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Product Line: Pharmaceutical Chemicals

2,2-Diphenylglycine

CAS 3060-50-2

Molecular structure of 2,2-Diphenylglycine

CAS · 3060-50-2

01

Product Overview

2,2-Diphenylglycine is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Off-white to white powder
Purity (HPLC) 98% min
M.P 232~241 °C
Water 0.5% max
Total impurities 2.0% max
03

Applications

2,2-Diphenylglycine is a versatile chiral amino acid derivative widely used in chemical synthesis, pharmaceutical intermediates, and fine chemical development. It is commonly utilized as a key building block in the preparation of non-proteinogenic amino acids, peptide-based molecules, and chiral ligands, making it valuable in asymmetric synthesis and stereochemical control. The compound is frequently incorporated into pharmaceutical research for synthesizing active pharmaceutical ingredients, intermediates, and candidate drug molecules, particularly those requiring high enantioselectivity or structural rigidity. In asymmetric catalysis, 2,2-Diphenylglycine serves as a precursor to chiral auxiliaries and catalysts that guide complex reactions such as aldol reactions, Michael additions, and reductions. It also plays a role in specialty materials and functionalized organic compounds due to its stable diphenyl structure, which contributes to enhanced aromaticity and steric effects in molecular design. Additionally, it is used in academic and industrial laboratories for method development, stereochemical studies, and optimization of chiral synthetic routes, supporting innovation across medicinal chemistry, polymer chemistry, and advanced organic synthesis.

04

Benefits

The primary benefit of 2,2-Diphenylglycine lies in its structural features, which offer strong steric hindrance and electronic stability. This makes it valuable for controlling stereochemistry in complex reactions and improving yields of enantiomerically enriched products. Its stability and relative ease of handling contribute to reliable performance in multi-step synthesis, reducing the risk of degradation or side reactions. The aromatic rings enhance rigidity, allowing for predictable behavior in chiral auxiliary applications and facilitating selective bond formation. Its versatility across pharmaceutical, catalyst, and materials development enables researchers and manufacturers to streamline synthesis workflows and design more efficient, targeted chemical transformations. The compound also provides consistent performance across different reaction conditions, supporting reproducibility in R&D and industrial settings.

05

Conclusion

2,2-Diphenylglycine is a valuable synthetic intermediate and chiral tool widely used in pharmaceutical development, advanced organic synthesis, and research applications. Its structural characteristics offer strong advantages for achieving stereochemical control, enhancing reaction selectivity, and improving overall efficiency in chemical processes. These combined qualities make it a useful and dependable building block for a broad range of scientific and industrial applications.

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