Additional Properties
Hydrolytic Sensitivity 8: reacts rapidly with moisture, water, protic solvents Safety
Packaging Under Nitrogen Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. n-Octadecyldimethylc
hlorosilane; Dimethyl-n-octadecyl
chlorosilane; Chlorodimethyloctade
cylsilane; Chlorodimethylsilyl-
n-octadecane
Contains <5% C18 isomers
Employed in bonded HPLC reverse phases
Gelest, Inc.
Done
Description
Additional Properties
Hydrolytic Sensitivity 8: reacts rapidly with moisture, water, protic solvents Safety
Packaging Under Nitrogen Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. n-Octadecyldimethylc
hlorosilane; Dimethyl-n-octadecyl
chlorosilane; Chlorodimethyloctade
cylsilane; Chlorodimethylsilyl-
n-octadecane
Contains <5% C18 isomers
Employed in bonded HPLC reverse phases
Datasheet
Datasheet Summary Powered by GS/AI
n-OCTADECYLDIMETHYLCHLOROSILANE, 97% (SIO6615.1) is a solid chemical intermediate with the formula C20H43ClSi, primarily used in various chemical applications. It is classified as a chlorosilane and is known for its hydrolytic sensitivity, reacting rapidly with moisture and protic solvents. The product is hazardous, causing severe skin burns and serious eye damage, necessitating the use of protective equipment during handling. It is recommended to store the substance in a well-ventilated area, away from incompatible materials such as acids and oxidizing agents. This product is suitable for applications requiring surface hydrophobicity and is employed in bonded HPLC reverse phases.
Datasheet Summary Powered by GS/AI
n-OCTADECYLDIMETHYLCHLOROSILANE, 97% (SIO6615.1) is a solid chemical intermediate with the formula C20H43ClSi, primarily used in various chemical applications. It is classified as a chlorosilane and is known for its hydrolytic sensitivity, reacting rapidly with moisture and protic solvents. The product is hazardous, causing severe skin burns and serious eye damage, necessitating the use of protective equipment during handling. It is recommended to store the substance in a well-ventilated area, away from incompatible materials such as acids and oxidizing agents. This product is suitable for applications requiring surface hydrophobicity and is employed in bonded HPLC reverse phases.
Additional Properties
Hydrolytic Sensitivity 8: reacts rapidly with moisture, water, protic solvents Safety
Packaging Under Nitrogen Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. n-Octadecyldimethylc
hlorosilane; Dimethyl-n-octadecyl
chlorosilane; Chlorodimethyloctade
cylsilane; Chlorodimethylsilyl-
n-octadecane
Contains <5% C18 isomers
Employed in bonded HPLC reverse phases
Packaging Under Nitrogen
Alkyl Silane - Conventional Surface Bonding
Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure.
n-Octadecyldimethylchlorosilane; Dimethyl-n-octadecylchlorosilane; Chlorodimethyloctadecylsilane; Chlorodimethylsilyl-n-octadecane