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A Brief Review on Selected Applications of Hybrid Materials Based on Functionalized Cage-like Silsesquioxanes

Journal

POLYMERS
Volume 15, Issue 6, Pages -

Publisher

MDPI
DOI: 10.3390/polym15061452

Keywords

polyhedral oligomeric silsesquioxanes (POSS); double-decker silsesquioxanes (DDSQ); biomaterials engineering; flame retardants; Ziegler-Natta heterogenous catalysis

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Rapid developments in materials engineering have led to the emergence of new technologies that are increasingly used in various aspects of our lives. Current research is focused on developing methods for obtaining new material engineering systems and exploring the relationship between structure and physicochemical properties. The demand for well-defined and thermally stable systems has highlighted the importance of polyhedral oligomeric silsesquioxane (POSS) and double-decker silsesquioxane (DDSQ) architectures. This review examines the applications of these silsesquioxane-based materials and their potential in various fields, including biomaterials and materials engineering.
Rapid developments in materials engineering are accompanied by the equally rapid development of new technologies, which are now increasingly used in various branches of our life. The current research trend concerns the development of methods for obtaining new materials engineering systems and searching for relationships between the structure and physicochemical properties. A recent increase in the demand for well-defined and thermally stable systems has highlighted the importance of polyhedral oligomeric silsesquioxane (POSS) and double-decker silsesquioxane (DDSQ) architectures. This short review focuses on these two groups of silsesquioxane-based materials and their selected applications. This fascinating field of hybrid species has attracted considerable attention due to their daily applications with unique capabilities and their great potential, among others, in biomaterials as components of hydrogel networks, components in biofabrication techniques, and promising building blocks of DDSQ-based biohybrids. Moreover, they constitute attractive systems applied in materials engineering, including flame retardant nanocomposites and components of the heterogeneous Ziegler-Natta-type catalytic system.

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