This work examines the metallization of folded DNA, known as DNA origami, as an enabling step toward the use of such DNA as templates for nanoelectronic circuits. DNA origami, a simple and robust method for creating a wide variety of shapes and patterns, makes possible the increased complexity and flexibility needed for both the design and assembly of useful circuit templates. In addition, selective metallization of the DNA template is essential for circuit fabrication. Metallization of DNA origami presents several challenges over and above those associated with the metallization of other DNA templates such as λ-DNA. These challenges include (1) the stability of the origami in the processes used for metallization, (2) the enhanced selectivi...
This work demonstrates the use of a circuit-like DNA origami structure as a template to fabricate co...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
abstract: DNA nanotechnology uses the reliability of Watson-Crick base pairing to program and genera...
DNA origami can be used to create a variety of complex and geometrically unique nanostructures that ...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
DNA origami nanostructures have tremendous potential to serve as versatile platforms in selfassembly...
Self-assembled DNAnanostructures can be used as scaffolds to organize small functional nanocomponent...
This work examines the selective deposition of two different metals on a single DNA origami template...
Structural DNA nanotechnology provides a viable route for building from the bottom-up using DNA as c...
The past decade has witnessed a breakthrough in the field of structural DNA nanotechnology, which ut...
We report the first DNA-based origami technique that can print addressable patterns on surfaces with...
DNA origami nanostructures have tremendous potential to serve as versatile platforms in self-assembl...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
DNA origami has become an established technique for designing well-defined nanostructures with any d...
This work demonstrates the use of a circuit-like DNA origami structure as a template to fabricate co...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
abstract: DNA nanotechnology uses the reliability of Watson-Crick base pairing to program and genera...
DNA origami can be used to create a variety of complex and geometrically unique nanostructures that ...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
DNA origami nanostructures have tremendous potential to serve as versatile platforms in selfassembly...
Self-assembled DNAnanostructures can be used as scaffolds to organize small functional nanocomponent...
This work examines the selective deposition of two different metals on a single DNA origami template...
Structural DNA nanotechnology provides a viable route for building from the bottom-up using DNA as c...
The past decade has witnessed a breakthrough in the field of structural DNA nanotechnology, which ut...
We report the first DNA-based origami technique that can print addressable patterns on surfaces with...
DNA origami nanostructures have tremendous potential to serve as versatile platforms in self-assembl...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
In molecular engineering, DNA molecules have been extensively studied owing to their capacity for ac...
DNA origami has become an established technique for designing well-defined nanostructures with any d...
This work demonstrates the use of a circuit-like DNA origami structure as a template to fabricate co...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
abstract: DNA nanotechnology uses the reliability of Watson-Crick base pairing to program and genera...