The specificity and simplicity of the Watson Crick base pair interactions make DNA one of the most versatile construction materials for creating nanoscale structures and devices. Among several DNA-based approaches, the DNA origami technique excels in programmable self-assembly of complex, arbitrary shaped structures with dimensions of hundreds of nanometers. Importantly, DNA origami can be used as templates for assembly of functional nanoscale components into three-dimensional structures with high precision and controlled stoichiometry. This is often beyond the reach of other nanofabrication techniques. In this Perspective, we highlight the capability of the DNA origami technique for realization of novel nanophotonic systems. First, we intr...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
DNA origami is a robust method for the creation of nanostructures with arbitrary shapes, whereby a l...
The specificity and simplicity of the Watson Crick base pair interactions make DNA one of the most v...
The specificity and simplicity of the Watson–Crick base pair interactions make DNA one of the most v...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
DNA nanotechnology provides a versatile toolbox for creating custom and accurate shapes that can ser...
DNA nanotechnology provides a versatile toolbox for creating custom and accurate shapes that can ser...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
DNA origami is a robust method for the creation of nanostructures with arbitrary shapes, whereby a l...
The specificity and simplicity of the Watson Crick base pair interactions make DNA one of the most v...
The specificity and simplicity of the Watson–Crick base pair interactions make DNA one of the most v...
The DNA origami technique itself is considered a milestone of DNA nanotechnology and DNA origami nan...
DNA nanotechnology provides a versatile toolbox for creating custom and accurate shapes that can ser...
DNA nanotechnology provides a versatile toolbox for creating custom and accurate shapes that can ser...
Over the last decade, DNA origami has matured into one of the most powerful bottom-up nanofabricatio...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be use...
DNA nanotechnology provides an excellent foundation for diverse nanoscale structures that can be us...
DNA based nanostructures and advances in DNA origami techniques have shown great potential in fabric...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
DNA origami is a DNA-based nanotechnology that utilizes programmed combinations of short complementa...
The DNA origami technique provides an unprecedented method to create multiple copies of well-defined...
DNA origami is a robust method for the creation of nanostructures with arbitrary shapes, whereby a l...