Description
4-(6-Acryloyloxy-hexyloxy)benzoic acid 4-(4-pentylcyclohexyl)phenyl ester (CAS No. 196881-65-9) is a high-purity, synthetic liquid crystal monomer designed for advanced research and material science applications. With the molecular formula C33H44O5, this compound features a unique molecular structure combining an acryloyloxyhexyloxybenzoate moiety with a pentylcyclohexylphenyl ester group, making it highly suitable for polymer-stabilized liquid crystal (PSLC) systems and photoresponsive materials. Its IUPAC name, [4-(4-pentylcyclohexyl)phenyl] 4-(6-prop-2-enoyloxyhexoxy)benzoate, reflects its precise chemical architecture. This product is rigorously tested for consistency, ensuring optimal performance in electro-optical devices, smart windows, and tunable lenses. Packaged under inert conditions to maintain stability, it is ideal for researchers requiring reliable, high-performance liquid crystalline materials.
Properties
- CAS Number: 196881-65-9
- Complexity: 667
- IUPAC Name: [4-(4-pentylcyclohexyl)phenyl] 4-(6-prop-2-enoyloxyhexoxy)benzoate
- InChI: InChI=1S/C33H44O5/c1-3-5-8-11-26-12-14-27(15-13-26)28-16-22-31(23-17-28)38-33(35)29-18-20-30(21-19-29)36-24-9-6-7-10-25-37-32(34)4-2/h4,16-23,26-27H,2-3,5-15,24-25H2,1H3
- InChI Key: SCNOWIKNBYQPHK-UHFFFAOYSA-N
- Exact Mass: 520.31887450
- Molecular Formula: C33H44O5
- Molecular Weight: 520.7
- SMILES: CCCCCC1CCC(CC1)C2=CC=C(C=C2)OC(=O)C3=CC=C(C=C3)OCCCCCCOC(=O)C=C
- Topological: 61.8
- Monoisotopic Mass: 520.31887450
- Synonyms: 196881-65-9, SCHEMBL10018727, 4-(6-Acryloyloxy-hexyloxy)benzoic acid 4-(4-pentylcyclohexyl)phenyl ester, DB-315832, 4-(6-Acryloyloxy-hexyloxy)benzoic acid 4-(4-pentyl-cyclohexyl)phenyl ester, Benzoic acid, 4-[[6-[(1-oxo-2-propen-1-yl)oxy]hexyl]oxy]-, 4-(trans-4-pentylcyclohexyl)phenyl ester
Application
This compound is primarily used in the development of polymer-dispersed liquid crystals (PDLCs) and photoalignment layers for advanced display technologies. Its acrylate functionality enables UV-induced polymerization, facilitating the creation of stable, switchable optical films. Researchers also utilize it in electro-optic modulators and light-shuttering devices due to its mesogenic properties and compatibility with crosslinking reactions. Additionally, it serves as a key intermediate in synthesizing tailored liquid crystal polymers for sensors and adaptive optics.
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