Researchers at MIT have developed a novel method for 3D printing triaxial electrospray nozzles, which can simultaneously dispense multiple liquids to form three-layered droplets. This advancement significantly reduces manufacturing costs and complexity, eliminating the need for cleanroom facilities typically required for such intricate devices. The new nozzles offer greater efficiency and customization, with potential applications in drug manufacturing, self-healing materials, and biosensors. AI
IMPACT Enables more cost-effective and precise manufacturing of complex materials and pharmaceuticals.
RANK_REASON The cluster describes a new research development and fabrication technique from a university lab. [lever_c_demoted from research: ic=2 ai=0.4]
- 3D printing
- Asiga Max X27
- drugs
- Luis Fernando Velásquez-García
- MIT
- self-healing materials
- triaxial electrospray
- drug manufacturing
- triaxial electrospray nozzles
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