DNA tetrahedron as the simplest 3D DNA nanostructure has been applied widely in biomedicine and biosensing. Herein, we design and fabricate a series of circular assemblies of DNA tetrahedron with high purity and decent yields. These circular nanostructures are confirmed by endonuclease digestion, gel electrophoresis and atomic force microscopy. Inspired by rotary protein motor, we demonstrate these circular architectures can serve as a stator for a rotary DNA motor to achieve the circular rotation. The DNA motor can rotate on the stators for several cycles, and the locomotion of the motor is monitored by the real-time fluorescent measurements.MOE (Min. of Education, S’pore)Published versio
Over the past decade, DNA nanotechnology has spawned a broad variety of functional nanostructures ta...
DNA has been used to construct a wide variety of nanoscale molecular devices. Inspiration for such s...
DNA provides an ideal substrate for nanoscale construction and programmable dynamic mechanisms. DNA ...
Keywords: DNA, Nanostructures, Nano-robotics, Self-assembly, Autonomous molecular devices A major ch...
Molecular recognition between complementary strands of DNA allows construction on a nanometre length...
Molecular recognition between complementary strands of DNA allows construction on a nanometre length...
Practical components for three-dimensional molecular nanofabrication must be simple to produce, ster...
Practical components for three-dimensional molecular nanofabrication must be simple to produce, ster...
We report the design and construction of a nanometer-sized tetrahedron from a single strand of DNA t...
Analogous to the biologically abundant protein-based linear molecular machines that translocate alon...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
DNA has been used to construct a wide variety of nanoscale molecular devices. Inspiration for such s...
This communication reports a pair of molecular gears that consist of DNA and are fueled by DNA. Each...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
Over the past decade, DNA nanotechnology has spawned a broad variety of functional nanostructures ta...
Over the past decade, DNA nanotechnology has spawned a broad variety of functional nanostructures ta...
DNA has been used to construct a wide variety of nanoscale molecular devices. Inspiration for such s...
DNA provides an ideal substrate for nanoscale construction and programmable dynamic mechanisms. DNA ...
Keywords: DNA, Nanostructures, Nano-robotics, Self-assembly, Autonomous molecular devices A major ch...
Molecular recognition between complementary strands of DNA allows construction on a nanometre length...
Molecular recognition between complementary strands of DNA allows construction on a nanometre length...
Practical components for three-dimensional molecular nanofabrication must be simple to produce, ster...
Practical components for three-dimensional molecular nanofabrication must be simple to produce, ster...
We report the design and construction of a nanometer-sized tetrahedron from a single strand of DNA t...
Analogous to the biologically abundant protein-based linear molecular machines that translocate alon...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
DNA has been used to construct a wide variety of nanoscale molecular devices. Inspiration for such s...
This communication reports a pair of molecular gears that consist of DNA and are fueled by DNA. Each...
DNA nanotechnology makes use of the exquisite self-recognition of DNA in order to build on a molecul...
Over the past decade, DNA nanotechnology has spawned a broad variety of functional nanostructures ta...
Over the past decade, DNA nanotechnology has spawned a broad variety of functional nanostructures ta...
DNA has been used to construct a wide variety of nanoscale molecular devices. Inspiration for such s...
DNA provides an ideal substrate for nanoscale construction and programmable dynamic mechanisms. DNA ...