Advanced ceramics and relevant polymers for environmental and biomedical applications

Author:

Abstract

Ceramics result from combinations and structural arrangements of inorganic substrates for metals and nonmetals. They bind covalently forming ceramic with distinctive properties. Advanced ceramics can be applied in progressive applications. They comprise advanced heat engines for communication and energy transmission. They are developing among the required materials for advanced technologies. Advanced ceramics are getting along modern technological applications. Researches and studies focus on enhancing and optimizing the desired properties. They are trying to overcome some disadvantages such as brittleness and poor mechanical properties. Polymers play an important role in either forming ceramics or blending with them to form efficient composites. Some polymers are classified as inorganic and organic materials such as polysilazanes. They consist of silicon, nitrogen, hydrogen and carbon in certain cases. Polysilazanes act as precursors to SiO2, Si3N4 and SiC ceramics. Perceramic polymers are pyrolyzed polymeric materials in an inert atmosphere producing ceramic materials. Ceramics can be applied in the absence or the presence of polymers in various fields. They comprise wear related, environmental and electrical applications as well. Bioceramics and biopolymers were used as implants in orthopaedics. Zirconia based ceramics act as successful materials to be applied in dental applications.

Publisher

AMG Transcend Association

Subject

Molecular Biology,Molecular Medicine,Biochemistry,Biotechnology

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