1-Ethoxy-4-(p-tolylethynyl)benzene is a chemical compound widely used in materials science, particularly in the study of liquid crystal (LC) materials. This compound plays a crucial role in laboratory research by serving as a building block for the synthesis of complex molecules with unique molecular structures. Its presence is essential in the development of advanced materials that exhibit specific optical and electronic properties. In the context of Indonesian laboratories, this compound is a vital resource for researchers working on cutting-edge material innovations.
The compound's molecular structure, featuring both ethoxy and ethynyl groups, contributes to its high reactivity. These functional groups enable it to participate in various chemical reactions, making it ideal for applications that require molecular modification or functional group substitution. Its ability to form specific molecular configurations further enhances its utility in the design of materials with tailored optical and electronic characteristics. This makes it a preferred choice for researchers aiming to develop novel materials with precise performance requirements.
In Indonesian laboratories, 1-Ethoxy-4-(p-tolylethynyl)benzene is commonly used in academic and industrial research settings. It supports the development of new technologies in the fields of electronics, information technology, and material science. Its application extends to the creation of advanced optical components and electronic devices, aligning with the growing demand for high-performance materials in both educational and industrial contexts.
- Liquid Crystal Material Synthesis: This compound is ideal for creating LC materials due to its unique molecular structure and optical properties, enabling precise control over material behavior in liquid crystal displays and optical devices.
- Organic Semiconductor Development: Its high reactivity and functional groups make it suitable for synthesizing organic semiconductors, which are essential in advanced electronic applications.
- Optical Sensor Fabrication: The compound's ability to form specific molecular configurations allows it to be used in the development of optical sensors that respond to environmental changes with high sensitivity.
- Molecular Modification Research: Its reactive functional groups enable researchers to explore molecular modification techniques, facilitating the design of new materials with tailored properties.
- Electronic Device Prototyping: The compound supports the creation of prototype electronic devices by providing a foundation for materials with specific electrical and optical characteristics.
| Brand | TCI |
|---|---|
| CAS number | 116903-46-9 |
| Molecular formula | — |
| Purity | — |
| Category | Materials Science > Electronic Materials > Liquid Crystal (LC) Materials |
| Pack sizes | Available in standard laboratory quantities as per supplier specifications |
| Physical form | Liquid |
| Storage | Store in a cool, dry place away from light and incompatible substances |
This compound should be stored in a cool, dry environment, away from direct sunlight and sources of heat. It is recommended to use airtight containers made of materials that are chemically inert to prevent degradation. Due to its reactivity, it should be handled in a well-ventilated laboratory setting, preferably under a fume hood. Avoid contact with incompatible materials such as strong oxidizing agents. Always wear appropriate personal protective equipment, including gloves, safety goggles, and a lab coat, when handling this compound. Proper storage and handling practices ensure the safety of laboratory personnel and maintain the integrity of the compound for research applications.
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