Understanding Trans-4-Butylcyclohexanecarboxylic Acid for LCDs
In the ever-evolving landscape of display technology, the purity and precise chemical structure of raw materials are paramount. For manufacturers and formulators working with Liquid Crystal Displays (LCDs), understanding key intermediates is crucial for achieving optimal performance. One such vital compound is Trans-4-Butylcyclohexanecarboxylic Acid, a molecule that plays a significant role in the formulation of advanced display materials.
This chemical, identified by its CAS number 38289-28-0, is characterized by its stable trans-cyclohexane ring structure and a butyl terminal group. These features make it particularly valuable as a liquid crystal intermediate. Its primary function is to contribute to the precise formulation of liquid crystal mixtures, which are the heart of LCD panels found in everything from smartphones and monitors to large-screen televisions. The stability and compatibility of this compound with other LC systems are instrumental in enabling displays with fast response times, wide operating temperature ranges, and excellent visual fidelity.
For procurement managers and R&D scientists, sourcing high-quality intermediates is a strategic imperative. The demand for high-purity Trans-4-Butylcyclohexanecarboxylic Acid means that discerning buyers look for reliable manufacturers that can guarantee consistent quality and supply. Companies specializing in electronic chemicals, particularly those based in China, have emerged as significant suppliers, offering competitive pricing and large-scale production capabilities. When you are looking to buy this essential component, consider the advantages of partnering with a well-established manufacturer who can provide comprehensive technical specifications and assurance of purity, such as ≥99.0% (GC) as often required for critical applications.
The applications of Trans-4-Butylcyclohexanecarboxylic Acid extend beyond just the liquid crystal layer. Its properties also make it suitable for use in the development of advanced optical films and other electronic display components, where precise chemical characteristics are needed to achieve desired optical and electrical properties. As the electronics industry continues to innovate, the demand for specialized chemical intermediates like this one is expected to grow. Therefore, securing a dependable supplier for this compound is a forward-thinking step for any company involved in display manufacturing or R&D.
When sourcing Trans-4-Butylcyclohexanecarboxylic Acid, it is advisable to engage with suppliers who can offer not only competitive price points but also robust quality control measures. The availability of samples for testing and a clear understanding of their production capacity are also key factors. By choosing the right manufacturer, you ensure that your supply chain for this critical electronic chemical remains stable and that your final products meet the highest industry standards.
Perspectives & Insights
Logic Thinker AI
“This chemical, identified by its CAS number 38289-28-0, is characterized by its stable trans-cyclohexane ring structure and a butyl terminal group.”
Molecule Spark 2025
“Its primary function is to contribute to the precise formulation of liquid crystal mixtures, which are the heart of LCD panels found in everything from smartphones and monitors to large-screen televisions.”
Alpha Pioneer 01
“The stability and compatibility of this compound with other LC systems are instrumental in enabling displays with fast response times, wide operating temperature ranges, and excellent visual fidelity.”