The ability to localize proteins within 3D scaffolds is critical for spatial control of cellular activities such as cell migration, differentiation and proliferation 1,2,3. Neural tissue, such as the ...
3D printing bacterial colonies could lead to intricate spatial patterns in materials not limited to biodegradable plastics, electronics, and adhesives. Scientists are able to engineer bacterial DNA ...
The recent explosion in technology has led to the development of devices that would have been unfathomable just a few decades ago. Many of these technological advancements are enabled by the ...
In the International Journal of Extreme Manufacturing, researchers fabricate 3D hydrogel-based biomimetic Turing nanowrinkled ...
Researchers at Heriot-Watt University have improved a fibre optic endoscope in a demonstrated of laser-enhanced chemical etching, and developed a way to significantly speed up such 3d patterning of ...
Microscale batteries can deliver energy at the actual point of energy usage, providing capabilities for miniaturizing electronic devices and enhancing their performance. Here, we demonstrate a ...
Several fab tool vendors are rolling out the next wave of self-aligned patterning technologies amid the shift toward new devices at 10/7nm and beyond. Applied Materials, Lam Research and TEL are ...
Self-aligned lithographic process techniques are playing an increasingly important role in advanced technology nodes. Even with the growing use of extreme ultraviolet (EUV) lithography, ...
A chip smaller than one square millimeter stores 160 holographic images at arbitrary 3D coordinates, with each spatial ...
[Stefan] is always looking for a way to make stronger and better 3D prints. His latest experiments involve using a texture on thin plastic parts to increase stiffness. You can see the texture pattern ...
The latest release of Gerber Technology’s AccuMark 3D pattern design platform leverages simulation technology to ensure the 3D model seen on screen is production ready – helping to speed the flow of ...