Cas no 2228290-27-3 ((1,3-dimethylcyclobutyl)methanamine hydrochloride, Mixture of diastereomers)

(1,3-Dimethylcyclobutyl)methanamine hydrochloride is a chiral amine derivative supplied as a mixture of diastereomers. This compound is of interest in pharmaceutical and organic synthesis due to its rigid cyclobutane backbone, which can influence stereochemical outcomes in reactions. The hydrochloride salt form enhances stability and solubility, facilitating handling and storage. The presence of diastereomers allows for exploration of stereoselective transformations, making it valuable for medicinal chemistry research and asymmetric synthesis. Its structural features may also contribute to unique binding properties in bioactive molecule development. The product is typically characterized by HPLC, NMR, and mass spectrometry to ensure purity and diastereomeric ratio consistency.
(1,3-dimethylcyclobutyl)methanamine hydrochloride, Mixture of diastereomers structure
2228290-27-3 structure
Product Name:(1,3-dimethylcyclobutyl)methanamine hydrochloride, Mixture of diastereomers
CAS No:2228290-27-3
MF:C7H16ClN
MW:149.66
MDL:MFCD31666608
CID:5093806
PubChem ID:137964764
Update Time:2025-11-02

(1,3-dimethylcyclobutyl)methanamine hydrochloride, Mixture of diastereomers Chemical and Physical Properties

Names and Identifiers

    • (1,3-dimethylcyclobutyl)methanamine hydrochloride
    • (1,3-dimethylcyclobutyl)methanamine;hydrochloride
    • starbld0033385
    • (1,3-dimethylcyclobutyl)methanamine hydrochloride, Mixture of diastereomers
    • MDL: MFCD31666608
    • Inchi: 1S/C7H15N.ClH/c1-6-3-7(2,4-6)5-8;/h6H,3-5,8H2,1-2H3;1H
    • InChI Key: OFMXHSPKXQXDEH-UHFFFAOYSA-N
    • SMILES: NCC1(C)CC(C)C1.Cl

Computed Properties

  • Hydrogen Bond Donor Count: 2
  • Hydrogen Bond Acceptor Count: 1
  • Heavy Atom Count: 9
  • Rotatable Bond Count: 1
  • Complexity: 82.4
  • Topological Polar Surface Area: 26

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Additional information on (1,3-dimethylcyclobutyl)methanamine hydrochloride, Mixture of diastereomers

Comprehensive Overview of (1,3-dimethylcyclobutyl)methanamine hydrochloride, Mixture of diastereomers (CAS No. 2228290-27-3)

(1,3-dimethylcyclobutyl)methanamine hydrochloride is a specialized organic compound with significant potential in pharmaceutical and chemical research. This compound, identified by its CAS number 2228290-27-3, is a mixture of diastereomers, which adds complexity and versatility to its applications. The presence of both diastereomers often enhances its utility in stereoselective synthesis and drug development, making it a subject of interest for researchers and industry professionals.

The molecular structure of (1,3-dimethylcyclobutyl)methanamine hydrochloride features a cyclobutane ring substituted with two methyl groups at the 1 and 3 positions, along with an aminomethyl functional group. The hydrochloride salt form improves its stability and solubility, facilitating its use in various experimental and industrial processes. Researchers frequently explore its role as a building block in organic synthesis, particularly in the development of novel therapeutic agents and bioactive molecules.

One of the key advantages of this compound is its potential application in central nervous system (CNS) drug discovery. Given the rising global focus on mental health and neurological disorders, compounds like (1,3-dimethylcyclobutyl)methanamine hydrochloride are increasingly studied for their ability to modulate neurotransmitter systems. Its structural features make it a candidate for targeting receptors involved in conditions such as depression, anxiety, and neurodegenerative diseases.

In addition to pharmaceutical applications, (1,3-dimethylcyclobutyl)methanamine hydrochloride is also valuable in material science. Its unique cyclobutane framework can contribute to the design of polymers and advanced materials with tailored properties. The compound’s diastereomeric mixture allows for fine-tuning of material characteristics, such as thermal stability and mechanical strength, which are critical in industries ranging from aerospace to electronics.

The synthesis and purification of (1,3-dimethylcyclobutyl)methanamine hydrochloride require precise control over reaction conditions to ensure high diastereomeric purity. Advanced chromatographic techniques, such as HPLC and chiral separation methods, are often employed to isolate the desired diastereomers. This level of precision underscores the compound’s importance in high-value research and development projects.

From a market perspective, the demand for specialty amines like (1,3-dimethylcyclobutyl)methanamine hydrochloride is growing, driven by advancements in drug discovery and material innovation. Companies specializing in fine chemicals and custom synthesis are increasingly offering this compound to meet the needs of academic and industrial researchers. Its CAS number 2228290-27-3 serves as a unique identifier, ensuring accurate sourcing and regulatory compliance.

Environmental and safety considerations are paramount when handling (1,3-dimethylcyclobutyl)methanamine hydrochloride. While it is not classified as a hazardous material, standard laboratory precautions, such as the use of personal protective equipment (PPE) and proper ventilation, should always be followed. Researchers are encouraged to consult safety data sheets (SDS) and adhere to best practices to minimize risks during experimentation.

Looking ahead, the versatility of (1,3-dimethylcyclobutyl)methanamine hydrochloride positions it as a compound of enduring interest. As the scientific community continues to explore new frontiers in drug development and material science, this diastereomeric mixture is likely to play a pivotal role in innovative applications. Its unique structural attributes and broad utility make it a valuable asset for researchers aiming to push the boundaries of chemical and pharmaceutical science.

For those seeking detailed technical data or procurement options for (1,3-dimethylcyclobutyl)methanamine hydrochloride (CAS No. 2228290-27-3), reputable chemical suppliers and research databases offer comprehensive resources. Staying informed about the latest research and market trends will ensure optimal utilization of this compound in cutting-edge projects.

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