In the experiment, the researchers used many compounds, for example, Methyl 3-bromopropanoate(cas: 3395-91-3Computed Properties of C4H7BrO2)

Methyl 3-bromopropanoate(cas: 3395-91-3) belongs to bromides. Most organobromine compounds, like most organohalide compounds, are relatively nonpolar. Bromine is more electronegative than carbon (2.9 vs 2.5). Consequently, the carbon in a carbon–bromine bond is electrophilic, i.e. alkyl bromides are alkylating agents.Computed Properties of C4H7BrO2

Referemce:
Bromide – Wikipedia,
bromide – Wiktionary