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Room temperature 3D carbon microprinting

Engineering and Technology

Room temperature 3D carbon microprinting

F. E. Torres-davila, K. L. Chagoya, et al.

This groundbreaking research showcases an innovative room-temperature method for 3D carbon microprinting using low-power visible light and a metal-free catalyst, leading to unique rod-shaped microstructures with tailored properties for optoelectronics and sensing applications, conducted by a team of experts from the University of Central Florida and Cadi Ayyad University.... show more
Abstract
Manufacturing custom three-dimensional (3D) carbon functional materials is of utmost importance for applications ranging from electronics and energy devices to medicine, and beyond. In lieu of viable eco-friendly synthesis pathways, conventional methods of carbon growth involve energy-intensive processes with inherent limitations of substrate compatibility. The yearning to produce complex structures, with ultra-high aspect ratios, further impedes the quest for eco-friendly and scalable paths toward 3D carbon-based materials patterning. Here, we demonstrate a facile process for carbon 3D printing at room temperature, using low-power visible light and a metal-free catalyst. Within seconds to minutes, this one-step photocatalytic growth yields rod-shaped microstructures with aspect ratios up to ~500 and diameters below 10 µm. The approach enables the rapid patterning of centimeter-size arrays of rods with tunable height and pitch, and of custom complex 3D structures. The patterned structures exhibit appealing luminescence properties and ohmic behavior, with great potential for optoelectronics and sensing applications, including those interfacing with biological systems.
Publisher
Nature Communications
Published On
Mar 29, 2024
Authors
Fernand E. Torres-Davila, Katerina L. Chagoya, Emma E. Blanco, Saqib Shahzad, Lorianne R. Shultz-Johnson, Mirra Mogensen, Andre Gesquiere, Titel Jurca, Nabil Rochdi, Richard G. Blair, Laurene Tetard
Tags
3D carbon microprinting
photocatalytic growth
microstructures
optoelectronics
sensing applications
metal-free catalyst
room-temperature process
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