Many emerging technologies would greatly benefit from reliable methods for the production of functional materials with well-defined 3D nanoscale structure. Conceptually, approaches to produce such architectures are divided into two broad classes; top down and bottom up manufacture. In the top down approach, nanoscale structure is created through the controlled removal of material from a bulk starting object. Top down methods have a proven record of reliability in the fabrication of extended two dimensional arrays with fine control over nanoscale features. However, such approaches become increasingly cumbersome when attempting to define structure in three dimensions rather than two. Bottom up methods promise a more reliable route to the fo...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
<p>Self-assembly is a pervasive natural phenomenon that gives rise to complex structures and functio...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
The reliable preparation of functional, ordered, nanostructured frameworks would be a game changer f...
The reliable preparation of functional, ordered, nanostructured frameworks would be a game change...
The reliable preparation of functional, ordered, nanostructured frameworks would be a game changer f...
Many emerging technologies require materials with well-defined 3D nanoscale architectures. Productio...
The reliable preparation of functional, ordered, nanostructured frameworks would be a game changer f...
Many emerging technologies require materials with well-defined three-dimensional nanoscale architect...
Many emerging technologies require materials with well-defined three-dimensional nanoscale architect...
DNA nanotechnology is a rapidly evolving research area that utilizes DNA as unique construction mate...
The ability to self-assemble into pre-programmed architectures has made DNA become a useful molecule...
DNA’s molecular recognition properties have made it one of the most widely used biomacromolecular co...
Complex function arises in biology from the proximity and relations amongst different functional uni...
We live in a macroscopic three-dimensional world, but our best description of the structure of matte...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
<p>Self-assembly is a pervasive natural phenomenon that gives rise to complex structures and functio...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...
The reliable preparation of functional, ordered, nanostructured frameworks would be a game changer f...
The reliable preparation of functional, ordered, nanostructured frameworks would be a game change...
The reliable preparation of functional, ordered, nanostructured frameworks would be a game changer f...
Many emerging technologies require materials with well-defined 3D nanoscale architectures. Productio...
The reliable preparation of functional, ordered, nanostructured frameworks would be a game changer f...
Many emerging technologies require materials with well-defined three-dimensional nanoscale architect...
Many emerging technologies require materials with well-defined three-dimensional nanoscale architect...
DNA nanotechnology is a rapidly evolving research area that utilizes DNA as unique construction mate...
The ability to self-assemble into pre-programmed architectures has made DNA become a useful molecule...
DNA’s molecular recognition properties have made it one of the most widely used biomacromolecular co...
Complex function arises in biology from the proximity and relations amongst different functional uni...
We live in a macroscopic three-dimensional world, but our best description of the structure of matte...
DNA nanotechnology represents a powerful medium for manipulating the nanoscale arrangement of functi...
<p>Self-assembly is a pervasive natural phenomenon that gives rise to complex structures and functio...
Molecular self-assembly offers a 'bottom-up' route to fabrication with subnanometre precision of com...