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CAS:74612-30-9 | 1H,1H,2H,2H-PERFLUORODECYLDIMETHYLCHLOROSILANE

CAS:74612-30-9 | 1H,1H,2H,2H-PERFLUORODECYLDIMETHYLCHLOROSILANE

Molecular Formula:C12H10ClF17Si
Molecular Weight:540.72
EINECS:633-334-6
Package:100mg 250mg 1g
Worldwide Delivery
Made in China

Product Introduction

Introduction of CAS:74612-30-9 | 1H,1H,2H,2H-PERFLUORODECYLDIMETHYLCHLOROSILANE

1H,1H,2H,2H-Perfluorodecyldimethylchlorosilane, commonly known as PFDS, is a type of perfluoroalkylsilane (PFAS) that has a wide range of applications in scientific research. PFDS is a colorless, non-volatile liquid that is insoluble in water and has a low vapor pressure. It is used in a variety of applications, including as a surfactant, a lubricant, and an anti-corrosive agent. PFDS has been found to be a useful tool for studying the properties of organic compounds and for understanding the mechanism of action and biochemical and physiological effects of various compounds.

 

Specification of CAS:74612-30-9 | 1H,1H,2H,2H-PERFLUORODECYLDIMETHYLCHLOROSILANE

 

ITEMS

SPECIFICATION

Boiling point

197 °C

Flash Point

>65°C

Density

1,51 g/cm3

Refractive index

1.3415

Proportion

1.51

 

Research Application of CAS:74612-30-9 | 1H,1H,2H,2H-PERFLUORODECYLDIMETHYLCHLOROSILANE

 

Temperature Effect on Antistiction Performance

1H,1H,2H,2H-Perfluorodecyldimethylchlorosilane (FDDMCS) demonstrates varying antistiction performance based on temperature variations. Research on cantilever beams coated with FDDMCS showed that stiction, the resistance to start sliding over a surface, decreases upon annealing, with the substance displaying lesser temperature stability compared to its counterpart FDTS (Frechette, Maboudian, & Carraro, 2006).

 

Surface Modification of Glass Plates

 

The use of compounds like 1H,1H,2H,2H-Perfluorodecyldimethylchlorosilane for the surface modification of glass plates has been studied, demonstrating the compounds' high modification ability and potential for creating surfaces with high oxidation resistance (Yoshino et al., 1993).

 

Thermal Stability on Aluminum Surfaces

 

The thermal stability of perfluoroalkyl silane, including 1H,1H,2H,2H-perfluorodecyldimethylchlorosilane, on aluminum surfaces has been characterized. This includes assessments of variations in the monolayer's structure and properties at different temperatures, offering insights into its thermal resilience [(Devaprakasam, Sampath, & Biswas, 2004)](https://consensus.app/papers/thermal-stability-perfluoroalkyl-silane-selfassembled-devaprakasam/0db9a64a82bf5197aebfc6ed26ff70c9/?utm_source=chatgpt).

 

Micro/Nano-Tribological Characteristics

 

In the field of micro-machining, the tribological (frictional) characteristics of 1H,1H,2H,2H-perfluorodecyldimethylchlorosilane are crucial. Studies have shown that surfaces coated with this compound are more prone to damage due to higher friction, despite its lower surface energy compared to other substances like octadecyltrichlorosilane (OTS) (Sung, Yang, Kim, & Shin, 2003).

 

Enhancing Membrane Distillation Performance

 

The compound has been used to create superhydrophobic surfaces for membrane distillation in water desalination processes. Coating polyvinylidene fluoride membranes with 1H,1H,2H,2H-perfluorodecyldimethylchlorosilane significantly improved salt rejection and reduced pore wetting (Meng, Mansouri, Ye, & Chen, 2014).

 

Chemical Stability on Copper Surfaces

 

The chemical stability of 1H,1H,2H,2H-perfluorodecyldimethylchlorosilane on copper surfaces has been extensively studied. The compound forms highly hydrophobic and stable self-assembled monolayer films on copper, offering potential applications in micro/nanoelectronics and heat exchange surfaces (Hoque et al., 2007).

 

Stability on Oxidized Copper Oxide Surfaces

 

Research shows that 1H,1H,2H,2H-perfluorodecyldimethylchlorosilane forms stable and hydrophobic self-assembled monolayers on oxidized copper surfaces, indicating its robustness and potential for various industrial applications (Hoque, Derose, Houriet, Hoffmann, & Mathieu, 2007).

 

Synthesis for Textile Finishing

 

The compound has been used in the synthesis of multifunctional groups for textile finishing, indicating its versatility and utility in enhancing the properties of fabrics (Qing, Ji, Lu, Yan, & Mao, 2002).

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