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Researchers Advance Nanoscale 3D Printing With Faster, Higher Fidelity Method
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Researchers at the George W. Woodruff School of Mechanical Engineering have developed a new approach to nanoscale 3D printing that improves both speed and fidelity, overcoming a challenge that has limited the technology's broader use in manufacturing.
Their work, led by Sourabh Saha, associate professor and Woodruff Faculty Fellow, and Harnjoo Kim, who conducted the research during his doctoral studies and later as a postdoctoral fellow in Saha's lab, was recently published in the journal Nature Communications.
Nanoscale 3D printing allows researchers to create structures thousands of times smaller than the width of a human hair. These structures have potential applications in fields ranging from advanced computing and optics to biomedical devices and clean energy technologies. However, increasing printing speed often comes at the expense of quality.
Read the full story on the George W. Woodruff School of Mechanical Engineering website
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- Created by: ttroha3
- Created: 07/24/2026
- Modified By: ttroha3
- Modified: 07/24/2026
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