Methyl 2-phenyl-2-(pyrrolidin-1-yl)acetate CAS 100609-39-0: Applications in Research and Synthesis

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Author : Nina He
Update time : 2026-01-27 17:32:14

Methyl 2-phenyl-2-(pyrrolidin-1-yl)acetate (CAS: 100609-39-0) is a structurally well-defined organic compound featuring a phenyl-substituted acetate backbone and a pyrrolidine moiety. Owing to this combination of aromatic and nitrogen-containing heterocyclic functionalities, the compound is of interest in multiple areas of scientific research and chemical development.

 

In chemistry, this compound is primarily used as an analytical reference standard. Its well-characterized structure and reliable purity make it suitable for the identification, verification, and quantitative analysis of structurally related compounds in analytical laboratories, including forensic and academic research settings. It is often employed in method development and validation for chromatographic and spectroscopic techniques.

 

In biological research, Methyl 2-phenyl-2-(pyrrolidin-1-yl)acetate serves as a useful model compound for studying the biological activity and molecular interactions of phenyl–pyrrolidine derivatives. Such studies help researchers better understand structure–activity relationships (SAR) relevant to nitrogen-containing small molecules.

 

In the field of medicine and pharmaceutical research, the compound is investigated for its potential pharmacological properties. As an intermediate or reference structure, it supports early-stage exploration of therapeutic candidates, including assessments of metabolic behavior, binding characteristics, and bioactivity trends.

 

From an industrial perspective, this compound is used as a synthetic intermediate in the preparation of more complex organic molecules. It also functions as a reference material in quality control processes, ensuring consistency and accuracy in chemical manufacturing and research workflows.

 

Overall, Methyl 2-phenyl-2-(pyrrolidin-1-yl)acetate is a versatile research compound with applications spanning analytical chemistry, biological studies, pharmaceutical research, and industrial synthesis, highlighting its value in both academic and applied scientific contexts.

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