Preceramic Polymers for Additive Manufacturing of Silicate Ceramics.

Sarraf, Fateme; Churakov, Sergey; Clemens, Frank (2023). Preceramic Polymers for Additive Manufacturing of Silicate Ceramics. Polymers, 15(22) MDPI 10.3390/polym15224360

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The utilization of preceramic polymers (PCPs) to produce both oxide and non-oxide ceramics has caught significant interest, owing to their exceptional characteristics. Diverse types of polymer-derived ceramics (PDCs) synthesized by using various PCPs have demonstrated remarkable characteristics such as exceptional thermal stability, resistance to corrosion and oxidation at elevated temperatures, biocompatibility, and notable dielectric properties, among others. The application of additive manufacturing techniques to produce PDCs opens up new opportunities for manufacturing complex and unconventional ceramic structures with complex designs that might be challenging or impossible to achieve using traditional manufacturing methods. This is particularly advantageous in industries like aerospace, automotive, and electronics. In this review, various categories of preceramic polymers employed in the synthesis of polymer-derived ceramics are discussed, with a particular focus on the utilization of polysiloxane and polysilsesquioxanes to generate silicate ceramics. Further, diverse additive manufacturing techniques adopted for the fabrication of polymer-derived silicate ceramics are described.

Item Type:

Journal Article (Review Article)

Division/Institute:

08 Faculty of Science > Institute of Geological Sciences

UniBE Contributor:

Sarraf, Fateme, Churakov, Sergey

Subjects:

500 Science > 550 Earth sciences & geology

ISSN:

2073-4360

Publisher:

MDPI

Language:

English

Submitter:

Pubmed Import

Date Deposited:

28 Nov 2023 15:46

Last Modified:

28 Nov 2023 15:55

Publisher DOI:

10.3390/polym15224360

PubMed ID:

38006084

Uncontrolled Keywords:

3D print additive manufacturing polysilsesquioxane preceramic polymer silicate

BORIS DOI:

10.48350/189413

URI:

https://boris.unibe.ch/id/eprint/189413

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