Poly(tert-Butyl Acrylate)-block-Poly(styrene) (Copolymer, 10:11) is a specialized block copolymer used in materials science and polymer chemistry research. This compound is composed of two distinct polymer blocks: Poly(tert-Butyl Acrylate) and Poly(styrene), arranged in a 10:11 ratio. Its unique structure makes it a valuable tool for studying polymer behavior, molecular interactions, and the development of advanced materials. In the laboratory, it is commonly used to explore the physical and chemical properties of block copolymers, offering insights into their self-assembly, phase behavior, and compatibility with other materials.
The material's block structure provides a high degree of tunability, allowing researchers to modify its properties for specific applications. Its stability under various conditions and compatibility with different solvents make it a preferred choice for both fundamental and applied research. Additionally, its ability to form micelles, vesicles, or other nanostructures makes it ideal for studies involving self-assembly and surface modification. These characteristics make it a versatile reagent in polymer science, enabling the creation of new materials with tailored properties.
In Indonesian laboratories, this copolymer is widely used in materials science and macromolecular chemistry research. It is employed in both academic and industrial settings to support teaching, technological development, and basic research. Its role in understanding polymer behavior and creating advanced composite materials makes it an essential component in the study of new material synthesis and functional polymer applications.
- Polymer Self-Assembly Studies: This copolymer is ideal for investigating the self-assembly behavior of block copolymers, allowing researchers to study how different blocks interact and form nanostructures.
- Surface Modification Research: Its unique structure enables the development of surface coatings and functional materials, making it useful for studies on adhesion, wetting, and surface energy.
- Nanomaterial Synthesis: The copolymer can be used as a template for creating nanoparticles and nanocomposites, supporting research in nanotechnology and advanced material development.
- Thermal Stability Analysis: Due to its structural stability, it is suitable for testing the thermal behavior of polymers under varying conditions.
- Composite Material Development: It is frequently used in the formulation of composite materials, where its properties can be tailored to enhance mechanical and chemical performance.
| Brand | TCI |
|---|---|
| CAS number | 697765-49-4 |
| Molecular formula | — |
| Purity | — |
| Category | Materials Science > Polymer/Macromolecule Reagents > Polymers |
| Pack sizes | Available in various quantities as per supplier specifications |
| Physical form | Solid or powder, depending on the specific product variant |
| Storage | — |
This material should be stored in a cool, dry place away from direct sunlight and sources of heat. It is recommended to use airtight containers to prevent moisture absorption and contamination. For long-term storage, maintaining a temperature below 25°C is advised. When handling, it is important to wear appropriate personal protective equipment, including gloves and safety goggles, to ensure safety. The material is generally non-hazardous under normal conditions, but it should be handled with care to avoid any potential exposure. In a laboratory setting, it is best to store it in a designated chemical storage area that is well-ventilated and accessible only to authorized personnel.
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