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Last Updated: Apr 25, 2025 | Study Period: 2023-2030
A class of chemical compounds known as silanes is made up of silicon (Si) atoms bound to hydrogen (H) atoms and, if desired, other organic groups. They belong to the larger group of substances called organosilicon compounds or organosilanes. Silanes have the general chemical formula SinHn+2, where n is the number of silicon atoms in the molecule.
Silanes are important in many commercial and scientific applications, especially in the areas of surface chemistry, electronics, and materials science. The following are some typical applications and uses for silanes:
Silanes are coupling agents that are utilized on surfaces to increase adhesion between various materials, including metals, glass, ceramics, and polymers. To improve bonding or encourage desired interactions, they can alter the surface characteristics of the materials.
Silanes are frequently used to coat surfaces with hydrophobic (water-repellent) coatings. These coatings are used to shield materials against deterioration caused by moisture and the environment.
Silanes are employed in the semiconductor industry to help create thin layers on silicon wafers, which are then utilized to manufacture integrated circuits and other electronic components.
Silanes are added to adhesives and sealants to increase their bonding power and tensile strength.
Silanes are used as additives in the formulation of rubber and plastic to improve mechanical qualities including strength and flexibility.
It's crucial to remember that the exact structure and functional groups linked to the silicon atom can have a significant impact on the characteristics and uses of silanes. In order to meet the needs of different applications, a wide variety of silane derivatives with specialized features have been created.
The Global Silanes Market accounted for $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2023 to 2030.
A new water-based epoxy functional silane oligomer from BRB is introduced; it has improved stability and sustainability.BRB takes off. BRB Silanil® 533 ESO is a gamma-glycidol and methoxy group-containing epoxy functional silane oligomer. In contrast to monomeric epoxy silanes, it emits less methyl alcohol during hydrolysis.
Due to its less hydrolysis-sensitive oligomeric structure and higher content of epoxy groups per molecule when compared to monomeric silanes, BRB Silanil® 533 ESO offers greater grafting efficiency on polymer chains containing amino, hydroxyl, or carboxyl functional groups and offers better stability of formulated water-based product than monomeric epoxy silanes.