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ALLYL 1H,1H-PERFLUOROOCTYL ETHER is a fluorinated compound characterized by the presence of an allyl group and a perfluorooctyl ether moiety. It is distinguished by its excellent thermal and chemical stability, low surface tension, and properties of water and oil repellency. This versatile chemical is valued for its wide range of industrial applications.

812-72-6

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812-72-6 Usage

Uses

Used in Surfactant Industry:
ALLYL 1H,1H-PERFLUOROOCTYL ETHER is used as a surfactant for its ability to reduce surface tension, which is crucial in various industrial processes, enhancing the efficiency of operations involving wetting, emulsification, and foaming.
Used in Lubricant Industry:
As a lubricant, ALLYL 1H,1H-PERFLUOROOCTYL ETHER is utilized for its low frictional properties, which are essential in reducing wear and tear in mechanical systems and improving the longevity of equipment.
Used in Coating Production:
In the coating industry, ALLYL 1H,1H-PERFLUOROOCTYL ETHER is used as a component in specialty coatings, leveraging its thermal and chemical stability to produce coatings with enhanced durability and resistance to environmental factors.
Used in Polymer Production:
ALLYL 1H,1H-PERFLUOROOCTYL ETHER is also used in the production of polymers, where its unique properties contribute to the development of materials with specific characteristics required for various applications.
Used in Electronics and Semiconductor Industry:
ALLYL 1H,1H-PERFLUOROOCTYL ETHER serves as a processing aid in the electronics and semiconductor industry, facilitating the manufacturing of delicate components with high precision and quality.
Used as a Functional Fluid:
In the same industry, it is also employed as a functional fluid, capitalizing on its stable properties to ensure the reliable operation of equipment and processes in demanding conditions.

Check Digit Verification of cas no

The CAS Registry Mumber 812-72-6 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 8,1 and 2 respectively; the second part has 2 digits, 7 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 812-72:
(5*8)+(4*1)+(3*2)+(2*7)+(1*2)=66
66 % 10 = 6
So 812-72-6 is a valid CAS Registry Number.
InChI:InChI=1/C11H7F15O/c1-2-3-27-4-5(12,13)6(14,15)7(16,17)8(18,19)9(20,21)10(22,23)11(24,25)26/h2H,1,3-4H2

812-72-6SDS

SAFETY DATA SHEETS

According to Globally Harmonized System of Classification and Labelling of Chemicals (GHS) - Sixth revised edition

Version: 1.0

Creation Date: Aug 18, 2017

Revision Date: Aug 18, 2017

1.Identification

1.1 GHS Product identifier

Product name 1,1,1,2,2,3,3,4,4,5,5,6,6,7,7-pentadecafluoro-8-prop-2-enoxyoctane

1.2 Other means of identification

Product number -
Other names Allyl 1H,1H-perfluorooctyl ether

1.3 Recommended use of the chemical and restrictions on use

Identified uses For industry use only.
Uses advised against no data available

1.4 Supplier's details

1.5 Emergency phone number

Emergency phone number -
Service hours Monday to Friday, 9am-5pm (Standard time zone: UTC/GMT +8 hours).

More Details:812-72-6 SDS

812-72-6Downstream Products

812-72-6Relevant academic research and scientific papers

Spontaneous polymer thin film assembly and organization using mutually immiscible side chains

Sun,Castner,Mao,Wang,McKeown,Grainger

, p. 1856 - 1866 (1996)

Polymer ultrathin film self-assembly and organization on solid substrates has been directed using grafted siloxane copolymers bearing mutually immiscible alkyl and perfluoroalkyl side chains. Polysiloxanes grafted with both alkyl disulfide and perfluoroalkyl side chains have been synthesized and characterized. These terpolymer systems assemble spontaneously on gold surfaces, forming bound polymeric monolayers organized by intramolecular phase separation. Interfacially bound polymer monolayer fabrication is driven by multipoint alkyl disulfide side chain chemisorption to gold surfaces from dilute organic solution. Immiscible perfluoroalkyl side chains of low interfacial energy enrich the ambient-exposed outer regions of these monolayers, yielding a novel bound polymer monolayer with an anisotropic, layered structure and perfluorinated surface properties. Ellipsometry indicates that these polymer films have thicknesses ranging from 22 to 32 ?, depending on solution conditions and chemistry. Angular-dependent X-ray photoelectron spectroscopy has provided a depth profile of the bound polymer films, detailing the anisotropic composition resulting from perfluoroalkyl surface enrichment. Static secondary ion mass spectrometry measurements support the enrichment of perfluoroalkyl groups in the outer atomic levels of these films. Cyclic voltammetry using the redox probes Fe(CN)63- and methylviologen with film-coated gold electrodes evaluated film-attenuated electron transfer. Time-of-flight secondary ion mass spectrometry has been used to image micropatterned polymer surfaces lithographed at high resolution both before and after organic monolayer assembly. Qualitative and quantitative information on film spatial organization and surface chemistry distribution on microstructures was obtained.

Fluorinated polyhedral oligomeric silsesquioxanes

Wang, Xiaobai,Ye, Qun,Song, Jing,Cho, Ching Mui,He, Chaobin,Xu, Jianwei

, p. 4547 - 4553 (2015/02/19)

A series of fluorinated polyhedral oligomeric silsesquioxane (POSS) derivatives were prepared via hydrosilylation reaction and they were characterized by 1H, 13C, 29Si and 19F nuclear magnetic resonance (NMR) sp

Dynamic contact angle studies of self-assembled thin films from fluorinated alkyltrichlorosilanes

Pellerite, Mark J.,Wood, Erika J.,Jones, Vivian W.

, p. 4746 - 4754 (2007/10/03)

Dynamic contact angle studies on self-assembled thin films from C7F15CH2OCH2CH2CH2 SiCl3 reveal a range of interesting behavior. Solution-based processing conditions have been identified that allow preparation of essentially monolayer films on quartz exhibiting water adv/rec contact angles of 119/104 ?± 2?° and extremely low contact angle hysteresis (hexadecane adv/rec = 74/70?°, heptane adv/rec = 56/55?°) with hydrocarbon liquids. This compound provides an example of a fluorinated trichlorosilane that is able to deliver low-hysteresis films by deposition at room temperature. Adsorption of silane oligomers, formed by hydrolysis and condensation reactions in solution, was also found to occur, slower than but competitive with monolayer formation. This process became more significant as dip coating times increased. Ellipsometric data on silicon wafers confirmed that film thicknesses increased with dip time, while AFM imaging showed that the oligomeric material was deposited in the form of particulates. The effects of this process on water dynamic contact angles are discussed. We also compare contact angles on these films with those on films prepared from CnF2n+1CH2CH2SiCl3 (n = 6, 8, 10) and draw some conclusions regarding structure-property effects in these systems. Finally, we propose a mechanism that can account qualitatively for the bulk of the results observed here. Its central feature is reaction of the fluorinated alkyltrichlorosilane with surface-adsorbed water to yield a self-assembled monolayer consisting of silanetriol molecules hydrogen-bonded to the substrate. Effects of high humidity aging on dynamic contact angles of these films suggest that they are at most only lightly cross-linked when prepared under conditions utilized here.

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