| CAS NO.109083-05-8 R6N | |
| Product Name | R6N |
| Synonyms | Benzoic acid, 4-(hexyloxy)-, [1,1′-binaphthalene]-2,2′-diylbis(oxycarbonyl-4,1-phenylene) ester, (R)- (9CI)
(R)-[1,1′-Binaphthalene]-2,2′-diyl bis(4-((4-(hexyloxy)benzoyl)oxy)benzoate) |
| CAS NO. | 109083-05-8 |
| Appearance | White to off-white solid |
| Purity | 95% min |
| MF | C60H54O10 |
| MW | 935.06 |
| Storage | Preserve in a well-closed container and keep in cool, dry place, avoid light. |
| Application | Potential Applications
1. Chiral Liquid Crystal Material 2. Optical Display Technologies 3. Photonic and Optical Functional Materials 4. High-Performance Reactive Liquid Crystal Systems 5. Advanced Optical Sensors |
| Contact | Contact person: Ellen Zhao
Email: ellen.zhao@dakenchem.com |
Frequently Asked Questions
Q1: What are the key structural features of CAS No. 109083-05-8?
A: This compound features a rigid (R)-BINOL chiral core, two aromatic ester mesogenic units, and flexible hexyloxy terminal chains. The combination provides excellent optical anisotropy, thermal stability, and liquid crystalline behavior.
Q2: Can this compound be used as a reactive mesogen (RM)?
A: No. This material does not contain polymerizable groups such as acrylate or methacrylate functionalities. It is better suited as a non-reactive chiral component or chiral dopant in liquid crystal formulations.
Q3: What advantages does the BINOL-based structure offer?
A: The BINOL framework provides stable axial chirality, excellent optical activity, high thermal stability, and efficient induction of chiral liquid crystal phases, making it valuable for advanced optical materials.
Application Cases
Application Case1: Chiral Liquid Crystal Dopant
This compound can be incorporated into nematic liquid crystal formulations as a high-performance chiral dopant to induce stable helical structures for cholesteric and ferroelectric liquid crystal systems.
Application Case 2: Circularly Polarized Light (CPL) Materials
Thanks to its stable axial chirality and rigid aromatic framework, the material is a promising building block for CPL emitters, chiral photonic devices, and polarization-control materials.
Application Case 3: High-Performance Optical Films
The compound can be used in the development of retardation films, birefringent optical films, and polarization management layers for advanced display and photonic technologies.
Application Case 4: Advanced Research in Chiral Functional Materials
This molecule is an excellent research material for studying structure–property relationships, supramolecular self-assembly, chiral liquid crystal systems, and next-generation optoelectronic materials.
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