| CAS NO.2595137-52-1 Benzoic acid, 4-[[6-[(1-oxo-2-propen-1-yl)oxy]hexyl]oxy]-, 2-methyl-4-[[(trans-4-pentylcyclohexyl)carbonyl]oxy]phenyl ester | |
| Product Name | Benzoic acid, 4-[[6-[(1-oxo-2-propen-1-yl)oxy]hexyl]oxy]-, 2-methyl-4-[[(trans-4-pentylcyclohexyl)carbonyl]oxy]phenyl ester |
| Synonyms | Benzoic acid, 4-[[6-[(1-oxo-2-propen-1-yl)oxy]hexyl]oxy]-, 2-methyl-4-[[(trans-4-pentylcyclohexyl)carbonyl]oxy]phenyl ester |
| CAS NO. | 2595137-52-1 |
| Appearance | White to off-white solid |
| Purity | 95% min |
| MF | C35H46O7 |
| MW | 578.74 |
| Storage | Preserve in a well-closed container and keep in cool, dry place, avoid light. |
| Application | Potential Applications
1. Liquid Crystal Polymer Networks, LCPNs 2. Optical Compensation Films 3. Polarization Optical Materials 4. Photonic Devices 5. Smart Optical Materials 6. Advanced Electronic and Display Materials |
| Contact | Contact person: Ellen Zhao
Email: ellen.zhao@dakenam.com |
Frequently Asked Questions
Q1: What type of material is CAS No. 2595137-52-1?
A: It is a mono-functional acrylate reactive mesogen (RM) designed for UV-curable liquid crystal polymer systems. It combines excellent liquid crystal alignment with rapid photopolymerization.
Q2: What are the key advantages of this reactive mesogen?
A: Its rigid mesogenic core provides high optical anisotropy, while the flexible spacer and acrylate group enable excellent alignment, fast UV curing, and stable polymer network formation.
Q3: Which applications is this material suitable for?
A: It is suitable for optical compensation films, liquid crystal polymer networks (LCPNs), polarized optical films, AR/VR optical components, and other advanced photonic devices.
Application Cases
Application Case 1 – Optical Compensation Films
Used as a reactive mesogen in UV-curable optical compensation films for LCD and OLED displays, helping improve viewing angle, contrast, and image quality.
Application Case 2 – Liquid Crystal Polymer Networks (LCPNs)
Incorporated into liquid crystal formulations to form stable polymer networks after UV curing, enhancing thermal stability, alignment retention, and device reliability.
Application Case 3 – AR/VR Optical Components
Applied in waveguide optics, polarization control films, and diffractive optical elements for lightweight AR/VR display systems requiring high optical precision.
Application Case 4 – Smart Optical Materials
Suitable for smart windows and light-modulating films, where UV-polymerized liquid crystal networks provide controllable optical properties and long-term stability.
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