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CAS:74305-48-9 | 4-PENTYLPHENYL 4-PENTYLBENZOATE, 97

CAS:74305-48-9 | 4-PENTYLPHENYL 4-PENTYLBENZOATE, 97

Molecular Formula:C23H30O2
Molecular Weight:338.48
EINECS:277-812-9
Package:25g 100g 500g
Worldwide Delivery
Made in China

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Product Introduction

Introduction of CAS:74305-48-9 | 4-PENTYLPHENYL 4-PENTYLBENZOATE, 97

 

4-Pentylphenyl 4-pentylbenzoate, also known as 4-Pentylbenzyl 4-pentylbenzoate, is a synthetic compound that has been used in a variety of scientific applications. It is a colorless, crystalline solid. It is soluble in organic solvents such as ethanol and ethyl acetate, and is insoluble in water. 4-Pentylphenyl 4-pentylbenzoate has a variety of uses in scientific research, including synthesis, mechanism of action, biochemical and physiological effects, and advantages and limitations for lab experiments.

 

Specification of CAS:74305-48-9 | 4-PENTYLPHENYL 4-PENTYLBENZOATE, 97

 

ITEMS

SPECIFICATION

Melt point

34-38 °C

Purity

97%

Boiling point

459.8±34.0 °C(Predicted)

Density

1.002±0.06 g/cm3(Predicted)

Storage condition

2-8°C

 

Research Application of CAS:74305-48-9 | 4-PENTYLPHENYL 4-PENTYLBENZOATE, 97

 

Liquid Crystalline Mixtures

4-Pentylphenyl 4-pentylbenzoate and related compounds have been extensively studied for their role in forming liquid crystalline mixtures. Research has shown that these compounds can form various mesophases, including nematic, smectic A, and smectic C phases, which are crucial for liquid crystal displays and other optical applications (Chruściel et al., 2007). The study of these compounds helps in understanding the influence of molecular structure on the thermal stability and phase behavior of liquid crystalline mixtures.

 

Molecular Structure Analysis

The molecular structure of 4-Pentylphenyl 4-pentylbenzoate and its analogs has been a subject of interest in scientific research. Investigations into their crystal and molecular structure provide insights into the arrangement of molecules in liquid crystalline phases. This understanding is essential for the development of materials with specific optical and thermal properties (Chruściel et al., 1995).

 

Preparation and Phase Transition Studies

Studies have also focused on the preparation of long-chain 4-(4-alkylphenylazo)phenols and their 4-pentylbenzoate esters, which exhibit enantiotropic nematic phases. This research is significant for the synthesis of new materials with potential applications in thermotropic liquid crystals (Johnson et al., 2009).

 

Thermoanalytical Methods

4-Pentylphenyl 4-pentylbenzoate and its isomers have been studied using X-ray diffraction and thermoanalytical methods. These studies provide valuable information about the stability and structure of liquid crystalline phases, which is beneficial for the design of materials used in electronic and photonic devices (Haase et al., 1984).

 

Dielectric and Electro-Optical Properties

Research has also been conducted on the dielectric and electro-optical properties of 4-Pentylphenyl 4-pentylbenzoate in mixtures with other liquid crystalline materials. These studies are crucial for understanding the electrical behavior of liquid crystals in response to external electric fields, which is important for their application in display technologies and other electro-optical devices (Bamezai et al., 2009).

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