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CAS NO.1446199-93-4 D-Glucitol, 1,4:3,6-dianhydro-, 2,5-bis[4-[[[6-[[[4-[(1-oxo-2-propen-1-yl)oxy]butoxy]carbonyl]oxy]-2-naphthalenyl]carbonyl]oxy]benzoate]

Product name D-Glucitol, 1,4:3,6-dianhydro-, 2,5-bis[4-[[[6-[[[4-[(1-oxo-2-propen-1-yl)oxy]butoxy]carbonyl]oxy]-2-naphthalenyl]carbonyl]oxy]benzoate]
CAS NO. 1446199-93-4
Purity 95% min
Product Features
CAS NO.1446199-93-4 D-Glucitol, 1,4:3,6-dianhydro-, 2,5-bis[4-[[[6-[[[4-[(1-oxo-2-propen-1-yl)oxy]butoxy]carbonyl]oxy]-2-naphthalenyl]carbonyl]oxy]benzoate]
Product Name D-Glucitol, 1,4:3,6-dianhydro-, 2,5-bis[4-[[[6-[[[4-[(1-oxo-2-propen-1-yl)oxy]butoxy]carbonyl]oxy]-2-naphthalenyl]carbonyl]oxy]benzoate]
Synonyms D-Glucitol, 1,4:3,6-dianhydro-, 2,5-bis[4-[[[6-[[[4-[(1-oxo-2-propen-1-yl)oxy]butoxy]carbonyl]oxy]-2-naphthalenyl]carbonyl]oxy]benzoate]
CAS NO. 1446199-93-4
Appearance White to off-white solid
Purity 95% min
MF C58H50O20
MW 1067.01
Storage Preserve in a well-closed container and keep in cool, dry place, avoid light.
Application Potential Applications

1 Reactive Mesogen (RM) for Liquid Crystal Materials

2 Optical Compensation Films

3 Polymerizable Liquid Crystal Systems

4 High Refractive Index UV-Curable Materials

5 AR/VR Optical Components

6 Photonic Crystal Materials

7 Advanced Display Technologies

Contact Contact person: Ellen Zhao

Email: ellen.zhao@dakenam.com

Frequently Asked Questions

 

Q1. What type of material is this compound?

 

A: It is a difunctional polymerizable liquid crystal monomer (Reactive Mesogen, RM) featuring two acrylate groups, making it suitable for UV-curable optical materials and liquid crystal polymer systems.

 

Q2. What are the key structural advantages of this material?

 

A: The combination of a rigid isosorbide core, high-birefringence naphthalene units, carbonate linkages, and terminal acrylate groups provides excellent liquid crystal alignment, high thermal stability, rapid UV curing, and outstanding optical performance.

 

Q3. What are the typical applications of this reactive mesogen?

 

A: It is commonly used in optical compensation films, polymer-stabilized liquid crystal (PSLC) systems, polymer network liquid crystal (PNLC) devices, AR/VR optical components, and other advanced photonic materials.

 

Q4. Why is the isosorbide core beneficial?

 

A: The bio-based isosorbide backbone offers high molecular rigidity, excellent dimensional stability, reduced polymerization shrinkage, and improved mechanical properties while supporting sustainable material development.

 

Application Cases

 

Application Case1: Optical Compensation Films

 

The material can be formulated into UV-curable reactive mesogen systems for optical compensation films used in LCD and OLED displays, providing excellent birefringence and stable molecular alignment.

 

Application Case 2: AR/VR Optical Devices

 

Its high refractive index and optical anisotropy make it an excellent candidate for waveguide optics, polarization control films, and other optical components used in AR/VR display technologies.

 

Application Case 3: Polymer-Stabilized Liquid Crystal Systems

 

The diacrylate functionality enables rapid photopolymerization, making the compound suitable for PSLC, PNLC, and other liquid crystal polymer networks used in smart windows and switchable optical devices.

 

Application Case 4: Advanced Photonic Materials

 

This reactive mesogen can be incorporated into photonic crystal films, holographic optical elements (HOEs), and high-performance optical coatings that require excellent thermal stability, precise molecular orientation, and efficient UV curing.

 

The information presented on this page is based on publicly available sources and our current technical understanding of the compound. It is provided for informational purposes only and does not constitute a guarantee or warranty regarding product performance, specifications, or suitability for any particular application. We make reasonable efforts to ensure the accuracy of the information; however, we do not warrant that it is complete, accurate, or up to date. If you identify any inaccuracies or have additional technical information to share, please contact us. We appreciate your feedback and will review the content for possible updates.

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