Cas no 102714-95-4 (trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl)

Technical Introduction: trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl is a bicyclohexyl-based liquid crystal compound characterized by its stable mesomorphic properties and high thermal stability. The trans(trans) configuration ensures minimal steric hindrance, promoting uniform alignment in liquid crystal mixtures. The methoxy and n-pentyl substituents enhance dielectric anisotropy and broaden the nematic phase range, making it suitable for advanced display applications. Its low viscosity and compatibility with other liquid crystalline materials allow for precise tuning of electro-optical performance. This compound is particularly valued in high-resolution displays and photonic devices due to its reliable response to electric fields and resistance to degradation under operational conditions.
trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl structure
102714-95-4 structure
Product Name:trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl
CAS No:102714-95-4
MF:C18H34O
MW:266.46196603775
CID:211727
PubChem ID:556870
Update Time:2025-06-07

trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl Chemical and Physical Properties

Names and Identifiers

    • trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl
    • 1,1'-Bicyclohexyl, 4-methoxy-4'-pentyl-, (trans,trans)-
    • 1-methoxy-4-(4-pentylcyclohexyl)cyclohexane
    • TRANS-4-(TRANS-4-PENTYLCYCLOHEXYL)CYCLOHEXYL METHYL ETHER
    • 1,1'-Bicyclohexyl,4-methoxy-4'-pentyl
    • trans,trans-4'-Pentyl-4-methoxy-bicyclohexyl
    • TRANS,TRANS-4''-PENTYL-4-METHOXY-BICYCLOHEXYL
    • 4-Methoxy-4'-pentyl-1,1'-bi(cyclohexyl) TRANS,TRANS-4''-PENTYL-4-METHOXY-BICYCLOHEXYL
    • TRANS,TRANS-4/'/'-PENTYL-4-METHOXY-BICYCLOHEXYL
    • (trans,trans)-4-Methoxy-4'-pentyl-1,1'-bi(cyclohexane)
    • NS00023172
    • FT-0768913
    • 1,1'-Bicyclohexyl, 4-methoxy-4'-pentyl-
    • DTXSID20339541
    • SCHEMBL9351465
    • A851990
    • AKOS015917950
    • RYHTXGXWVOAIRE-UHFFFAOYSA-N
    • SCHEMBL7512292
    • SCHEMBL9747704
    • SCHEMBL4804342
    • SCHEMBL20082978
    • SCHEMBL5364764
    • SCHEMBL8440915
    • 102714-95-4
    • Inchi: 1S/C18H34O/c1-3-4-5-6-15-7-9-16(10-8-15)17-11-13-18(19-2)14-12-17/h15-18H,3-14H2,1-2H3
    • InChI Key: RYHTXGXWVOAIRE-UHFFFAOYSA-N
    • SMILES: O(C)C1CCC(CC1)C1CCC(CCCCC)CC1

Computed Properties

  • Exact Mass: 266.26100
  • Monoisotopic Mass: 266.261
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 0
  • Hydrogen Bond Acceptor Count: 1
  • Heavy Atom Count: 19
  • Rotatable Bond Count: 6
  • Complexity: 222
  • Covalently-Bonded Unit Count: 1
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Topological Polar Surface Area: 9.2A^2
  • XLogP3: 6.8

Experimental Properties

  • Density: 0.89
  • Boiling Point: 325.6 oC at 760 mmHg
  • Flash Point: 146.8oC
  • Refractive Index: 1.472
  • PSA: 9.23000
  • LogP: 5.57830

trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl Pricemore >>

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trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl Related Literature

Additional information on trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl

Recent Advances in the Study of trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl (CAS: 102714-95-4)

In recent years, the compound trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl (CAS: 102714-95-4) has garnered significant attention in the field of chemical biology and pharmaceutical research. This bicyclohexyl derivative, known for its unique structural properties, has been the subject of numerous studies aimed at exploring its potential applications in drug development, material science, and liquid crystal technology. The following sections provide a comprehensive overview of the latest research findings related to this compound, highlighting its synthesis, characterization, and potential therapeutic applications.

The synthesis of trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl has been optimized in recent studies to improve yield and purity. Researchers have employed advanced catalytic methods, including palladium-catalyzed cross-coupling reactions, to achieve high stereoselectivity and efficiency. These advancements are critical for scaling up production and ensuring the compound's availability for further pharmacological and material science investigations.

One of the most promising areas of research involves the compound's potential as a liquid crystal material. Due to its rigid bicyclohexyl core and flexible pentyl chain, trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl exhibits excellent thermal stability and mesomorphic properties. Recent studies have demonstrated its utility in next-generation display technologies, where it contributes to improved response times and energy efficiency. These findings underscore the compound's versatility beyond traditional pharmaceutical applications.

In the realm of drug discovery, preliminary studies have explored the biological activity of trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl. While its exact mechanism of action remains under investigation, early in vitro assays suggest potential interactions with cellular membranes and ion channels. These interactions could pave the way for developing novel therapeutics targeting neurological and metabolic disorders. However, further in vivo studies are required to validate these findings and assess the compound's safety profile.

Another noteworthy development is the use of computational modeling to predict the compound's behavior in various biological and material systems. Molecular dynamics simulations have provided insights into its conformational flexibility and interactions with other molecules, offering a theoretical foundation for future experimental studies. These computational approaches are expected to accelerate the identification of new applications for trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl.

In conclusion, trans(trans)-4-Methoxy-4'-n-pentyl-1,1'-bicyclohexyl (CAS: 102714-95-4) represents a compound of significant interest across multiple scientific disciplines. Its unique structural features and diverse potential applications make it a valuable subject for ongoing and future research. Continued efforts to elucidate its properties and mechanisms will likely yield further breakthroughs in both pharmaceutical and material science fields.

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