High-Purity Brominated Aromatic Compound for Advanced Applications
A key intermediate for cutting-edge liquid crystal materials and vital pharmaceutical synthesis.
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1-Bromo-4-(trans-4-propylcyclohexyl)benzene
This high-performance brominated aromatic compound is primarily utilized in advanced liquid crystal materials for display technologies, including LCDs and OLEDs. Its trans-cyclohexyl structure ensures excellent thermal stability and low viscosity, making it essential for high-resolution screens. Beyond displays, it serves as a crucial intermediate in pharmaceuticals, agrochemicals, and specialty organic synthesis, especially in palladium-catalyzed cross-coupling reactions. The compound's high purity and reliability are favored in applications demanding precise molecular control, contributing to advancements in various scientific and industrial fields.
- Leverage the unique properties of 1-bromo-4-trans-4-propylcyclohexyl-benzene for superior liquid crystal displays, offering enhanced performance and visual clarity.
- Utilize this key pharmaceutical intermediate in complex organic synthesis pathways, enabling the creation of novel therapeutic compounds.
- Benefit from the compound's high purity and reliability, ensuring consistent results in organic synthesis palladium-catalyzed reactions.
- Explore the potential of brominated aromatic compound applications in emerging technologies and advanced materials development.
Product Advantages
Exceptional Thermal Stability
The trans-cyclohexyl structure of 1-bromo-4-trans-4-propylcyclohexyl-benzene provides exceptional thermal stability, crucial for components used in demanding electronic environments.
Low Viscosity for Displays
Achieve higher resolution and faster response times in display technologies by employing this compound's inherent low viscosity, a key characteristic for advanced liquid crystal materials.
Versatile Synthetic Intermediate
As a vital pharmaceutical intermediate synthesis component, it enables efficient drug development and manufacturing processes.
Key Applications
Liquid Crystal Materials
Essential for the formulation of high-performance liquid crystal monomers used in modern display technologies like LCDs and OLEDs, enabling superior visual experiences.
Pharmaceutical Intermediates
Serves as a critical building block in the synthesis of various active pharmaceutical ingredients (APIs), supporting drug discovery and development.
Organic Synthesis
Facilitates complex chemical transformations, particularly in organic synthesis palladium-catalyzed reactions, for fine chemicals and advanced materials.
Agrochemicals
Used as an intermediate in the synthesis of certain agrochemical products, contributing to crop protection solutions.
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