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CAS NO.1333496-32-4 Benzoic acid, 4-(hexyloxy)-, 2-methyl-4-[[4-[3-[(1-oxo-2-propen-1-yl)oxy]propoxy]benzoyl]oxy]phenyl ester

Product name Benzoic acid, 4-(hexyloxy)-, 2-methyl-4-[[4-[3-[(1-oxo-2-propen-1-yl)oxy]propoxy]benzoyl]oxy]phenyl ester
CAS NO. 1333496-32-4
Purity 95% min
Product Features
CAS NO.1333496-32-4 Benzoic acid, 4-(hexyloxy)-, 2-methyl-4-[[4-[3-[(1-oxo-2-propen-1-yl)oxy]propoxy]benzoyl]oxy]phenyl ester
Product Name Benzoic acid, 4-(hexyloxy)-, 2-methyl-4-[[4-[3-[(1-oxo-2-propen-1-yl)oxy]propoxy]benzoyl]oxy]phenyl ester
Synonyms 2-Methyl-4-[[4-[3-[(1-oxo-2-propen-1-yl)oxy]propoxy]benzoyl]oxy]phenyl 4-(hexyloxy)benzoate
CAS NO. 1333496-32-4
Appearance White to off-white solid
Purity 95% min
MF C33H36O8
MW 560.64
Storage Preserve in a well-closed container and keep in cool, dry place, avoid light.
Application Potential Applications

1: Optical Compensation Films for LCD Displays

2: Polymer-Stabilized Liquid Crystal (PSLC) Systems

3: Optical Coatings and Photonic Materials

4: Flexible Electronics and Advanced Display Materials

Contact Contact person: Ellen Zhao

Email: ellen.zhao@dakenam.com

Frequently Asked Questions

 

Q1: What type of material is CAS No. 1333496-32-4?

 

A: CAS No. 1333496-32-4 is an acrylate-based reactive mesogen (RM) monomer. It contains a rigid aromatic ester liquid crystal core and a UV-polymerizable acrylate group, allowing it to form stable cross-linked liquid crystal polymer networks after UV curing.

 

Q2: What are the key structural features of this compound?

 

A: The molecule contains three important structural elements:

 

A rigid aromatic ester backbone providing liquid crystalline properties

A hexyloxy flexible chain regulating phase transition behavior and solubility

An acrylate functional group enabling UV-induced polymerization

 

This combination provides both liquid crystal alignment capability and permanent fixation after polymerization.

 

Q3: What advantages does this compound offer compared with conventional liquid crystal materials?

 

A: Unlike conventional liquid crystals that only provide temporary molecular alignment, this reactive mesogen can be polymerized and fixed into a stable structure. It offers:

 

Excellent optical anisotropy

High alignment stability

Thin-film forming capability

Improved durability after UV curing

 

Q4: Which industries or research fields may be interested in this material?

 

A: Potential users include:

 

Display material manufacturers

Liquid crystal material companies

Optical film developers

Photonic materials researchers

AR/VR optical technology companies

Universities and research institutes studying liquid crystal polymers

 

Application Cases

 

Application Case 1: LCD Optical Compensation Films

 

Application: TFT-LCD optical films

 

Description:

CAS No. 1333496-32-4 can be aligned in a liquid crystal state and then UV-polymerized to create optical anisotropic layers used in compensation films. These films help improve:

 

Viewing angle performance

Contrast ratio

Optical uniformity

 

Application Case 2: Structural Color and Photonic Coatings

 

Application: Anti-counterfeiting and decorative optical coatings

 

Description:

Reactive mesogens can self-organize into ordered liquid crystal structures. After polymerization, these structures can generate unique optical effects such as:

 

Structural colors

Selective light reflection

Optical security patterns

 

Application Case 3: Flexible Display Technologies

 

Application: Flexible OLED and next-generation displays

 

Description:

Due to its thin-film processing capability and optical anisotropy, this material can be explored for:

 

Flexible optical layers

Polarization control films

Advanced display components

 

Application Case 4: AR/VR Optical Components

 

Application: Augmented reality and virtual reality devices

 

Description:

Reactive mesogen materials are promising candidates for optical components requiring precise light control, including:

 

Waveguide-related optical layers

Polarization management films

Light modulation elements

 

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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