Product Name: High Quality P-Terphenyl CAS 92-94-4 With Best Price. The CAS number of P-Terphenyl, 92 - 94 - 4, serves as a unique identifier in the chemical world. This high - quality product is known for its purity and is offered at the best market price.
Chemical Formula: C18H14. It consists of 18 carbon atoms and 14 hydrogen atoms, forming a stable molecular structure. The molecular weight of P - Terphenyl is approximately 230.30 g/mol.
Appearance: It typically appears as a white to light - yellow crystalline powder. This physical form makes it convenient for handling and storage in various industrial and laboratory settings.
Melting Point: The melting point of P - Terphenyl ranges from 210 - 212°C, which is an important parameter for applications that involve heat - related processes.
Solubility: It has limited solubility in water but is soluble in organic solvents such as benzene, toluene, and chloroform. This solubility property determines its compatibility with different chemical systems.
1. Organic Synthesis: P - Terphenyl is widely used as a building block in organic synthesis. It can participate in various chemical reactions to form more complex organic compounds. For example, it can be used in the synthesis of liquid crystals, which are essential components in display technologies such as LCDs.
2. Laser Dyes: It is an important ingredient in some laser dyes. Its unique optical properties allow it to absorb and emit light at specific wavelengths, which is crucial for the operation of lasers in scientific research and medical applications.
3. Scintillation Counters: In the field of radiation detection, P - Terphenyl is used as a scintillator. When it interacts with high - energy particles or radiation, it emits light, which can be detected and measured to quantify the radiation level.
1. Laboratory Use: In a laboratory environment, when using P - Terphenyl for organic synthesis, it should be handled with appropriate safety equipment such as gloves and goggles. First, accurately measure the required amount of P - Terphenyl using a balance. Then, dissolve it in a suitable organic solvent in a reaction flask. The reaction conditions, such as temperature and reaction time, should be carefully controlled according to the specific synthesis protocol.
2. Industrial Use: In industrial applications, such as in the production of laser dyes, large - scale handling of P - Terphenyl is required. Specialized equipment for storage, transportation, and mixing should be used. The production process should follow strict quality control and safety regulations to ensure the quality of the final product and the safety of workers.
1. Liquid Crystal Production: A company specializing in liquid crystal manufacturing used P - Terphenyl as a key raw material. They first dissolved P - Terphenyl in toluene at a specific temperature. Then, through a series of chemical reactions and purification steps, they successfully synthesized a new type of liquid crystal. The new liquid crystal had improved optical properties, which led to better display quality in the LCD products they produced. This not only increased the market competitiveness of their products but also reduced production costs due to the high - quality and cost - effective P - Terphenyl.
2. Radiation Detection in a Nuclear Research Facility: A nuclear research facility used P - Terphenyl - based scintillation counters. By accurately calibrating the scintillation counters with P - Terphenyl, they were able to precisely measure the radiation levels in different areas of the facility. This real - time monitoring helped ensure the safety of the researchers and the proper operation of the nuclear research equipment. The high - quality P - Terphenyl used in the scintillation counters provided reliable and consistent results, which were crucial for the success of the research projects.
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