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Universal Method Can Create a Variety of 3D Metallic and Semiconductor Nanostructures - Vimarsana News

Universal Method Can Create a Variety of 3D Metallic and Semiconductor Nanostructures

Scientists at the U.S. Department of Energy's (DOE) Brookhaven National Laboratory, Columbia University, and Stony Brook University have developed a universal method for producing a wide variety of designed metallic and semiconductor 3D nanostructures-;the potential base materials for next-generation semiconductor devices, neuromorphic computing, and advanced energy applications.

Hacking DNA to Make Next-Gen Materials - Vimarsana News

Hacking DNA to Make Next-Gen Materials

UPTON, NY—Scientists at the U.S. Department of Energy’s (DOE) Brookhaven National Laboratory, Columbia University, and Stony Brook University have d

Hacking DNA to make next-gen materials - Vimarsana News

Hacking DNA to make next-gen materials

<p>Scientists have developed a universal method for producing a wide variety of designed metallic and semiconductor 3D nanostructures&mdash;the potential base materials for next-generation semiconductor devices, neuromorphic computing, and advanced energy applications. The new method, which uses a &ldquo;hacked&rdquo; form of DNA that instructs molecules to organize themselves into targeted 3D patterns, is the first of its kind to produce robust nanostructures from multiple material classes.&nbsp;</p>

Seeing More Deeply Into Nanomaterials - Vimarsana News

Seeing More Deeply Into Nanomaterials

From designing new biomaterials to novel photonic devices, new materials built through a process called bottom-up nanofabrication, or self-assembly,...

Nanotechnology Now - Press Release: Putting functional proteins in their place: Using DNA-based assembly, scientists developed a method for creating designed and biologically active 2-D and 3-D protein arrays, which show promise for applications in structural biology, biomaterials, nanomedicine, and biocatalysis - Vimarsana News

Nanotechnology Now - Press Release: Putting functional proteins in their place: Using DNA-based assembly, scientists developed a method for creating designed and biologically active 2-D and 3-D protein arrays, which show promise for applications in structural biology, biomaterials, nanomedicine, and biocatalysis

Our NanoNews Digest Sponsors Home > Press > Putting functional proteins in their place: Using DNA-based assembly, scientists developed a method for creating designed and biologically active 2-D and 3-D protein arrays, which show promise for applications in structural biology, biomaterials, nanomedicine, and biocatalysis An illustration showing the approach for assembling biologically functional proteins into ordered 2D and 3D arrays through programmable octahedral-shaped DNA frameworks. These frameworks can host and control the placement of the proteins internally -- for example, at the cente...