Cas no 1019629-78-7 (N-Cyclopentyl-2-methylcyclohexan-1-amine)

N-Cyclopentyl-2-methylcyclohexan-1-amine is a cycloalkylamine derivative characterized by its unique structural features, including a cyclopentyl and a methyl-substituted cyclohexyl moiety. This compound is of interest in organic synthesis and pharmaceutical research due to its potential as a chiral building block or intermediate in the development of biologically active molecules. The presence of both cyclic and alkyl substituents enhances its steric and electronic properties, making it suitable for applications requiring tailored reactivity or stereochemical control. Its stability and well-defined structure facilitate precise modifications, supporting its utility in medicinal chemistry and asymmetric synthesis. Further studies may explore its pharmacological or catalytic potential.
N-Cyclopentyl-2-methylcyclohexan-1-amine structure
1019629-78-7 structure
Product Name:N-Cyclopentyl-2-methylcyclohexan-1-amine
CAS No:1019629-78-7
MF:C12H23N
MW:181.31772351265
CID:5048624
PubChem ID:43177387
Update Time:2025-11-02

N-Cyclopentyl-2-methylcyclohexan-1-amine Chemical and Physical Properties

Names and Identifiers

    • N-cyclopentyl-2-methylcyclohexan-1-amine
    • N-Cyclopentyl-2-methylcyclohexan-1-amine
    • Inchi: 1S/C12H23N/c1-10-6-2-5-9-12(10)13-11-7-3-4-8-11/h10-13H,2-9H2,1H3
    • InChI Key: PAQLDQOYPFVEQQ-UHFFFAOYSA-N
    • SMILES: N(C1CCCC1)C1CCCCC1C

Computed Properties

  • Hydrogen Bond Donor Count: 1
  • Hydrogen Bond Acceptor Count: 1
  • Heavy Atom Count: 13
  • Rotatable Bond Count: 2
  • Complexity: 149
  • XLogP3: 3.3
  • Topological Polar Surface Area: 12

N-Cyclopentyl-2-methylcyclohexan-1-amine Pricemore >>

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Additional information on N-Cyclopentyl-2-methylcyclohexan-1-amine

Comprehensive Guide to N-Cyclopentyl-2-methylcyclohexan-1-amine (CAS No. 1019629-78-7): Properties, Applications, and Market Insights

N-Cyclopentyl-2-methylcyclohexan-1-amine (CAS No. 1019629-78-7) is a specialized organic compound with a unique cyclic structure, combining cyclopentyl and methylcyclohexyl moieties. This amine derivative has garnered significant attention in pharmaceutical and agrochemical research due to its versatile reactivity and potential as a building block for complex molecules. The compound's molecular formula is C12H23N, with a molecular weight of 181.32 g/mol, making it an intermediate of interest in synthetic chemistry.

The structural features of N-Cyclopentyl-2-methylcyclohexan-1-amine contribute to its distinctive physicochemical properties. The cyclopentyl group introduces conformational flexibility, while the methylcyclohexyl moiety provides steric bulk, influencing the compound's solubility and reactivity profile. Researchers have noted its stability under standard conditions, with a boiling point typically above 200°C, making it suitable for various synthetic applications. Recent studies highlight its potential as a chiral auxiliary in asymmetric synthesis, particularly in the development of novel pharmaceutical intermediates.

In pharmaceutical applications, N-Cyclopentyl-2-methylcyclohexan-1-amine serves as a valuable precursor for drug discovery. Its structural motif appears in several bioactive compounds targeting neurological disorders and metabolic diseases. The compound's ability to modulate molecular interactions has made it particularly interesting for central nervous system (CNS) drug development, with researchers exploring its derivatives as potential modulators of neurotransmitter systems. Current market trends show growing demand for such specialized amine compounds in the pharmaceutical sector, driven by increased R&D investment in precision medicine.

The agrochemical industry has also shown interest in CAS 1019629-78-7 derivatives for developing novel crop protection agents. The compound's structural features may contribute to enhanced bioavailability and target specificity in plant systems. Recent patent filings indicate its potential use in creating next-generation pesticides with improved environmental profiles, aligning with the global push for sustainable agriculture solutions. Manufacturers are increasingly focusing on scalable synthesis routes for this compound to meet growing industrial demand.

From a synthetic chemistry perspective, N-Cyclopentyl-2-methylcyclohexan-1-amine presents interesting challenges and opportunities. The stereochemistry at the cyclohexyl carbon adjacent to the amine group offers possibilities for diastereoselective synthesis, while the cyclopentyl substitution influences the compound's conformational preferences. Modern catalytic amination methods have improved the efficiency of its production, with recent literature reporting optimized yields using transition metal catalysts. These advancements have made the compound more accessible for research and development purposes.

Quality control and analytical characterization of 1019629-78-7 typically involve advanced techniques such as HPLC-MS and NMR spectroscopy. The compound's purity is crucial for its applications, with pharmaceutical-grade material requiring ≥98% purity. Standard analytical protocols have been established to verify the identity and assess the isomeric composition of this cyclic amine compound. These quality assurance measures ensure reproducibility in research and industrial applications.

The global market for N-Cyclopentyl-2-methylcyclohexan-1-amine reflects broader trends in fine chemical demand. Asia-Pacific regions, particularly China and India, have emerged as significant producers, while North America and Europe remain major consumers for research applications. Current pricing trends indicate moderate stability, with fluctuations tied to raw material availability and regional production capacity. Industry analysts project steady growth in demand for such specialty amines through 2025, driven by pharmaceutical innovation and agrochemical development.

Environmental and safety considerations for CAS 1019629-78-7 follow standard chemical handling protocols. While not classified as hazardous under current regulations, proper laboratory safety measures should be observed during handling. The compound's environmental fate and toxicity profile are subjects of ongoing research, particularly regarding its potential metabolites. These studies contribute to the growing body of knowledge about sustainable chemical practices in industrial applications.

Future research directions for N-Cyclopentyl-2-methylcyclohexan-1-amine include exploration of its catalytic applications and potential in materials science. The compound's structural features suggest possible utility in designing molecular catalysts or as a component in advanced polymer systems. Additionally, computational chemistry approaches are being employed to predict novel derivatives with enhanced properties, accelerating the discovery of new applications for this versatile chemical building block.

For researchers and industry professionals seeking high-purity N-Cyclopentyl-2-methylcyclohexan-1-amine, several specialty chemical suppliers offer the compound in various quantities. Procurement considerations should include verification of analytical certificates, supplier reputation, and compliance with regional chemical regulations. The development of more efficient synthetic routes continues to improve accessibility to this compound, supporting its growing role in scientific and industrial innovation.

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