Supramolecular Polymers and 3D Printing
A progression of polymers equipped for self-amassing into boundless systems through supramolecular collaborations have been planned, combined, and described for use in 3D printing applications. The biocompatible polymers and their composites with silica nanoparticles were effectively used to store both basic cubic structures, just as a progressively mind boggling contorted pyramidal component. The polymers were observed to be not lethal to a chondrogenic cell line, as indicated by ISO 10993-5 and 10993-12 standard tests and the cells appended to the supramolecular polymers as shown by confocal microscopy. Silica nanoparticles were then scattered inside the polymer grid, yielding a composite material which was upgraded for inkjet printing. The half breed material demonstrated guarantee in starter tests to encourage the 3D statement of a progressively mind-boggling structure.
- Polymer 3D Printing
- Supramolecular Polymers
- Frontiers in Complex Macromolecular Systems
- Supramolecular Chemistry and Complex Macromolecular Science
Related Conference of Supramolecular Polymers and 3D Printing
Supramolecular Polymers and 3D Printing Conference Speakers
Recommended Sessions
- Advanced materials in Polymers
- Advances in Polymer Synthesis & Polymer Chemistry
- Biobased and Biodegradable Polymers
- Biomaterials and Biopolymers
- Current Trends in Polymer Chemistry
- Functional Polymers
- Macromolecules, Polymer Networks and Gels
- Material Science and Polymer Colloids
- Plastics, Biopolymers and their Environmental Impact
- Polymer Chemistry
- Polymer Engineering
- Polymer Nanotechnology
- Polymer Physics and Opto-electronics Polymers
- Polymer Production Methods
- Polymer Synthesis
- Polymer Synthesizing Techniques
- Polymer Technology
- Polymerization Techniques
- Polymers in Medicine
- Recent Developments in Polymer Synthesis
- Supramolecular Polymers and 3D Printing
- Sustainable and Eco-friendly Polymers
Related Journals
Are you interested in
- 3D Printing in Microfluidics - Microfluidics 2026 (Germany)
- AI & Automation in Microfluidic Systems - Microfluidics 2026 (Germany)
- Biomedical Microfluidic Applications - Microfluidics 2026 (Germany)
- Clinical Translation & Commercialization - Microfluidics 2026 (Germany)
- Droplet-Based Microfluidics - Microfluidics 2026 (Germany)
- Lab-on-a-Chip Innovations - Microfluidics 2026 (Germany)
- Microfabrication & Soft Lithography - Microfluidics 2026 (Germany)
- Microfluidic Biosensors & Diagnostics - Microfluidics 2026 (Germany)
- Microfluidic Cell Culture Platforms - Microfluidics 2026 (Germany)
- Microfluidics for Drug Delivery - Microfluidics 2026 (Germany)
- Microreactors & Chemical Processing - Microfluidics 2026 (Germany)
- Nanofluidics & Molecular Transport - Microfluidics 2026 (Germany)
- Organ-on-Chip Engineering - Microfluidics 2026 (Germany)
- Point-of-Care Microdevices - Microfluidics 2026 (Germany)
- Single-Cell Microfluidic Analysis - Microfluidics 2026 (Germany)
