1H,1H,2H,2H-Perfluorooctanethiol
- CAS No.34451-26-8
- GradeIndustrial / Pharmaceutical
- Availability● In Stock
High-purity fluorinated thiol for advanced material synthesis and surface modification applications.
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Product Overview
1H,1H,2H,2H-Perfluorooctanethiol represents a critical advancement in fluorinated chemistry, offering a stable yet reactive platform for surface engineering. The molecule combines the inertness of a perfluorinated chain with the functional versatility of a thiol group. This duality allows chemists to impart durable water and oil resistance to substrates without compromising the underlying material integrity. Produced under strict environmental and safety guidelines, this compound meets the high standards required for modern material science. Its stability under various conditions makes it a preferred choice for long-term performance applications in diverse industrial sectors.
As a specialized organosulfur compound, this fluorinated thiol is designed for researchers and manufacturers who demand consistency and reliability. The unique structure facilitates efficient integration into polymer matrices and coating formulations. Our production capabilities ensure that each batch maintains rigorous quality specifications, supporting both experimental research and large-scale commercial manufacturing needs.
Technical Specifications
Quality control is integral to our production workflow. Each batch undergoes rigorous testing to verify chemical identity and purity. The following table outlines the standard physical and chemical properties associated with this compound. These parameters are critical for ensuring compatibility with downstream synthesis processes.
| Property | Specification |
|---|---|
| CAS Number | 34451-26-8 |
| Molecular Formula | C8H5F13S |
| Molecular Weight | 380.17 g/mol |
| Density | 1.62 g/mL at 20 °C |
| Boiling Point | 58 °C |
| Flash Point | 56.8 °C |
| Refractive Index | 1.321 |
Industrial Applications
In the electronics industry, this thiol is used to create protective layers on circuits, enhancing durability against moisture and contaminants. In textiles, it provides superior stain resistance and hydrophobicity. In optics, it reduces surface energy to prevent fogging and fouling. It is also used in biomedical devices for non-stick surfaces where biocompatibility is essential. The thiol group allows for gold surface functionalization, making it valuable in sensor development.
Furthermore, this compound acts as a precursor for introducing fluorinated motifs that enhance metabolic stability and lipophilicity in agrochemical research. Material scientists leverage this chemical to modify nanoparticles and improve compatibility in composite materials. The distinct reactivity of the thiol group allows for efficient conjugation via thiol-ene click chemistry or other sulfur-based coupling reactions, enabling precise molecular architecture design.
Quality And Service
We are dedicated to providing a comprehensive fluorochemical platform that supports innovation across multiple industries. Our commitment extends beyond mere supply; we offer technical support, custom synthesis options, and strict quality assurance protocols. Clients benefit from our integrated supply chain, which covers raw material procurement, process development, and final quality control. We understand the critical nature of supply chain stability and maintain robust inventory levels to ensure timely delivery.
Whether for laboratory scale research or large-scale production, our team is equipped to meet your specific requirements with professionalism and expertise. Documentation such as Certificates of Analysis and Safety Data Sheets are provided with every shipment to ensure regulatory compliance and safe handling. Partner with us for reliable access to high-performance fluorinated intermediates.
