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TEMPL3D combines 3D printing with Columnar Liquid Crystals to create advanced materials with customizable nanopores. This innovative approach aims to enhance the properties of ultrasmall nanoparticles for applications in photonics, optoelectronics, soft robotics, and catalysis.
The emergence of 3D printing technology has revolutionized the field of Liquid Crystal Networks (LCNs), enabling the fabrication of advanced functional materials with unprecedented precision and customization.
However, to date, only a few liquid crystal phases (primarily nematic) have been utilized in the 3D printing of structures, thereby limiting the potential of other mesophases in more effectively controlling the anisotropic properties of the final materials. TEMPL3D seeks to overcome this l…
UNIVERSITA DEGLI STUDI DI FIRENZE
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