Cas no 2007921-25-5 (TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE)

TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE is a spirocyclic compound featuring a hydroxyl group and a tert-butyl ester moiety. Its rigid spiro[5.5]undecane framework enhances structural stability, making it valuable in medicinal chemistry and drug development. The hydroxyl group provides a reactive handle for further functionalization, while the tert-butyl ester offers protection for the carboxylate functionality, enabling selective deprotection under mild conditions. This compound is particularly useful as an intermediate in the synthesis of bioactive molecules, including protease inhibitors and other pharmacologically active agents. Its well-defined stereochemistry and purity make it suitable for high-precision applications in organic synthesis and pharmaceutical research.
TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE structure
2007921-25-5 structure
Product Name:TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE
CAS No:2007921-25-5
MF:C15H27NO3
MW:269.379784822464
CID:5267736
Update Time:2026-03-09

TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE Chemical and Physical Properties

Names and Identifiers

    • TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE
    • Inchi: 1S/C15H27NO3/c1-14(2,3)19-13(18)16-10-4-7-15(11-16)8-5-12(17)6-9-15/h12,17H,4-11H2,1-3H3
    • InChI Key: ZXJNDDKURHAXLP-UHFFFAOYSA-N
    • SMILES: C1C2(CCC(O)CC2)CCCN1C(OC(C)(C)C)=O

TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE Pricemore >>

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Additional information on TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE

TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE and Its Significance in Modern Chemical Research

The compound with the CAS number 2007921-25-5, known as TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE, represents a fascinating molecule in the realm of organic chemistry and pharmaceutical research. This spirocyclic compound, featuring a unique azaspiro framework, has garnered attention due to its structural complexity and potential biological activities. The tert-butyl and hydroxy functional groups contribute to its reactivity and make it a valuable scaffold for further chemical modifications.

In recent years, the study of spirocyclic compounds has seen significant advancements, particularly in the development of novel pharmacophores. The spirocyclic core in TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE imparts rigidity to the molecule, which can enhance binding affinity and selectivity in biological targets. This feature has made it a subject of interest for researchers exploring new drug candidates.

One of the most compelling aspects of this compound is its potential application in the field of medicinal chemistry. The hydroxy group provides a site for hydrogen bonding interactions, which are crucial for molecule-receptor binding. Additionally, the tert-butyl group can serve as a steric anchor, helping to stabilize the conformation of the molecule in complex biological systems. These properties make TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE an attractive candidate for further exploration in drug design.

Recent studies have demonstrated the utility of spirocyclic compounds in modulating various biological pathways. For instance, derivatives of azaspiro compounds have shown promise in inhibiting enzymes involved in inflammation and cancer progression. The structural motif present in TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE aligns well with these findings, suggesting that it may exhibit similar bioactivities. Further research is warranted to explore its potential therapeutic applications.

The synthesis of TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE presents unique challenges due to its complex structure. However, advances in synthetic methodologies have made it increasingly feasible to access such molecules. Techniques such as transition metal-catalyzed reactions and asymmetric synthesis have been particularly useful in constructing the spirocyclic core. These advancements not only facilitate the preparation of this compound but also open up possibilities for designing analogs with tailored properties.

In conclusion, TERT-BUTYL 9-HYDROXY-2-AZASPIRO[5.5]UNDECANE-2-CARBOXYLATE (CAS no. 2007921-25-5) is a structurally intriguing compound with significant potential in pharmaceutical research. Its unique azaspiro framework, combined with functional groups that enhance bioactivity, makes it a valuable scaffold for drug discovery. As our understanding of spirocyclic chemistry continues to evolve, compounds like this are likely to play an increasingly important role in the development of novel therapeutics.

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